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Ornamental Water Purification System With Decorative Basin And Manual Pump

Abstract: The present disclosure provides an ornamental water purification system comprising a foundation for housing a reservoir, a tank holder mounted on a support column on the foundation, an intake nozzle connected to the tank holder, and a discharge conduit linked to the intake nozzle and the reservoir. A manual pump is connected to the intake nozzle, and a flow control valve is positioned on the discharge conduit. A basin holder is supported by a support pipe adjacent to the tank holder, and a decorative basin is fixed on the basin holder. The support pipe discharges water from the decorative basin to the reservoir.

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Notices, Deadlines & Correspondence

Patent Information

Application #
Filing Date
20 April 2025
Publication Number
18/2025
Publication Type
INA
Invention Field
MECHANICAL ENGINEERING
Status
Email
Parent Application

Applicants

BANASTHALI VIDYAPITH
BANASTHALI VIDYAPITH, P.O. BANASTHALI, BANASTHALI, RAJASTHAN, INDIA, 304022 JAIPUR

Inventors

1. MR. RAJESH SINGH GURJAR
BANASTHALI VIDYAPITH, P.O. BANASTHALI, BANASTHALI, RAJASTHAN, INDIA, 304022, JAIPUR

Claims

1. An ornamental water purification system (100) comprising: a foundation (102) for housing a reservoir (104); a tank holder (106) mounted on a support column (108) on said foundation (102); an intake nozzle (110) connected to said tank holder (106); a discharge conduit (112) linked to said intake nozzle (110) and said reservoir (104); a manual pump (114) connected to said intake nozzle (110); a flow control valve (116) on said discharge conduit (112); a basin holder (118) supported by a support pipe adjacent to said tank holder (106); and a decorative basin (120) fixed on said basin holder, wherein said support pipe is configured to discharge water from said decorative basin to said reservoir (104).

2. The ornamental water purification system (100) of claim 1, wherein said reservoir (104) comprises a transparent material, facilitating visual monitoring of water levels and purification status within said reservoir (104).

3. The ornamental water purification system (100) of claim 1, wherein said tank holder (106) is equipped with adjustable mounting brackets configured to secure said water tank receptacle (104) at varying heights on said support column (108), allowing customization based on spatial requirements.

4. The ornamental water purification system (100) of claim 1, wherein said intake nozzle (110) is integrated with a multi-layer filtration system positioned within said tank holder (106), thereby improving water purity by removing particulate matter and contaminants prior to absorption.

5. The ornamental water purification system (100) of claim 1, wherein said discharge conduit (112) comprises a coiled tubing section adjacent to said reservoir (104), facilitating flexible water flow management and reducing stress on said manual pump (114) during operation.

6. The ornamental water purification system (100) of claim 1, wherein said manual pump (114) is operatively connected to a handle mounted on said intake nozzle (110), enabling efficient and user-friendly water suction and discharge actions.

7. The ornamental water purification system (100) of claim 1, wherein said flow control valve (116) is positioned along said discharge conduit (112) and is configured to regulate water flow rate, allowing precise management of water discharge from said reservoir (104) to said discharge conduit (112).

8. The ornamental water purification system (100) of claim 1, wherein said basin holder (118) comprises adjustable brackets that allow said decorative basin (120) to be positioned at varying angles, thereby optimizing water distribution within said basin (120).

9. The ornamental water purification system (100) of claim 1, wherein said decorative basin (120) is equipped with integrated LED lighting connected to said reservoir (104), enhancing aesthetic appeal and providing illumination for nighttime operation.

10. The ornamental water purification system (100) of claim 1, wherein said support pipe comprises a flexible joint at the connection point with said basin holder (118), allowing for adjustable discharge angles to accommodate different basin (120) orientations. ORNAMENTAL WATER PURIFICATION SYSTEM WITH DECORATIVE BASIN AND MANUAL PUMP Abstract The present disclosure provides an ornamental water purification system comprising a foundation for housing a reservoir, a tank holder mounted on a support column on the foundation, an intake nozzle connected to the tank holder, and a discharge conduit linked to the intake nozzle and the reservoir. A manual pump is connected to the intake nozzle, and a flow control valve is positioned on the discharge conduit. A basin holder is supported by a support pipe adjacent to the tank holder, and a decorative basin is fixed on the basin holder. The support pipe discharges water from the decorative basin to the reservoir. , Claims:Claims :

1. An ornamental water purification system (100) comprising: a foundation (102) for housing a reservoir (104); a tank holder (106) mounted on a support column (108) on said foundation (102); an intake nozzle (110) connected to said tank holder (106); a discharge conduit (112) linked to said intake nozzle (110) and said reservoir (104); a manual pump (114) connected to said intake nozzle (110); a flow control valve (116) on said discharge conduit (112); a basin holder (118) supported by a support pipe adjacent to said tank holder (106); and a decorative basin (120) fixed on said basin holder, wherein said support pipe is configured to discharge water from said decorative basin to said reservoir (104).

2. The ornamental water purification system (100) of claim 1, wherein said reservoir (104) comprises a transparent material, facilitating visual monitoring of water levels and purification status within said reservoir (104).

3. The ornamental water purification system (100) of claim 1, wherein said tank holder (106) is equipped with adjustable mounting brackets configured to secure said water tank receptacle (104) at varying heights on said support column (108), allowing customization based on spatial requirements.

4. The ornamental water purification system (100) of claim 1, wherein said intake nozzle (110) is integrated with a multi-layer filtration system positioned within said tank holder (106), thereby improving water purity by removing particulate matter and contaminants prior to absorption.

5. The ornamental water purification system (100) of claim 1, wherein said discharge conduit (112) comprises a coiled tubing section adjacent to said reservoir (104), facilitating flexible water flow management and reducing stress on said manual pump (114) during operation.

6. The ornamental water purification system (100) of claim 1, wherein said manual pump (114) is operatively connected to a handle mounted on said intake nozzle (110), enabling efficient and user-friendly water suction and discharge actions.

7. The ornamental water purification system (100) of claim 1, wherein said flow control valve (116) is positioned along said discharge conduit (112) and is configured to regulate water flow rate, allowing precise management of water discharge from said reservoir (104) to said discharge conduit (112).

8. The ornamental water purification system (100) of claim 1, wherein said basin holder (118) comprises adjustable brackets that allow said decorative basin (120) to be positioned at varying angles, thereby optimizing water distribution within said basin (120).

9. The ornamental water purification system (100) of claim 1, wherein said decorative basin (120) is equipped with integrated LED lighting connected to said reservoir (104), enhancing aesthetic appeal and providing illumination for nighttime operation.

10. The ornamental water purification system (100) of claim 1, wherein said support pipe comprises a flexible joint at the connection point with said basin holder (118), allowing for adjustable discharge angles to accommodate different basin (120) orientations.

