Solar energy water body intelligent oxygenation integrated machine
Patent Information
- Application Number
- CN202522268596.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-27
- Publication Date
- 2026-09-25
- Estimated Expiration
- 2035-10-27
AI Technical Summary
[0004]然而,开放式水域受多种因素影响,工业废水排放、农业面源污染、生活污水流入等,致使水中杂质和污染物增多
在实际应用中,本申请的太阳能水体净化增氧一体机放置于开放式水域中。一体机工作时,水处理筒沉入水下,进水口朝向水面,位于水面上方的增氧喷头负责释放经过处理的水流来实现增氧;而浮力件漂浮于水面,对水处理筒产生牵引作用,使一体机稳定定位,保证设备持续运行。当一体机开始工作,水源从进水口流入水处理筒,内置的过滤筒会高效拦截水中的杂质,净化后的水则从出水口排出,完成水体净化流程。与此同时,太阳能发电组件发挥作用,将太阳能转化为电能,为泵体供电。泵体通过第一导流管从出水口抽水,再经第二导流管将水输送至增氧喷头喷出,实现高效增氧。该一体机的优势十分显著。它一举解决了开放式水域面临的污染与缺氧难题,实现净化和增氧同步进行。在泵体吸水过程中,污水和杂质会向水处理筒汇聚,杂质被截留在过滤筒内,只需拆卸过滤筒,就能轻松清理杂质,操作简便,可实现定期维护。另外,太阳能供电不仅绿色环保,契合可持续发展理念,还大幅降低了运行成本,无需外接电源,摆脱布线限制,安装和使用不受场地条件制约,能广泛应用于各类开放式水域,有效改善水质。
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Figure CN224792956U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of water treatment technology, and more specifically, to a solar-powered intelligent water body oxygenation integrated machine. Background Technology
[0002] Water resources are fundamental to the survival of all life on Earth, and their importance is irreplaceable. In ecosystems, they are a crucial support, maintaining the ecological balance of natural water bodies such as rivers, lakes, and wetlands, providing space for numerous organisms to live and reproduce. In daily life, from drinking and washing to cooking and cleaning, water is an indispensable element for meeting basic human needs.
[0003] Industrial production also relies heavily on water. Whether used for cooling, washing, or as a solvent in chemical reactions, water participates in numerous crucial processes, supporting the operation of various industries. Agricultural irrigation depends on water resources, promoting the healthy growth of crops and serving as a vital factor in ensuring food security. Furthermore, the rational utilization and allocation of water resources have a profound impact on regional economic development, social stability, and global sustainable development, forming an important material foundation for human societal progress.
[0004] However, open water bodies are affected by various factors, including industrial wastewater discharge, agricultural non-point source pollution, and domestic sewage inflow, leading to an increase in impurities and pollutants in the water. Simultaneously, with the increase in pollutants and changes in aquatic organism populations, dissolved oxygen in the water may be insufficient, affecting the respiration and survival of fish and other aquatic life. Currently, there is no unified equipment available for purifying and oxygenating open water bodies. Summary of the Invention
[0005] The purpose of this utility model is to provide a solar-powered intelligent water body oxygenation integrated machine, which aims to solve the technical problems mentioned in the background art.
[0006] The embodiments of this utility model are implemented as follows: This application provides a solar-powered intelligent water aerator, comprising: a water treatment cylinder having an inlet and an outlet; a filter cylinder detachably disposed inside the water treatment cylinder for filtering water passing through the inlet; a buoyancy component disposed on the water treatment cylinder, on the same side as the inlet; an aeration structure including a pump body, a first guide pipe and a second guide pipe, one end of the first guide pipe being connected to the inlet of the pump body and the other end being connected to the outlet, one end of the second guide pipe being connected to the outlet of the pump body and the other end being connected to an aeration nozzle; and a solar power generation component for supplying power to the pump body.
[0007] Furthermore, based on the aforementioned scheme, the inlet of the filter cartridge is folded outward to form a flange, and the outer diameter of the flange is larger than the diameter of the water inlet; wherein, the water inlet is provided with a placement groove that connects with the flange.
[0008] Furthermore, based on the aforementioned scheme, the aforementioned folded edge is a magnetic material, and the aforementioned placement groove is provided with a magnet that magnetically engages with the aforementioned folded edge.
