Environmental art sculpture water collecting device
By setting up the first water collection pool and circulating water system in the water collection device of environmental art sculpture, the impact of pollutants on the sculpture is solved, and the long-term stability of water quality and the reduction of maintenance costs are achieved.
Patent Information
- Application Number
- CN202422755543.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-12
- Publication Date
- 2025-06-27
- Estimated Expiration
- 2034-11-12
AI Technical Summary
When the environmental art sculpture is set outdoors, the pool part is susceptible to the influence of pollutants, resulting in reduced aesthetics, impaired functionality and increased maintenance costs.
An environmental art sculpture water collection device is designed, including foundation fence, water collection sculpture and water pipe assembly. The first water collection pool is set up on the top of the water collection sculpture for the accumulation and centralized cleaning of pollutants, and the water circulation is realized through the water pipe assembly to ensure the clean water quality and prevent blockage.
By centrally cleaning up pollutants and recycling water resources, the water quality is maintained, the stability and aesthetics of the system are extended, and maintenance costs are reduced.
Smart Images

Figure CN223034131U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical fields of environmental art design and water resource management, and particularly relates to a water collection device for environmental art sculptures. Background Art
[0002] Environmental art sculptures involve the design and application of environmental art sculptures, especially fountain sculptures for outdoor decoration and viewing. Environmental art sculptures are usually set in public spaces or outdoor environments and have certain ornamental and artistic values. However, since these sculptures are placed outdoors all year round, the pool part is easily affected by the surrounding environmental conditions, especially the accumulation of various pollutants. For example, leaves, dust, garbage, etc. are likely to accumulate in the sculpture pool. These substances not only affect the beauty of the sculpture, but may also deteriorate the water quality and may block the water spray nozzles, affecting the water spray effect and functionality of the sculpture.
[0003] In addition, pollutants in the environment may also lead to an increase in maintenance costs, and frequent cleaning and maintenance are required to ensure the normal operation and beauty of the sculpture. This situation is particularly serious in rainy seasons or windy environments because natural factors will exacerbate the accumulation and distribution of pollutants. Therefore, there are obvious deficiencies in the prior art in maintaining the long-term beauty and functionality of environmental art sculptures.
[0004] In summary, the technical problems faced by existing environmental art sculptures mainly include the impact of environmental pollutants on the beauty and function of the sculptures, as well as the resulting high maintenance requirements and costs.
[0005] Therefore, a water collection device for environmental art sculptures is proposed to solve the above-mentioned problems. Summary of the Utility Model
[0006] The utility model aims to provide a water collection device for environmental art sculptures to solve or improve at least one of the above technical problems.
[0007] In view of this, the first aspect of the utility model is to provide a water collection device for environmental art sculptures.
[0008] In a first aspect of the present utility model, there is provided a water collection device for environmental art sculptures, comprising: a foundation enclosure, on the upper surface of the edge of the foundation enclosure, a plurality of water spraying sculptures are circumferentially arranged, and the water spraying sculptures have a first water spraying orifice facing the middle of the foundation enclosure; a water collection sculpture, arranged in the middle of the foundation enclosure; a first water collection pool is formed at the top of the water collection sculpture, and a second water spraying orifice located inside the first water collection pool is further formed at the top of the water collection sculpture, and the orientation of the second water spraying orifice is vertically upward; a second water collection pool is formed between the outer wall of the water collection sculpture and the inner wall of the foundation enclosure, and the longitudinal projection of the first water collection pool is located inside the second water collection pool; wherein, the first water spraying orifice is communicated with the second water collection pool through a water pipe assembly, and the water inlet of the water pipe assembly is located at the top of the second water collection pool to convey the water entering the top of the second water collection pool to the first water spraying orifice; the second water spraying orifice is communicated with the second water collection pool through a first water pipe, and the water inlet of the first water pipe is located at the bottom of the second water collection pool to convey the accumulated water at the bottom of the second water collection pool to the second water spraying orifice.
[0009] In any of the above technical solutions, the water spraying sculpture is installed on the foundation enclosure through a first support base, and a water storage cavity communicated with the middle of the water pipe assembly is formed inside the first support base, and the longitudinal height of the first water spraying orifice is higher than that of the water storage cavity.
[0010] In any of the above technical solutions, the water pipe assembly includes: a second water pipe, passing through the first support base to communicate the water storage cavity and the second water collection pool; the pipe orifice of the second water pipe located in the second water collection pool serves as the water inlet of the water pipe assembly; a third water pipe, passing through the first support base, and the top pipe orifice of the third water pipe is fixedly assembled with the first water spraying orifice.
[0011] In any of the above technical solutions, the longitudinal height of the pipe orifice of the second water pipe located in the water storage cavity is higher than that of the pipe orifice of the third water pipe located in the water storage cavity.