Specification

Description:

ORNAMENTAL WATER PURIFICATION SYSTEM
WITH DECORATIVE BASIN AND MANUAL PUMP
Field of the Invention
[0001] The present disclosure generally relates to water purification systems. Further, the present disclosure particularly relates to an ornamental water purification system.
Background
[0002] The background description includes information that may be useful in understanding the present invention. It is not an admission that any of the information provided herein is prior art or relevant to the presently claimed invention, or that any publication specifically or implicitly referenced is prior art.
[0003] Water purification systems have been widely adopted in residential, commercial, and public environments to provide access to clean and safe water. Such systems have traditionally relied on mechanical filters, chemical treatments, and advanced membrane technologies to remove contaminants, impurities, and pathogens from water sources. In recent years, the incorporation of aesthetic elements into practical systems has gained popularity, particularly in ornamental fountains and decorative water features that combine visual appeal with functional water circulation.
[0004] Conventional water purification systems typically employ motorised pumps and filtration units that require continuous electrical power to operate. Such systems are commonly integrated into large-scale water features, fountains, or garden installations. A widely used system involves electric pumps that circulate water through filtration units before returning the purified water to the reservoir or display feature. However, reliance on electric pumps increases operational costs and limits the applicability of such systems in regions with inconsistent power supply or outdoor locations lacking electrical infrastructure. Furthermore, electric pumps are prone to mechanical failures and require regular maintenance, adding to the operational burden on users.
[0005] Another known system involves gravity-fed water purification mechanisms, where water flows from an elevated source through a filtration medium before being collected in a reservoir. While gravity-fed systems eliminate the need for electrical components, they offer limited control over water flow rates and pressure. Such limitations often result in inefficient purification, particularly when dealing with larger volumes of water or varying levels of contamination. Additionally, the structural design of gravity-fed systems often restricts their integration into aesthetically appealing ornamental setups, thereby limiting their utility in decorative applications.
[0006] Manual water purification systems have also been explored to address energy dependency and operational costs. Such systems typically utilise hand-operated pumps or levers to draw water through a filtration mechanism. While manual systems offer energy independence and portability, they frequently lack the efficiency and ease of use provided by automated systems. The repetitive manual effort required to operate such systems can be cumbersome for users, particularly when large volumes of water need to be purified. Furthermore, many manual systems lack aesthetically pleasing designs, which limits their desirability for use in decorative environments such as gardens, patios, or indoor spaces.
[0007] Decorative water features, such as ornamental fountains and basins, have traditionally focused on visual aesthetics rather than functional water purification. While some systems incorporate basic water circulation mechanisms to prevent stagnation, such systems generally do not include effective purification components. The absence of integrated purification in decorative water features often results in the accumulation of algae, debris, and other contaminants, leading to water quality degradation over time. Regular maintenance, including manual cleaning and water replacement, becomes necessary to maintain both the visual appeal and hygiene of such systems.
[0008] Further, many existing ornamental water systems that attempt to combine decorative elements with water purification rely on complex plumbing and electrical setups. Such systems are often expensive to install and maintain, limiting their accessibility to a broader range of users. The integration of filtration components into aesthetically appealing designs without compromising ease of use, cost-efficiency, and reliability remains a significant challenge in the field of ornamental water systems.
[0009] Moreover, the lack of user-friendly mechanisms for controlling water flow and circulation in decorative purification systems contributes to operational inefficiencies. Many systems lack adjustable flow control options, making it difficult to maintain consistent water quality while achieving desired aesthetic effects. This results in suboptimal purification performance and diminished visual appeal.
[00010] In light of the above discussion, there exists an urgent need for solutions that overcome the problems associated with conventional systems and techniques for integrating effective water purification into ornamental water features while maintaining aesthetic appeal, ease of use, and cost-efficiency.
Summary
[00011] The following presents a simplified summary of various aspects of this disclosure in order to provide a basic understanding of such aspects. This summary is not an extensive overview of all contemplated aspects, and is intended to neither identify key or critical elements nor delineate the scope of such aspects. Its purpose is to present some concepts of this disclosure in a simplified form as a prelude to the more detailed description that is presented later.
[00012] The following paragraphs provide additional support for the claims of the subject application.
[00013] An objective of the present disclosure is to provide an ornamental water purification system that combines aesthetic appeal with effective water purification. The system aims to enhance user convenience, reduce reliance on electrical components, and enable customizable water flow and display settings.
[00014] In an aspect, the present disclosure provides an ornamental water purification system comprising a foundation for housing a reservoir, a tank holder mounted on a support column on the foundation, an intake nozzle connected to the tank holder, and a discharge conduit linked to the intake nozzle and the reservoir. A manual pump is connected to the intake nozzle, and a flow control valve is positioned on the discharge conduit. A basin holder is supported by a support pipe adjacent to the tank holder, and a decorative basin is fixed on the basin holder. The support pipe discharges water from the decorative basin to the reservoir.
[00015] The system provides the advantage of manual water circulation without reliance on electrical components, offering operational flexibility in various environments. The integration of decorative elements with the purification process enhances the visual appeal while maintaining water quality.
[00016] The ornamental water purification system further comprises a transparent reservoir that enables visual monitoring of water levels and purification status, enhancing user control and maintenance efficiency. The tank holder comprises adjustable mounting brackets that secure the reservoir at varying heights on the support column, allowing spatial customization.
[00017] The integration of a multi-layer filtration system within the intake nozzle improves water purity by removing particulate matter and contaminants. The discharge conduit comprises a coiled tubing section adjacent to the reservoir, enabling flexible water flow management and reducing operational stress on the manual pump.
[00018] The manual pump is connected to a handle on the intake nozzle, enabling efficient and user-friendly water suction and discharge actions. The flow control valve regulates the water flow rate, allowing precise management of water discharge from the reservoir to the discharge conduit.
[00019] The basin holder comprises adjustable brackets that position the decorative basin at varying angles to optimize water distribution. The decorative basin is integrated with LED lighting connected to the reservoir, enhancing aesthetic appeal and providing illumination for nighttime operation.
[00020] The support pipe comprises a flexible joint at the connection point with the basin holder, allowing for adjustable discharge angles to accommodate different basin orientations.
Brief Description of the Drawings
[00021] The features and advantages of the present disclosure would be more clearly understood from the following description taken in conjunction with the accompanying drawings in which:
[00022] FIG. 1 illustrates an ornamental water purification system (100), in accordance with the embodiments of the present disclosure.
[00023] FIG. 2 illustrates a class diagram of the ornamental water purification system 100, in accordance with the embodiments of the present disclosure.
Detailed Description
[00024] In the following detailed description of the invention, reference is made to the accompanying drawings that form a part hereof, and in which is shown, by way of illustration, specific embodiments in which the invention may be practiced. In the drawings, like numerals describe substantially similar components throughout the several views. These embodiments are described in sufficient detail to claim those skilled in the art to practice the invention. Other embodiments may be utilized and structural, logical, and electrical changes may be made without departing from the scope of the present invention. The following detailed description is, therefore, not to be taken in a limiting sense, and the scope of the present invention is defined only by the appended claims and equivalents thereof.
[00025] The use of the terms “a” and “an” and “the” and “at least one” and similar referents in the context of describing the invention (especially in the context of the following claims) are to be construed to cover both the singular and the plural, unless otherwise indicated herein or clearly contradicted by context. The use of the term “at least one” followed by a list of one or more items (for example, “at least one of A and B”) is to be construed to mean one item selected from the listed items (A or B) or any combination of two or more of the listed items (A and B), unless otherwise indicated herein or clearly contradicted by context. The terms “comprising,” “having,” “including,” and “containing” are to be construed as open-ended terms (i.e., meaning “including, but not limited to,”) unless otherwise noted. Recitation of ranges of values herein are merely intended to serve as a shorthand method of referring individually to each separate value falling within the range, unless otherwise indicated herein, and each separate value is incorporated into the specification as if it were individually recited herein. All methods described herein can be performed in any suitable order unless otherwise indicated herein or otherwise clearly contradicted by context. The use of any and all examples, or exemplary language (e.g., “such as”) provided herein, is intended merely to better illuminate the invention and does not pose a limitation on the scope of the invention unless otherwise claimed. No language in the specification should be construed as indicating any non-claimed element as essential to the practice of the invention.
[00026] Pursuant to the "Detailed Description" section herein, whenever an element is explicitly associated with a specific numeral for the first time, such association shall be deemed consistent and applicable throughout the entirety of the "Detailed Description" section, unless otherwise expressly stated or contradicted by the context.
[00027] As used herein, the term foundation is used to refer to a structural base that supports and stabilizes the ornamental water purification system. The foundation houses the reservoir and provides a steady platform for other components mounted on or connected to it. The foundation can be constructed from a variety of materials including concrete, metal, plastic, or composite materials, depending on the environmental and design requirements. The shape and dimensions of the foundation can vary to accommodate different system sizes and aesthetic preferences. The foundation may include slots, recesses, or compartments specifically designed to securely hold the reservoir and other integral parts of the system. The foundation may also feature non-slip surfaces or anchoring mechanisms to prevent displacement when the system is in use. Additionally, the foundation may incorporate drainage features or waterproofing treatments to ensure durability and longevity, especially when installed in outdoor environments.
[00028] As used herein, the term reservoir is used to refer to a container or storage unit that holds water within the ornamental water purification system. The reservoir may be constructed from materials such as plastic, glass, or metal, and may vary in capacity based on the intended application. The reservoir is housed within the foundation and serves as the primary storage for water before and after the purification process. The reservoir may include features such as level indicators or transparent sections for monitoring water levels visually. Additionally, the reservoir may be sealed or covered to prevent contamination from external sources like dust, debris, or insects. The reservoir may also have an inlet for receiving purified water from the discharge conduit and an outlet for redistributing water through the decorative basin. In certain embodiments, the reservoir may be removable for cleaning or refilling purposes, contributing to the ease of maintenance of the system.