[0009] Furthermore, based on the aforementioned scheme, the buoyancy component is a pontoon; wherein, there are two pontoons, which are symmetrically arranged about the central axis of the water treatment cylinder.
[0010] Furthermore, based on the aforementioned scheme, the water treatment cylinder and the two floating boxes are manufactured using an integral molding process.
[0011] Furthermore, based on the aforementioned scheme, a flushing assembly is also included, comprising: a backwash nozzle disposed in the gap between the filter cartridge and the water treatment cartridge for flushing the filter cartridge; and a backwash pipe, one end of which is connected to the outlet of the pump body and the other end of which is connected to the backwash nozzle; wherein the backwash pipe, the outlet of the pump body, and the second guide pipe are connected by a three-way valve.
[0012] Furthermore, based on the aforementioned scheme, the backwash nozzle includes an annular tube sleeved around the outer periphery of the filter cylinder. The annular tube is provided with a water inlet and multiple spray nozzles. The water inlet is used to connect to the backwash pipe. The multiple spray nozzles are all located on the inner annular surface of the annular tube and are distributed sequentially at intervals along the circumferential direction of the annular tube.
[0013] Furthermore, based on the aforementioned scheme, a handle is provided at the inlet of the filter cartridge.
[0014] Compared with the prior art, the embodiments of this utility model have at least the following advantages or beneficial effects: In practical applications, the solar-powered water purification and oxygenation integrated machine of this application is placed in open water bodies. When the machine is operating, the water treatment cylinder is submerged with the inlet facing the surface. The oxygenation nozzles above the surface release treated water to achieve oxygenation. Meanwhile, buoyancy components float on the surface, providing traction to the water treatment cylinder and ensuring stable positioning and continuous operation. When the machine starts working, water flows into the water treatment cylinder through the inlet. The built-in filter efficiently intercepts impurities in the water, and the purified water is discharged from the outlet, completing the water purification process. Simultaneously, the solar power generation components convert solar energy into electrical energy to power the pump. The pump draws water from the outlet through the first guide pipe and then delivers it to the oxygenation nozzles through the second guide pipe, achieving efficient oxygenation. The advantages of this integrated machine are significant. It effectively solves the pollution and oxygen deficiency problems faced by open water bodies, achieving simultaneous purification and oxygenation. During the pump's suction process, wastewater and impurities converge into the water treatment cylinder. Impurities are trapped inside the filter cylinder, and cleaning is easy by simply disassembling the filter cylinder. Operation is simple and allows for regular maintenance. Furthermore, solar power is not only environmentally friendly and aligned with sustainable development principles, but it also significantly reduces operating costs. No external power supply is required, eliminating wiring limitations. Installation and use are not restricted by site conditions, making it widely applicable to various open water bodies and effectively improving water quality. Attached Figure Description
[0015] To more clearly illustrate the technical solutions of the embodiments of this utility model, the drawings used in the embodiments will be briefly introduced below. It should be understood that the following drawings only show some embodiments of this utility model and should not be regarded as a limitation on the scope. For those skilled in the art, other related drawings can be obtained based on these drawings without creative effort.
[0016] Figure 1 An isometric view of a solar-powered intelligent water aeration integrated machine according to an embodiment of this utility model. Figure 1 ; Figure 2 An isometric view of a solar-powered intelligent water aeration integrated machine according to an embodiment of this utility model. Figure 2 ; Figure 3 This is a cross-sectional view of the water treatment cylinder according to an embodiment of the present invention; Figure 4 This is a schematic diagram of the structure of the filter cartridge in an embodiment of the present invention; Figure 5 for Figure 3 A magnified view of part A in the image; Figure 6 This is a schematic diagram of the backwash nozzle of an embodiment of the present invention.
[0017] Icons: 1-Solar power generation component, 2-Remote control unit, 3-Water treatment cylinder, 4-Filter cylinder, 5-Buoyancy component, 6-Handle, 7-Folded edge, 8-First guide pipe, 9-Three-way valve, 10-Second guide pipe, 11-Backwash pipe, 12-Pump body, 13-Aeration nozzle, 14-Magnetic component. Detailed Implementation
[0018] The embodiments of this application will now be described in detail with reference to the accompanying drawings. Example
[0019] Please refer to Figures 1-6 This application provides a solar-powered intelligent water aerator, comprising: a water treatment cylinder 3 having an inlet and an outlet; a filter cylinder 4 detachably disposed inside the water treatment cylinder 3 for filtering water passing through the inlet; a buoyancy component 5 disposed on the water treatment cylinder 3, on the same side as the inlet; an aeration structure including a pump body 12, a first guide pipe 8 and a second guide pipe 10, one end of the first guide pipe 8 being connected to the inlet of the pump body 12 and the other end being connected to the outlet, one end of the second guide pipe 10 being connected to the outlet of the pump body 12 and the other end being connected to an aeration nozzle 13; and a solar power generation component 1 for supplying power to the pump body 12.