[0012] In any of the above technical solutions, a first water pump is arranged at the pipe orifice of the third water pipe located in the water storage cavity, and the first water pump is used to convey the accumulated water in the water storage cavity to the first water spraying orifice through the third water pipe.
[0013] In any of the above technical solutions, the longitudinal heights of the pipe orifice of the second water pipe located in the second water collection pool and the pipe orifice of the second water pipe located in the water storage cavity are the same.
[0014] In any of the above technical solutions, the water collection sculpture is fixed in the middle of the foundation enclosure through the second support base, and the second support base is located inside the second water collection pool; the first water delivery pipe is located inside the second support base.
[0015] In any of the above technical solutions, a second water pump is installed at the bottom of the side wall of the second support base. The water outlet of the second water pump is fixedly assembled with the water inlet of the first water delivery pipe, and the water outlet of the first water delivery pipe is fixedly assembled with the second water spray port.
[0016] In any of the above technical solutions, a water leakage gap is formed at the top edge of the water collection sculpture, and the water leakage gap is communicated with the top of the first water collection pool; a filter screen is installed in the water leakage gap.
[0017] In any of the above technical solutions, a plurality of fourth water delivery pipes are further arranged at the top of the foundation enclosure, and the fourth water delivery pipes are communicated with the second water collection pool to drain the accumulated water in the second water collection pool outwards or convey purified water into the second water collection pool.
[0018] The beneficial effects of the present utility model compared with the prior art:
[0019] By arranging the first water collection pool at the top of the water collection sculpture, this pool is dedicated to the accumulation and centralized cleaning of pollutants. This not only restricts the diffusion of pollutants, but also facilitates regular centralized cleaning, keeps the water quality clean, and prevents the water spray ports from being blocked; through the configuration of the water delivery pipe assembly and the first and second water spray ports, the effective recycling of water is realized. Pumping water from the bottom and top of the second water collection pool respectively promotes the dynamic circulation and oxidation of the water body, thereby maintaining the water quality and the long-term stability of the system; the first water spray port pumps water from the top of the second water collection pool for spraying, ensuring the cleanliness and beauty of the water spray; the second water spray port pumps water from the bottom and uses the water with less sediment for spraying, ensuring the water spray effect and at the same time helping to stir the water body to prevent excessive sediment at the bottom.
[0020] The environmental art sculpture not only provides visual beauty, but also enhances its functionality through the built-in water circulation and cleaning system. For example, it increases the interactivity and ornamental value through the water spray display; through the circulating water system, it reduces the demand for fresh water resources, which conforms to the principles of environmental protection and sustainable development. The design of the system reduces water waste and maximizes the utilization efficiency of water resources through recycling; the centralized cleaning pool and the easily accessible structure in the design make routine maintenance easier, reducing the maintenance cost and workload caused by cleaning blockages and pollutant accumulation.
[0021] The additional aspects and advantages of the embodiments according to the present utility model will become apparent in the following description part, or will be understood through the practice of the embodiments according to the present utility model. Description of the Drawings
[0022] The above and / or additional aspects and advantages of the present utility model will become apparent and be readily understood from the description of the embodiments in conjunction with the following drawings, wherein:
[0023] Figure 1 is a top view of the present utility model;
[0024] Figure 2 is a schematic structural diagram of the water-spraying sculpture of the present utility model;
[0025] Figure 3 is Figure 2 a sectional view taken along side A in;
[0026] Figure 4 is a schematic structural diagram of the longitudinal partial section of the foundation enclosure of the present utility model;
[0027] Figure 5 is a schematic structural diagram of the longitudinal partial section of the water-collecting sculpture of the present utility model.
[0028] Wherein, Figures 1-5 the corresponding relationship between the reference numerals and the component names in the drawings is as follows:
[0029] 1 foundation enclosure, 101 foundation, 102 surface covering, 2 water-spraying sculpture, 201 first water-spraying orifice, 202 first support base, 203 water storage cavity, 204 second water pipe, 205 third water pipe, 206 first water pump, 3 water-collecting sculpture, 301 second water-spraying orifice, 302 second support base, 303 first water pipe, 304 second water pump, 305 water leakage notch, 4 first water collection pool, 5 second water collection pool, 6 fourth water pipe, 7 filter screen. Specific embodiments
[0030] In order to more clearly understand the above objects, features and advantages of the present utility model, the present utility model will be further described in detail below in conjunction with the drawings and specific embodiments. It should be noted that, without conflict, the embodiments of the present application and the features in the embodiments may be combined with each other.
[0031] In the following description, many specific details are set forth in order to fully understand the present utility model. However, the present utility model may also be implemented in other ways different from those described herein. Therefore, the protection scope of the present utility model is not limited by the specific embodiments disclosed below.