[00029] As used herein, the term tank holder is used to refer to a structural component that supports and secures the reservoir within the ornamental water purification system. The tank holder is mounted on the support column and maintains the reservoir in a stable and elevated position relative to the foundation. The tank holder may be constructed from materials such as metal, plastic, or composite materials, selected for their strength and durability. The tank holder may include adjustable mounting brackets that allow the reservoir to be positioned at varying heights to accommodate different spatial configurations or user preferences. The tank holder may also include cushioning or clamping mechanisms to prevent movement or vibrations of the reservoir during operation. In some designs, the tank holder may feature decorative elements that enhance the visual appeal of the system while providing functional support for the reservoir. The tank holder is an integral component in maintaining the proper alignment of the reservoir with other parts of the system.
[00030] As used herein, the term support column is used to refer to a vertical structure that connects the foundation to the tank holder within the ornamental water purification system. The support column provides stability and elevation for the tank holder, ensuring that the reservoir is held securely above the foundation. The support column may be constructed from materials such as metal, plastic, or treated wood, depending on design and environmental factors. The height and diameter of the support column can be varied to meet aesthetic and functional requirements. The support column may include features such as grooves, brackets, or slots to accommodate the mounting of the tank holder and other components. Additionally, the support column may have a hollow or solid structure based on the strength requirements of the system. The support column contributes to the vertical alignment of the system, allowing for efficient water flow between components.
[00031] As used herein, the term intake nozzle is used to refer to a conduit or fitting that allows water to enter the system from the tank holder. The intake nozzle is connected to the tank holder and serves as the entry point for water that will undergo purification. The intake nozzle may be constructed from materials such as plastic, metal, or rubber, chosen for their resistance to corrosion and wear. The intake nozzle may be integrated with a multi-layer filtration system that removes particulate matter and contaminants from the water before it enters the reservoir. The nozzle's design may include threading, clamps, or quick-release fittings for secure attachment to the tank holder and other components. The intake nozzle may vary in size and shape depending on the required flow rate and pressure of the system. The intake nozzle facilitates the controlled movement of water into the system for purification.
[00032] As used herein, the term discharge conduit is used to refer to a tubing or piping system that channels purified water from the intake nozzle to the reservoir. The discharge conduit is linked to both the intake nozzle and the reservoir, enabling a continuous flow of water through the purification system. The discharge conduit may be made from flexible materials like rubber or plastic, or rigid materials like metal or PVC, depending on the specific application and environmental conditions. The discharge conduit may include a coiled tubing section near the reservoir to provide flexibility in managing water flow and reducing stress on the manual pump. The conduit may feature fittings, valves, or connectors to regulate flow and ensure secure attachment between components. The discharge conduit may vary in diameter and length based on the system's size and desired flow rates.
[00033] As used herein, the term manual pump is used to refer to a hand-operated device that facilitates the movement of water through the ornamental water purification system. The manual pump is connected to the intake nozzle and enables water to be drawn from the tank holder and pushed through the discharge conduit into the reservoir. The manual pump may be constructed from durable materials like plastic, metal, or rubber to withstand repeated use. The manual pump may include a handle or lever mounted on the intake nozzle to allow for easy operation. The design of the manual pump may vary, incorporating piston, diaphragm, or lever mechanisms to generate the necessary suction and pressure for water movement. The manual pump allows the system to operate without relying on electrical power, making it suitable for outdoor or off-grid environments.
[00034] As used herein, the term flow control valve is used to refer to a mechanical device that regulates the rate of water flow within the ornamental water purification system. The flow control valve is positioned along the discharge conduit and enables precise adjustment of water movement from the intake nozzle to the reservoir. The flow control valve may be constructed from materials such as metal, plastic, or rubber, depending on the environmental conditions and desired durability. The valve may include features like adjustable knobs, levers, or dials that allow for manual control of water flow. The flow control valve may vary in size and type, including ball valves, gate valves, or needle valves, depending on the specific requirements of the system. The flow control valve contributes to maintaining consistent water purification performance and aesthetic flow patterns.
[00035] As used herein, the term basin holder is used to refer to a structural component that supports the decorative basin within the ornamental water purification system. The basin holder is supported by a support pipe adjacent to the tank holder and holds the decorative basin securely in place. The basin holder may be constructed from materials such as metal, plastic, or treated wood, depending on the design and environmental factors. The basin holder may include adjustable brackets that allow the decorative basin to be positioned at various angles, optimizing water distribution within the basin. The basin holder may incorporate decorative elements that complement the overall aesthetic of the system while maintaining functional stability. The design and dimensions of the basin holder may vary to accommodate different basin shapes and sizes.
[00036] As used herein, the term decorative basin is used to refer to a container or vessel that serves both aesthetic and functional purposes in the ornamental water purification system. The decorative basin is fixed on the basin holder and receives purified water from the reservoir through the support pipe. The decorative basin may be constructed from materials such as ceramic, glass, metal, or plastic, selected for both durability and visual appeal. The basin may include integrated LED lighting connected to the reservoir, enhancing the visual aesthetics and providing illumination for nighttime operation. The shape, size, and design of the decorative basin may vary to suit different decorative themes and user preferences. The decorative basin contributes to the ornamental aspect of the system while participating in the water circulation process.
[00037] As used herein, the term support pipe is used to refer to a conduit that facilitates the discharge of water from the decorative basin to the reservoir. The support pipe is positioned adjacent to the tank holder and supports the basin holder while enabling water flow between the components. The support pipe may be constructed from materials such as metal, plastic, or rubber, selected for their strength and resistance to corrosion. The support pipe may include a flexible joint at the connection point with the basin holder, allowing for adjustable discharge angles to accommodate different basin orientations. The support pipe may vary in diameter and length depending on the system design and desired water flow rates. The support pipe contributes to maintaining the continuous circulation of water within the ornamental water purification system.
[00038] FIG. 1 illustrates an ornamental water purification system (100), in accordance with the embodiments of the present disclosure. In an embodiment, the ornamental water purification system 100 comprises a foundation 102 for housing a reservoir 104. The foundation 102 provides structural support for the entire system and is dimensioned to securely accommodate the reservoir 104. The foundation 102 may be constructed from materials such as concrete, plastic, metal, or composite materials, depending on environmental and aesthetic requirements. The foundation 102 may feature recesses, slots, or compartments specifically designed to house the reservoir 104 securely, preventing unwanted movement during operation. The shape and size of the foundation 102 can be adapted to fit different installation environments, such as indoor spaces, gardens, or patios. Additionally, the foundation 102 may incorporate waterproofing features or coatings to prevent corrosion or water damage. In certain embodiments, the foundation 102 may also include leveling mechanisms, such as adjustable feet or anchors, to stabilize the system on uneven surfaces. Drainage pathways or channels may be integrated into the foundation 102 to direct excess water away from the reservoir 104, reducing the risk of overflow or flooding.
[00039] In an embodiment, the ornamental water purification system 100 comprises a tank holder 106 mounted on a support column 108 on the foundation 102. The tank holder 106 is designed to support the reservoir 104 securely and is affixed to the support column 108 using mechanical fasteners, brackets, or welding techniques, depending on the construction materials. The tank holder 106 may be fabricated from durable materials such as metal, plastic, or composite materials to provide both strength and resistance to environmental conditions. The tank holder 106 may include adjustable mounting brackets or slots, allowing the reservoir 104 to be positioned at varying heights along the support column 108 to accommodate different spatial configurations. The design of the tank holder 106 may incorporate padding, clamps, or locking mechanisms to prevent the reservoir 104 from shifting or vibrating during operation. In some embodiments, the tank holder 106 may feature decorative elements to complement the ornamental nature of the system while maintaining functional integrity.
[00040] In an embodiment, the ornamental water purification system 100 comprises an intake nozzle 110 connected to the tank holder 106. The intake nozzle 110 serves as an entry point for water flowing from the reservoir 104 into the purification system. The intake nozzle 110 may be constructed from materials such as plastic, metal, or rubber, selected for durability and resistance to corrosion. The intake nozzle 110 may incorporate threaded connections, quick-release fittings, or compression seals to ensure secure attachment to the tank holder 106 and prevent leaks. In certain embodiments, the intake nozzle 110 may be integrated with a multi-layer filtration system that removes particulate matter and contaminants from the water before it progresses through the system. The design of the intake nozzle 110 may vary in terms of diameter, length, and shape, depending on the desired flow rate and pressure requirements. The intake nozzle 110 may also include flow guides or diffusers to regulate the water entering the system.
[00041] In an embodiment, the ornamental water purification system 100 comprises a discharge conduit 112 linked to the intake nozzle 110 and the reservoir 104. The discharge conduit 112 facilitates the movement of purified water from the intake nozzle 110 to the reservoir 104, maintaining a continuous flow within the system. The discharge conduit 112 may be constructed from flexible materials like rubber or plastic tubing, or rigid materials such as metal or PVC, depending on the specific application. The discharge conduit 112 may feature fittings, connectors, or clamps to ensure secure attachment at both the intake nozzle 110 and the reservoir 104. In some embodiments, the discharge conduit 112 may incorporate a coiled tubing section adjacent to the reservoir 104 to provide flexibility in water flow management and to reduce mechanical stress on the manual pump 114 during operation. The discharge conduit 112 may vary in diameter and length to accommodate different system configurations and flow requirements.
[00042] In an embodiment, the ornamental water purification system 100 comprises a manual pump 114 connected to the intake nozzle 110. The manual pump 114 enables the movement of water through the system by manually generating the necessary pressure. The manual pump 114 may be constructed from durable materials such as plastic, metal, or rubber, selected for their ability to withstand repeated use. The manual pump 114 may include a handle, lever, or plunger mechanism that is operatively connected to the intake nozzle 110, allowing a user to manually draw water from the reservoir 104 and push it through the discharge conduit 112. The design of the manual pump 114 may vary based on the desired flow rate, with options including piston pumps, diaphragm pumps, or lever-action pumps. The manual pump 114 may also feature non-return valves or seals to maintain consistent pressure and prevent backflow during operation.
[00043] In an embodiment, the ornamental water purification system 100 comprises a flow control valve 116 on the discharge conduit 112. The flow control valve 116 regulates the rate of water flow within the system, allowing for precise adjustments to the volume and speed of water being purified and circulated. The flow control valve 116 may be constructed from materials such as metal, plastic, or rubber, selected for durability and resistance to wear. The flow control valve 116 may include manual adjustment mechanisms such as knobs, levers, or dials that allow the