[0020] In practical applications, the solar-powered water purification and oxygenation integrated machine of this application is placed in open water bodies. When the integrated machine is operating, the water treatment cylinder 3 is submerged with the inlet facing the water surface. The oxygenation nozzle 13, located above the water surface, releases treated water to achieve oxygenation. The buoyancy component 5 floats on the surface, providing traction to the water treatment cylinder 3, ensuring stable positioning and continuous operation. When the integrated machine starts working, water flows into the water treatment cylinder 3 through the inlet. The built-in filter cylinder 4 efficiently intercepts impurities in the water, and the purified water is discharged from the outlet, completing the water purification process. Simultaneously, the solar power generation component 1 converts solar energy into electrical energy to power the pump body 12. The pump body 12 draws water from the outlet through the first guide pipe 8, and then delivers the water to the oxygenation nozzle 13 through the second guide pipe 10, achieving efficient oxygenation. The advantages of this integrated machine are significant. It effectively solves the pollution and oxygen deficiency problems faced by open water bodies, achieving simultaneous purification and oxygenation. During the water intake process of pump body 12, sewage and impurities converge into water treatment cylinder 3, while impurities are trapped inside filter cylinder 4. Impurities can be easily cleaned by simply disassembling filter cylinder 4, making operation simple and allowing for regular maintenance. Furthermore, solar power is not only environmentally friendly and aligned with sustainable development principles, but it also significantly reduces operating costs. It eliminates the need for external power sources and wiring limitations, and its installation and use are not restricted by site conditions. It can be widely applied to various open water bodies, effectively improving water quality.
[0021] Specifically, the pump body 12 is connected to a remote control unit 2 for adjusting the start and stop of the pump body 12.
[0022] In a preferred embodiment, the inlet of the filter cylinder 4 is folded outward to form a flange 7, the outer diameter of the flange 7 being larger than the diameter of the water inlet; wherein the water inlet is provided with a placement groove that mates with the flange 7.
[0023] In the above embodiment, the larger outer diameter folded edge 7 mates with the placement groove, allowing the filter cartridge 4 to be installed more securely inside the water treatment cylinder 3, preventing it from shaking or shifting under the impact of water flow and ensuring stable filtration. Furthermore, during installation, the fit between the folded edge 7 and the placement groove allows for quick positioning of the filter cartridge 4, facilitating installation and disassembly, and making subsequent cleaning or replacement of the filter cartridge 4 easier, thus improving equipment maintenance efficiency.
[0024] In a preferred embodiment, the folded edge 7 is a magnetic body, and the placement groove is provided with a magnet 14 that magnetically engages with the folded edge 7.
[0025] In the above embodiments, when installing the filter cartridge 4, the magnetic attraction property allows for quick and accurate alignment of the folded edge 7 with the placement groove, greatly improving installation efficiency and reducing operational difficulty. After installation, the strong magnetic force further enhances the connection stability between the folded edge 7 and the placement groove, ensuring that the filter cartridge 4 will not easily loosen or shift during water treatment, even when encountering complex water flow impacts, thus guaranteeing stable filtration. When it is necessary to disassemble the filter cartridge 4 for cleaning or replacement, it can be separated by overcoming only a small magnetic force, making the operation simple and convenient and improving the ease of equipment maintenance.
[0026] In a preferred embodiment, the buoyancy component 5 is a pontoon; wherein, there are two pontoons, which are symmetrically arranged about the central axis of the water treatment cylinder 3.