user to control the water flow rate with precision. The type of flow control valve 116 used may vary, including ball valves, gate valves, or needle valves, depending on the system requirements. The placement of the flow control valve 116 along the discharge conduit 112 enables easy access for adjustments during system operation.
[00044] In an embodiment, the ornamental water purification system 100 comprises a basin holder 118 supported by a support pipe adjacent to the tank holder 106. The basin holder 118 provides structural support for the decorative basin 120, ensuring that it is securely positioned within the system. The basin holder 118 may be constructed from materials such as metal, plastic, or composite materials to provide strength and stability. The basin holder 118 may include adjustable brackets or slots that allow the decorative basin 120 to be positioned at varying angles to optimize water distribution within the basin 120. The design of the basin holder 118 may incorporate locking mechanisms or clamps to prevent movement of the decorative basin 120 during operation. In certain embodiments, the basin holder 118 may include decorative features that complement the overall aesthetic of the ornamental water purification system 100.
[00045] In an embodiment, the ornamental water purification system 100 comprises a decorative basin 120 fixed on the basin holder 118. The decorative basin 120 serves both an aesthetic and functional purpose by displaying water while participating in the purification process. The decorative basin 120 may be constructed from materials such as ceramic, glass, metal, or plastic, selected for their visual appeal and durability. The size, shape, and design of the decorative basin 120 may vary depending on the desired ornamental effect. In some embodiments, the decorative basin 120 may be integrated with LED lighting that is connected to the reservoir 104, providing illumination for nighttime operation. The decorative basin 120 may also include features such as textured surfaces or patterns to enhance the visual effect of the flowing water.
[00046] In an embodiment, the ornamental water purification system 100 comprises a support pipe configured to discharge water from the decorative basin 120 to the reservoir 104. The support pipe is positioned adjacent to the tank holder 106 and supports the basin holder 118 while facilitating the flow of water from the decorative basin 120 back into the reservoir 104. The support pipe may be constructed from materials such as metal, plastic, or rubber, selected for strength and resistance to corrosion. The support pipe may include a flexible joint at the connection point with the basin holder 118, allowing for adjustable discharge angles to accommodate different orientations of the decorative basin 120. The diameter and length of the support pipe may vary depending on the system design and desired flow rates. The support pipe facilitates continuous water circulation within the ornamental water purification system 100.
[00047] In an embodiment, the ornamental water purification system 100 comprises a reservoir 104 constructed from a transparent material. The transparent material may include glass, acrylic, polycarbonate, or other clear, durable substances that provide visibility while maintaining structural integrity. The transparency of the reservoir 104 enables visual monitoring of the water levels, allowing users to determine the volume of water present at any given time without the need for external measurement tools. This feature aids in timely refilling and maintenance, preventing the reservoir 104 from running dry or overflowing. In addition to monitoring water levels, the transparent reservoir 104 allows for visual inspection of the water’s clarity and quality, offering a direct indication of the purification process's effectiveness. The reservoir 104 may include markings or gradations etched or printed on the surface to indicate specific volume levels, further assisting in water management. The transparent material may be treated with coatings to resist scratching, clouding, or discoloration over time, preserving visibility throughout prolonged use. The reservoir 104 may also include UV-resistant properties to prevent degradation when exposed to sunlight in outdoor installations. The shape of the reservoir 104 can vary, with cylindrical, rectangular, or custom designs to fit specific aesthetic and spatial requirements. Additionally, the reservoir 104 may feature a removable lid or cover to prevent contamination from debris while still allowing for easy access for cleaning and refilling. The transparent construction of the reservoir 104 contributes to both functional monitoring and aesthetic integration within the ornamental water purification system 100.
[00048] In an embodiment, the ornamental water purification system 100 comprises a tank holder 106 equipped with adjustable mounting brackets that secure the reservoir 104 at varying heights on the support column 108. The adjustable mounting brackets are designed to provide flexibility in the vertical positioning of the reservoir 104, allowing the system to be tailored to different spatial configurations and aesthetic preferences. The brackets may be constructed from materials such as stainless steel, aluminum, or reinforced plastic, chosen for their strength, durability, and resistance to environmental factors such as moisture and corrosion. The brackets may feature sliding tracks, locking mechanisms, or threaded fasteners that enable smooth adjustment and secure fixation of the reservoir 104 at the desired height. The adjustable nature of the mounting brackets allows for customization based on user requirements, such as optimizing water flow dynamics or aligning the reservoir 104 with other components of the system for aesthetic coherence. The brackets may also include cushioning elements like rubber pads or silicone inserts to protect the reservoir 104 from vibrations, scratches, or impact during operation. The tank holder 106 may be designed to accommodate reservoirs of different shapes and sizes, providing versatility in system design. The ability to adjust the height of the reservoir 104 also facilitates easier access for refilling, cleaning, and maintenance tasks, improving the system's overall usability. The tank holder 106, in conjunction with the adjustable brackets, provides a stable and adaptable support structure within the ornamental water purification system 100.
[00049] In an embodiment, the ornamental water purification system 100 comprises an intake nozzle 110 integrated with a multi-layer filtration system positioned within the tank holder 106. The multi-layer filtration system is designed to improve water purity by removing particulate matter, contaminants, and impurities prior to the water’s absorption into the system. The filtration system may include a combination of mechanical, chemical, and biological filtration layers, such as activated carbon, ceramic filters, sediment filters, and bio-filters. The mechanical filtration layer captures larger particles like dirt, sand, and debris, while the activated carbon layer removes odors, chlorine, and organic compounds. The ceramic or fine mesh filters address smaller particles and microorganisms, contributing to improved water quality. The intake nozzle 110 is constructed from materials like stainless steel, plastic, or brass, selected for their corrosion resistance and durability in contact with water. The nozzle may feature threaded or quick-connect fittings that facilitate easy attachment and removal for maintenance or replacement of the filtration components. The integration of the filtration system within the intake nozzle 110 minimizes the need for additional external filtration units, streamlining the system's design and reducing space requirements. The intake nozzle 110 may also include flow regulators or diffusers to ensure even distribution of water across the filtration media, optimizing the purification process. The placement of the multi-layer filtration system within the tank holder 106 allows for a compact and efficient water purification process within the ornamental water purification system 100.
[00050] In an embodiment, the ornamental water purification system 100 comprises a discharge conduit 112 that includes a coiled tubing section adjacent to the reservoir 104. The coiled tubing section is designed to facilitate flexible water flow management by accommodating changes in water pressure and flow rates while maintaining a stable connection between the intake nozzle 110 and the reservoir 104. The discharge conduit 112 may be constructed from flexible materials such as rubber, silicone, or PVC, or from rigid materials like stainless steel or copper with flexible joints. The coiled design allows the tubing to expand and contract as needed, reducing stress on the manual pump 114 during operation and minimizing the risk of leaks or disconnections. The coils can absorb pressure fluctuations, preventing sudden surges that could damage the system components or disrupt the water flow. The discharge conduit 112 may be fitted with connectors, clamps, or seals to ensure a secure attachment at both ends. The length, diameter, and number of coils in the tubing can be adjusted based on the system's size and flow requirements. The coiled section of the discharge conduit 112 also provides additional flexibility during installation, allowing the system to be adapted to different spatial configurations without compromising performance. The discharge conduit 112 contributes to the efficient and reliable operation of the ornamental water purification system 100.
[00051] In an embodiment, the ornamental water purification system 100 comprises a manual pump 114 operatively connected to a handle mounted on the intake nozzle 110. The manual pump 114 is designed to facilitate efficient water suction and discharge actions, enabling users to operate the system without the need for electrical power. The pump 114 may be constructed from materials such as metal, plastic, or rubber, selected for their durability and resistance to wear from repeated use. The handle, connected to the intake nozzle 110, may be designed for ergonomic operation, featuring a comfortable grip and smooth movement to reduce user fatigue during pumping. The manual pump 114 may utilize a piston, diaphragm, or lever mechanism to generate the necessary suction and pressure for water movement through the system. The pump 114 may also include check valves or non-return valves to maintain consistent pressure and prevent backflow during operation. The design of the manual pump 114 may vary to accommodate different flow rates and pressure requirements, with some embodiments including adjustable settings for fine-tuning the water flow. The manual pump 114 provides a reliable and user-friendly method for circulating water within the ornamental water purification system 100.
[00052] In an embodiment, the ornamental water purification system 100 comprises a flow control valve 116 positioned along the discharge conduit 112 to regulate the water flow rate. The flow control valve 116 allows precise management of the water discharge from the reservoir 104 to the discharge conduit 112, ensuring consistent and controlled flow throughout the system. The valve 116 may be constructed from materials such as brass, stainless steel, or plastic, chosen for their durability and resistance to corrosion. The flow control valve 116 may feature manual adjustment mechanisms, such as a rotating knob, lever, or sliding control, allowing users to increase or decrease the water flow as needed. The valve type may include ball valves, gate valves, or needle valves, depending on the desired level of control and system specifications. The flow control valve 116 may be easily accessible for adjustments during operation and maintenance, providing flexibility in managing water distribution within the ornamental water purification system 100.
[00053] In an embodiment, the ornamental water purification system 100 comprises a basin holder 118 supported by a support pipe adjacent to the tank holder 106. The basin holder 118 includes adjustable brackets that allow the decorative basin 120 to be positioned at varying angles, optimizing water distribution within the basin 120. The adjustable brackets may be constructed from materials such as stainless steel, aluminum, or reinforced plastic, selected for their strength and resistance to corrosion. The brackets may feature locking mechanisms, sliding tracks, or pivot joints that allow the angle of the decorative basin 120 to be adjusted easily and securely. The ability to adjust the basin’s angle enhances the aesthetic appeal of the water flow and improves the system’s overall functionality by ensuring even water distribution. The basin holder 118 is designed to provide stable support for the decorative basin 120 while allowing for customizable positioning within the ornamental water purification system 100.
[00054] In an embodiment, the ornamental water purification system 100 comprises a decorative basin 120 fixed on the basin holder 118. The decorative basin 120 is equipped with integrated LED lighting connected to the reservoir 104, enhancing the aesthetic appeal of the system and providing illumination for nighttime operation. The decorative basin 120 may be constructed from materials such as glass, ceramic, metal, or plastic, selected for their visual appeal and durability. The LED lighting may be embedded within the basin’s structure or attached externally, providing a variety of lighting effects to complement the water flow. The lighting system may be powered by a battery, solar panel, or connected to an external power source, depending on the system design. The LED lights may feature adjustable brightness levels or color options, allowing users to customize the visual appearance of the ornamental water purification system 100. The decorative basin 120 serves both functional and aesthetic purposes, contributing to the system’s visual and operational characteristics.
[00055] In an embodiment, the ornamental water purification system 100 comprises a support pipe that includes a flexible joint at the connection point with the basin holder 118. The flexible joint allows for adjustable discharge angles, accommodating different orientations of the decorative basin 120. The support pipe may be constructed from materials such as metal, plastic, or rubber, chosen for their strength and resistance to corrosion. The flexible joint may be a ball-and-socket mechanism, a hinged connection, or a flexible hose section, allowing the discharge angle to be adjusted easily while maintaining a secure and leak-proof connection. The adjustable nature of the support pipe allows the system to be adapted to various spatial configurations and aesthetic preferences. The support pipe facilitates continuous water circulation within the ornamental water purification system 100 while providing flexibility in the system’s design and operation.
[00056] FIG. 2 illustrates a class diagram of the ornamental water purification system 100, in accordance with the embodiments of the present disclosure. The ornamental water purification system 100 comprises a foundation 102 that houses a reservoir 104 for water storage. Mounted on the foundation 102 is a tank holder 106, which is supported by a vertical support column 108, providing structural stability. Connected to the tank holder 106 is an intake nozzle 110, which serves as the entry point for water and is linked to a manual pump 114, allowing manual water suction. A discharge conduit 112 extends from the intake nozzle 110 to the reservoir 104, facilitating the flow of purified water. Positioned along the discharge conduit 112 is a flow control valve 116, which regulates the rate of water flow into the reservoir 104. Adjacent to the tank holder 106 is a basin holder 118, supported by a support pipe that aids in positioning. Fixed onto the basin holder 118 is a decorative basin 120, which not only enhances the system’s aesthetic appeal but also participates in the water circulation process. The support pipe is connected to the decorative basin 120 and is designed to discharge water back into the reservoir 104, allowing continuous water recycling within the system.
[00057] In an embodiment, the ornamental water purification system 100 comprises a foundation 102 for housing a reservoir 104, providing structural support and stability for the entire system. The integration of the foundation 102 with the reservoir 104 minimizes unwanted movement and vibrations during operation, thereby enhancing the durability of the system. The placement of the reservoir 104 within the foundation 102 allows for optimized weight distribution, reducing the risk of tipping or misalignment. This secure housing also protects the reservoir 104 from environmental factors such as debris or external impacts. The stable base created by the foundation 102 contributes to the consistent operation of the manual pump 114 and ensures smooth water flow through the discharge conduit 112. Additionally, the spatial arrangement of the foundation 102 facilitates easy access to other components such as the tank holder 106, basin holder 118, and decorative basin 120, promoting streamlined maintenance and efficient water circulation throughout the system.
[00058] In an embodiment, the reservoir 104 comprises a transparent material, which facilitates visual monitoring of water levels and the purification status. The transparency of the reservoir 104 allows users to detect water clarity changes, sediment accumulation, or discoloration, providing immediate feedback on the purification process. This direct visibility eliminates the need for external gauges or electronic monitoring systems, simplifying maintenance and operation. The transparent reservoir 104 also aids in ensuring timely refills, preventing the manual pump 114 from running dry, which could otherwise lead to mechanical wear or failure. The visual access provided by the transparent reservoir 104 improves the system’s usability, particularly in environments where water quality must be consistently monitored, such as decorative indoor fountains or outdoor garden installations. Additionally, the transparent design contributes to the aesthetic appeal of the ornamental water purification system 100, allowing the water’s movement and clarity to enhance the overall visual effect.
[00059] In an embodiment, the tank holder 106 is equipped with adjustable mounting brackets that secure the reservoir 104 at varying heights on the support column 108, providing spatial customization. The ability to adjust the height of the reservoir 104 allows the system to be tailored to specific installation environments, accommodating height restrictions or optimizing the alignment of water flow components. By modifying the reservoir 104's position, water pressure dynamics can be adjusted to improve the efficiency of the manual pump 114 and the flow through the discharge conduit 112. The adjustable brackets also simplify maintenance tasks, such as cleaning or refilling the reservoir 104, by enabling easier access. Furthermore, the flexible positioning provided by the tank holder 106 supports the aesthetic adaptability of the ornamental water purification system 100, allowing the arrangement of components like the decorative basin 120 and basin holder 118 to be visually coordinated according to user preferences.
[00060] In an embodiment, the intake nozzle 110 is integrated with a multi-layer filtration system positioned within the tank holder 106, improving water purity by removing particulate matter and contaminants prior to absorption. The multi-layer filtration system may include sediment filters, activated carbon, and fine mesh layers that collectively enhance water quality by capturing a broad range of impurities. The positioning of the filtration system within the intake nozzle 110 allows for immediate purification as water enters the system, reducing the risk of contamination within downstream components like the discharge conduit 112 or the decorative basin 120. This arrangement supports continuous purification without requiring external filtration units, leading to a compact and efficient design. Additionally, the integration of filtration within the intake nozzle 110 minimizes maintenance intervals by limiting the accumulation of debris in other parts of the system. The enhanced water purity achieved through this setup contributes to both the functional and aesthetic aspects of the ornamental water purification system 100, maintaining clear, clean water in visible components like the reservoir 104 and decorative basin 120.
[00061] In an embodiment, the discharge conduit 112 comprises a coiled tubing section adjacent to the reservoir 104, facilitating flexible water flow management and reducing stress on the manual pump 114 during operation. The coiled design allows the discharge conduit 112 to expand and contract in response to fluctuations in water pressure and volume, preventing sudden surges that could damage the manual pump 114 or other components. This flexibility also accommodates minor shifts in the system’s alignment, ensuring a continuous, stable flow of water from the intake nozzle 110 to the reservoir 104. The coiled tubing reduces the mechanical load on the manual pump 114 by absorbing pressure variations, thereby extending the lifespan of the pump. Additionally, the coiled structure allows for compact installation in constrained spaces without compromising water flow efficiency. The enhanced flexibility provided by the coiled discharge conduit 112 improves the reliability and durability of the ornamental water purification system 100.
[00062] In an embodiment, the manual pump 114 is operatively connected to a handle mounted on the intake nozzle 110, enabling efficient and user-friendly water suction and discharge actions. The ergonomic placement of the handle facilitates smooth operation, allowing users to generate consistent water flow with minimal physical effort. The mechanical connection between the handle and the intake nozzle 110 ensures direct and responsive control over the water movement, contributing to the system’s efficiency. The manual operation eliminates the need for electrical power, making the system suitable for off-grid or outdoor environments. This design also enhances system reliability by reducing the potential for electrical or motor-related failures. The manual pump 114’s connection to the handle supports consistent performance, enabling users to maintain optimal water flow through the discharge conduit 112 and into the reservoir 104.
[00063] In an embodiment, the flow control valve 116 is positioned along the discharge conduit 112 and regulates the water flow rate, allowing precise management of water discharge from the reservoir 104. The placement of the flow control valve 116 enables fine-tuning of water flow, ensuring that the decorative basin 120 receives a consistent and aesthetically pleasing stream of water. The ability to adjust flow rates enhances the purification efficiency by controlling the speed at which water circulates through the filtration components of the intake nozzle 110. The flow control valve 116 also reduces the risk of overflow in the reservoir 104 and decorative basin 120, contributing to system safety and operational stability. The regulation of water flow through the valve allows for tailored operation in various environments, from indoor decorative installations to outdoor water features.
[00064] In an embodiment, the basin holder 118 comprises adjustable brackets that allow the decorative basin 120 to be positioned at varying angles, optimizing water distribution within the basin 120. The adjustable brackets enable users to modify the tilt and orientation of the decorative basin 120, allowing water to cascade in specific patterns or directions that enhance visual appeal. By adjusting the basin 120’s angle, the flow of water can be directed to prevent splashing or spillage, maintaining a clean surrounding environment. This flexibility also allows the system to accommodate decorative basins of different shapes and sizes, increasing the system’s adaptability for various aesthetic applications. The optimized water distribution achieved through the adjustable brackets supports consistent flow back to the reservoir 104 via the support pipe, contributing to smooth system operation.
[00065] In an embodiment, the decorative basin 120 is equipped with integrated LED lighting connected to the reservoir 104, enhancing aesthetic appeal and providing illumination for nighttime operation. The integrated LED lighting highlights the movement and clarity of the water, creating visually engaging effects that enhance the ornamental quality of the system. The illumination provided by the LED lighting improves the visibility of the decorative basin 120 and surrounding components during low-light conditions, extending the usability of the system into evening hours. The lighting may be configured to highlight specific water flow patterns or reflections, further enhancing the visual experience. The connection of the LED lighting to the reservoir 104 allows for synchronized operation, providing a cohesive aesthetic across the system.
[00066] In an embodiment, the support pipe comprises a flexible joint at the connection point with the basin holder 118, allowing for adjustable discharge angles to accommodate different decorative basin 120 orientations. The flexible joint enables precise control over the angle and direction of water flow from the decorative basin 120 back to the reservoir 104, ensuring smooth and efficient water circulation. This adjustability allows the system to adapt to various spatial configurations, making it suitable for diverse installation environments. The flexible joint also reduces mechanical stress on the support pipe and associated components, enhancing the durability and reliability of the system. By enabling variable discharge angles, the flexible joint supports customized aesthetic arrangements, allowing users to tailor the visual presentation of the water flow within the ornamental water purification system 100.
[00067] Example embodiments herein have been described above with reference to block diagrams and flowchart illustrations of methods and apparatuses. It will be understood that each block of the block diagrams and flowchart illustrations, and combinations of blocks in the block diagrams and flowchart illustrations, respectively, can be implemented by various means including hardware, software, firmware, and a combination thereof. For example, in one embodiment, each block of the block diagrams and flowchart illustrations, and combinations of blocks in the block diagrams and flowchart illustrations can be implemented by computer program instructions. These computer program instructions may be loaded onto a general purpose computer, special purpose computer, or other programmable data processing apparatus to produce a machine, such that the instructions which execute on the computer or other programmable data processing apparatus create means for implementing the functions specified in the flowchart block or blocks.
[00068] Operations in accordance with a variety of aspects of the disclosure is described above would not have to be performed in the precise order described. Rather, various steps can be handled in reverse order or simultaneously or not at all.
[00069] While several implementations have been described and illustrated herein, a variety of other means and/or structures for performing the function and/or obtaining the results and/or one or more of the advantages described herein may be utilized, and each of such variations and/or modifications is deemed to be within the scope of the implementations described herein. More generally, all parameters, dimensions, materials, and configurations described herein are meant to be exemplary and that the actual parameters, dimensions, materials, and/or configurations will depend upon the specific application or applications for which the teachings is/are used. Those skilled in the art will recognize, or be able to ascertain using no more than routine experimentation, many equivalents to the specific implementations described herein. It is, therefore, to be understood that the foregoing implementations are presented by way of example only and that, within the scope of the appended claims and equivalents thereto, implementations may be practiced otherwise than as specifically described and claimed. Implementations of the present disclosure are directed to each individual feature, system, article, material, kit, and/or method described herein. In addition, any combination of two or more such features, systems, articles, materials, kits, and/or methods, if such features, systems, articles, materials, kits, and/or methods are not mutually inconsistent, is included within the scope of the present disclosure.