[0027] In the above embodiment, the two symmetrically arranged floats provide uniform and stable buoyancy to the water treatment cylinder 3, ensuring the equipment remains balanced on the water surface and preventing tilting or overturning due to uneven force, thus making the integrated machine more stable during operation. The symmetrical structure also enhances the positioning effect of the equipment, better resisting external interference such as water flow and waves. Regardless of changes in the aquatic environment, the water treatment cylinder 3 can be kept in the appropriate position, ensuring that the inlet and aeration nozzle 13 are in optimal working condition, enabling stable and efficient water purification and aeration operations. Furthermore, the dual float design disperses the buoyancy support points, improving the overall load-bearing capacity of the equipment and allowing it to operate reliably under different aquatic conditions.
[0028] As a preferred embodiment, the water treatment cylinder 3 and the two float boxes are manufactured by an integral molding process.
[0029] In the above embodiment, the water treatment cylinder 3 and the two floats are manufactured using a one-piece molding process, which offers several advantages. First, the one-piece molding increases the overall structural strength, reduces weak points caused by splicing, lowers the risk of damage due to stress in complex aquatic environments, and extends the equipment's service life. Second, this process eliminates the need for additional connecting parts and sealing treatments, simplifying the manufacturing process, reducing production costs, and preventing leakage problems caused by poor sealing at joints, ensuring the equipment's waterproof performance and stability. Furthermore, the one-piece molding design makes the equipment's appearance simpler and more streamlined, with better overall coordination, facilitating transportation and installation without the need for complex on-site assembly operations, thus improving work efficiency.
[0030] In a preferred embodiment, a flushing assembly is also included, comprising: a backwash nozzle disposed in the orifice between the filter cartridge 4 and the water treatment cartridge 3 for flushing the filter cartridge 4; and a backwash pipe 11, one end of which is connected to the outlet of the pump body 12 and the other end of which is connected to the backwash nozzle; wherein the backwash pipe 11, the outlet of the pump body 12, and the second guide pipe 10 are connected by a three-way valve 9.
[0031] In the above embodiment, during equipment operation, the water flow from the pump body 12 outlet can flow through the backwash pipe 11 to the backwash nozzle via the switching of the three-way valve 9, rinsing the filter cartridge 4. This design effectively removes impurities attached to the filter cartridge 4, preventing impurity accumulation from affecting the filtration effect, ensuring that the filter cartridge 4 always maintains good filtration performance, extending its service life, and reducing the cost and maintenance workload of frequent filter cartridge 4 replacements. The backwash function and the normal aeration process can be flexibly switched via the three-way valve 9, which is convenient to operate and does not affect the overall efficient operation of the equipment, ensuring that the integrated water purification and aeration machine can work stably under various water quality conditions.
[0032] In a preferred embodiment, the backwash nozzle includes an annular tube sleeved around the outer periphery of the filter cylinder 4. The annular tube is provided with a water inlet and a plurality of spray nozzles. The water inlet is used to connect to the backwash pipe 11. The plurality of spray nozzles are all provided on the inner annular surface of the annular tube and are distributed sequentially at intervals along the circumferential direction of the annular tube.
[0033] In the above embodiment, the annular pipe fitted around the outer periphery of the filter cylinder 4, along with multiple water spray nozzles spaced at intervals along its inner circumference, enables omnidirectional, thorough rinsing of the filter cylinder 4. When water is introduced into the backwash pipe 11, the water flow enters the annular pipe from the inlet and is then evenly sprayed onto the surface of the filter cylinder 4 through the various spray nozzles, effectively removing impurities adhering to different locations on the filter cylinder 4. Because the spray nozzles are distributed circumferentially, impurities can be impacted by the water flow regardless of their location on the filter cylinder 4, greatly improving rinsing efficiency and effectiveness.
[0034] It is worth noting that the sum of the diameter values of the multiple spray nozzles is less than the sum of the diameter values of the first guide pipe 8.
[0035] As a preferred embodiment, a handle 6 is provided at the inlet of the filter cartridge 4.
[0036] In the above embodiments, when it is necessary to install or remove the filter cartridge 4, the operator can directly grasp the handle 6 to apply force. Compared with the case without the handle 6, it is easier to grip, which can effectively improve the convenience of operation and reduce the installation difficulties or risk of falling due to unstable grip. During the maintenance and cleaning process, holding the handle 6 can easily lift the filter cartridge 4 out of the water treatment cylinder 3, which is convenient for cleaning the impurities trapped inside, as well as for inspecting, repairing or replacing the filter cartridge 4, thus improving the efficiency of equipment maintenance.