Claims
I/We Claim:
1. An ornamental water purification system (100) comprising:
a foundation (102) for housing a reservoir (104);
a tank holder (106) mounted on a support column (108) on said foundation (102);
an intake nozzle (110) connected to said tank holder (106);
a discharge conduit (112) linked to said intake nozzle (110) and said reservoir (104);
a manual pump (114) connected to said intake nozzle (110);
a flow control valve (116) on said discharge conduit (112);
a basin holder (118) supported by a support pipe adjacent to said tank holder (106); and
a decorative basin (120) fixed on said basin holder, wherein said support pipe is configured to discharge water from said decorative basin to said reservoir (104).
2. The ornamental water purification system (100) of claim 1, wherein said reservoir (104) comprises a transparent material, facilitating visual monitoring of water levels and purification status within said reservoir (104).
3. The ornamental water purification system (100) of claim 1, wherein said tank holder (106) is equipped with adjustable mounting brackets configured to secure said water tank receptacle (104) at varying heights on said support column (108), allowing customization based on spatial requirements.
4. The ornamental water purification system (100) of claim 1, wherein said intake nozzle (110) is integrated with a multi-layer filtration system positioned within said tank holder (106), thereby improving water purity by removing particulate matter and contaminants prior to absorption.
5. The ornamental water purification system (100) of claim 1, wherein said discharge conduit (112) comprises a coiled tubing section adjacent to said reservoir (104), facilitating flexible water flow management and reducing stress on said manual pump (114) during operation.
6. The ornamental water purification system (100) of claim 1, wherein said manual pump (114) is operatively connected to a handle mounted on said intake nozzle (110), enabling efficient and user-friendly water suction and discharge actions.
7. The ornamental water purification system (100) of claim 1, wherein said flow control valve (116) is positioned along said discharge conduit (112) and is configured to regulate water flow rate, allowing precise management of water discharge from said reservoir (104) to said discharge conduit (112).
8. The ornamental water purification system (100) of claim 1, wherein said basin holder (118) comprises adjustable brackets that allow said decorative basin (120) to be positioned at varying angles, thereby optimizing water distribution within said basin (120).
9. The ornamental water purification system (100) of claim 1, wherein said decorative basin (120) is equipped with integrated LED lighting connected to said reservoir (104), enhancing aesthetic appeal and providing illumination for nighttime operation.
10. The ornamental water purification system (100) of claim 1, wherein said support pipe comprises a flexible joint at the connection point with said basin holder (118), allowing for adjustable discharge angles to accommodate different basin (120) orientations.

ORNAMENTAL WATER PURIFICATION SYSTEM WITH DECORATIVE BASIN AND MANUAL PUMP
Abstract
The present disclosure provides an ornamental water purification system comprising a foundation for housing a reservoir, a tank holder mounted on a support column on the foundation, an intake nozzle connected to the tank holder, and a discharge conduit linked to the intake nozzle and the reservoir. A manual pump is connected to the intake nozzle, and a flow control valve is positioned on the discharge conduit. A basin holder is supported by a support pipe adjacent to the tank holder, and a decorative basin is fixed on the basin holder. The support pipe discharges water from the decorative basin to the reservoir.

, Claims:Claims
I/We Claim:
1. An ornamental water purification system (100) comprising:
a foundation (102) for housing a reservoir (104);
a tank holder (106) mounted on a support column (108) on said foundation (102);
an intake nozzle (110) connected to said tank holder (106);
a discharge conduit (112) linked to said intake nozzle (110) and said reservoir (104);
a manual pump (114) connected to said intake nozzle (110);
a flow control valve (116) on said discharge conduit (112);
a basin holder (118) supported by a support pipe adjacent to said tank holder (106); and
a decorative basin (120) fixed on said basin holder, wherein said support pipe is configured to discharge water from said decorative basin to said reservoir (104).
2. The ornamental water purification system (100) of claim 1, wherein said reservoir (104) comprises a transparent material, facilitating visual monitoring of water levels and purification status within said reservoir (104).
3. The ornamental water purification system (100) of claim 1, wherein said tank holder (106) is equipped with adjustable mounting brackets configured to secure said water tank receptacle (104) at varying heights on said support column (108), allowing customization based on spatial requirements.
4. The ornamental water purification system (100) of claim 1, wherein said intake nozzle (110) is integrated with a multi-layer filtration system positioned within said tank holder (106), thereby improving water purity by removing particulate matter and contaminants prior to absorption.
5. The ornamental water purification system (100) of claim 1, wherein said discharge conduit (112) comprises a coiled tubing section adjacent to said reservoir (104), facilitating flexible water flow management and reducing stress on said manual pump (114) during operation.
6. The ornamental water purification system (100) of claim 1, wherein said manual pump (114) is operatively connected to a handle mounted on said intake nozzle (110), enabling efficient and user-friendly water suction and discharge actions.
7. The ornamental water purification system (100) of claim 1, wherein said flow control valve (116) is positioned along said discharge conduit (112) and is configured to regulate water flow rate, allowing precise management of water discharge from said reservoir (104) to said discharge conduit (112).
8. The ornamental water purification system (100) of claim 1, wherein said basin holder (118) comprises adjustable brackets that allow said decorative basin (120) to be positioned at varying angles, thereby optimizing water distribution within said basin (120).
9. The ornamental water purification system (100) of claim 1, wherein said decorative basin (120) is equipped with integrated LED lighting connected to said reservoir (104), enhancing aesthetic appeal and providing illumination for nighttime operation.
10. The ornamental water purification system (100) of claim 1, wherein said support pipe comprises a flexible joint at the connection point with said basin holder (118), allowing for adjustable discharge angles to accommodate different basin (120) orientations.