[0037] Furthermore, unless otherwise explicitly specified or limited, the terms "installation" and "connection" in this application embodiment should be interpreted broadly. For example, "connection" can be a detachable connection or a non-detachable connection; it can be a direct connection or an indirect connection through an intermediate medium. The terms "upper," "lower," "left," "right," "inner," "outer," and "side," etc., are merely for reference to the direction in the accompanying drawings or the usual placement of the product during use. They are only for clearly describing this application and do not indicate or imply that the device or component referred to must have a specific orientation, or be constructed and operated in a specific orientation. They should not be construed as limitations on this application. The terms "first," "second," etc., are only used for distinguishing descriptions and should not be construed as indicating or implying relative importance; "multiple" refers to at least two. In this application embodiment, the limitations on relative positional relationships such as parallel, perpendicular, and aligned are all relative to the current technological level and are not absolutely strict limitations. Slight deviations are allowed; approximations of parallel, perpendicular, and aligned are all acceptable. For example, "A and B are parallel" means that A and B are parallel or approximately parallel, and the angle between A and B can be between 0 degrees and 10 degrees.
[0038] The above are only some embodiments and implementation methods of this application. The protection scope of this application is not limited thereto. In the absence of conflict, the embodiments and features in the embodiments of this application can be combined with each other. Any combination of features in different embodiments is also within the protection scope of this application. Any changes or substitutions that can be easily conceived by those skilled in the art within the scope of the technology disclosed in this application should be included within the protection scope of this application.
Claims
1. A solar-powered intelligent water body oxygenation integrated machine, characterized in that, include: A water treatment cylinder (3) with an inlet and an outlet; A filter cylinder (4) is detachably installed inside the water treatment cylinder (3) for filtering the water source passing through the inlet; The buoyancy component (5) is installed on the same side as the water inlet in the water treatment cylinder (3); The oxygenation structure includes a pump body (12), a first guide pipe (8) and a second guide pipe (10). One end of the first guide pipe (8) is connected to the inlet of the pump body (12) and the other end is connected to the outlet. One end of the second guide pipe (10) is connected to the outlet of the pump body (12) and the other end is connected to an oxygenation nozzle (13). The structure also includes a solar power generation component (1) for supplying power to the pump body (12).
2. The solar-powered intelligent water body oxygenation integrated machine according to claim 1, characterized in that, The filter cylinder (4) has an outwardly folded flange (7) at its inlet, and the outer diameter of the flange (7) is greater than the diameter of the inlet. The water inlet is provided with a placement groove that connects with the folded edge (7).
3. The solar-powered intelligent water body oxygenation integrated machine according to claim 2, characterized in that, The folded edge (7) is a magnetic body, and the placement groove is provided with a magnet (14) that magnetically engages with the folded edge (7).
4. The solar-powered intelligent water body oxygenation integrated machine according to claim 1, characterized in that, The buoyancy component (5) is a pontoon; The number of the floating boxes is two, and they are arranged symmetrically about the central axis of the water treatment cylinder (3).
5. The solar-powered intelligent water body oxygenation integrated machine according to claim 4, characterized in that, The water treatment cylinder (3) and the two floating boxes are manufactured by an integral molding process.
6. The solar-powered intelligent water body oxygenation integrated machine according to claim 1, characterized in that, It also includes a rinsing assembly, the rinsing assembly comprising: A backwash nozzle is disposed in the pore between the filter cylinder (4) and the water treatment cylinder (3) for rinsing the filter cylinder (4); A backwash pipe (11) is connected at one end to the outlet of the pump body (12) and at the other end to the backwash nozzle; The backwash pipe (11), the outlet of the pump body (12), and the second guide pipe (10) are connected by a three-way valve (9).
7. The solar-powered intelligent water body oxygenation integrated machine according to claim 6, characterized in that, The backwash nozzle includes an annular tube sleeved around the outer periphery of the filter cylinder (4). The annular tube is provided with a water inlet and multiple spray nozzles. The water inlet is used to connect to the backwash pipe (11). The multiple spray nozzles are all located on the inner annular surface of the annular tube and are distributed sequentially at intervals along the circumferential direction of the annular tube.
8. The solar-powered intelligent water body oxygenation integrated machine according to claim 1, characterized in that, A handle (6) is provided at the inlet of the filter cartridge (4).