Documents

Application Documents

# Name Date
1 202511037847-STATEMENT OF UNDERTAKING (FORM 3) [20-04-2025(online)].pdf 2025-04-20
2 202511037847-REQUEST FOR EARLY PUBLICATION(FORM-9) [20-04-2025(online)].pdf 2025-04-20
3 202511037847-POWER OF AUTHORITY [20-04-2025(online)].pdf 2025-04-20
4 202511037847-OTHERS [20-04-2025(online)].pdf 2025-04-20
5 202511037847-FORM-9 [20-04-2025(online)].pdf 2025-04-20
6 202511037847-FORM FOR SMALL ENTITY(FORM-28) [20-04-2025(online)].pdf 2025-04-20
7 202511037847-FORM 1 [20-04-2025(online)].pdf 2025-04-20
8 202511037847-EVIDENCE FOR REGISTRATION UNDER SSI(FORM-28) [20-04-2025(online)].pdf 2025-04-20
9 202511037847-EDUCATIONAL INSTITUTION(S) [20-04-2025(online)].pdf 2025-04-20
10 202511037847-DRAWINGS [20-04-2025(online)].pdf 2025-04-20
11 202511037847-DECLARATION OF INVENTORSHIP (FORM 5) [20-04-2025(online)].pdf 2025-04-20
12 202511037847-COMPLETE SPECIFICATION [20-04-2025(online)].pdf 2025-04-20