[0032] Please refer to Figures 1-5 , and the following describes a water collection device for an environmental art sculpture according to some embodiments of the present utility model.
[0033] An embodiment of the first aspect of the present utility model provides a water collection device for environmental art sculptures. In some embodiments of the present utility model, such as Figures 1-5 shown, the water collection device for environmental art sculptures includes:
[0034] A foundation enclosure 1, on the upper surface of the edge of the foundation enclosure 1, a plurality of water spray sculptures 2 are circumferentially arranged, and the water spray sculpture 2 has a first water spray opening 201 facing the middle of the foundation enclosure 1, and the water spray sculpture 2 can realize the spraying and obtaining of circulating water.
[0035] A water collection sculpture 3, arranged in the middle of the foundation enclosure 1; a first water collection pool 4 is formed on the top of the water collection sculpture 3, and the first water collection pool 4 is used for the accumulation of pollutants for small-scale centralized cleaning. A second water spray opening 301 located inside the first water collection pool 4 is also formed on the top of the water collection sculpture 3, and the orientation of the second water spray opening 301 is vertically upward; a second water collection pool 5 is formed between the outer wall of the water collection sculpture 3 and the inner wall of the foundation enclosure 1, and the second water collection pool 5 is used for the water collection of the overall environmental art sculpture. The projection of the first water collection pool 4 along the longitudinal direction is located inside the second water collection pool 5 to discharge the water after precipitation in the first water collection pool 4 into the second water collection pool 5 to form a cycle.
[0036] Wherein, the first water spray opening 201 is connected to the second water collection pool 5 through a water pipe assembly, and the water inlet of the water pipe assembly is located at the top of the second water collection pool 5 to convey the water inlet at the top of the second water collection pool 5 to the first water spray opening 201; the second water spray opening 301 is connected to the second water collection pool 5 through a first water pipe 303, and the water inlet of the first water pipe 303 is located at the bottom of the second water collection pool 5 to convey the accumulated water at the bottom of the second water collection pool 5 to the second water spray opening 301.
[0037] A water collection device for environmental art sculptures provided by the utility model, the foundation enclosure 1 is the basic structure of the sculpture, usually built with strong materials such as concrete or metal to ensure the stability and durability of the overall structure. The design of the foundation enclosure 1 not only supports the weight of the sculpture, but also plays a role in restricting water flow and collecting rainwater. The circumferential setting on the upper surface of the edge can effectively guide rainwater to a designated area instead of splashing everywhere; a plurality of water spray sculptures 2 are evenly distributed around the foundation enclosure 1, and each water spray sculpture 2 is designed with a first water spray port 201 facing the middle of the enclosure. This layout makes the water spray sculptures 2 not only serve as art display elements, but also effectively carry out water circulation. The design and direction of the water spray ports can ensure the uniform distribution of water flow and a beautiful water feature effect, and also contribute to the self-cleaning of the water surface, reducing the accumulation of dirt; the core function of the water spray sculptures 2 is to realize the recycling of water, that is, the water collected from the foundation enclosure 1 is pumped into the water spray sculptures 2, filtered and then sprayed out through the water spray ports to form a beautiful water feature. This cycle not only saves water resources, but also helps to remove pollutants such as fallen leaves and dust attached to the surfaces of the sculptures and enclosures through continuous water flow actions.
[0038] The water collection sculpture 3 is arranged in the middle of the foundation enclosure 1, which is the core position of the overall design of the sculpture, helping to balance and distribute the water flow and weight of the entire sculpture water system. The top of the water collection sculpture 3 is designed with a first water collection pool 4, which is mainly used to collect and accumulate pollutants brought from the water spray ports and the environment. The first water collection pool 4 allows pollutants to concentrate and deposit here, facilitating regular cleaning, so as to keep the water quality clean and the system operating efficiently; there is a second water spray port 301 inside the first water collection pool 4, and its orientation is vertically upward. This design utilizes gravity and water pressure to make the water spray directly upward, forming visually attractive water columns and water splashes, increasing the ornamental value of the sculpture. The setting of the second water spray port 301 also helps to promote the water circulation in the first water collection pool 4, and further purifies the water quality through natural oxidation and hydrodynamic effects during the spraying process; a second water collection pool 5 is formed between the outer wall of the water collection sculpture 3 and the inner wall of the foundation enclosure 1, which is the main water storage area of the entire environmental art sculpture system. The second water collection pool 5 is used to collect the water used in the sculpture, including rainwater and recycled water. The design of the first water collection pool 4 makes its longitudinal projection located inside the second water collection pool 5, such a design ensures that the clean and filtered water from the first water collection pool 4 can smoothly drain into the second water collection pool 5 and form an effective circulation system.
[0039] The first sump 4 serves as a preliminary filtration and sedimentation area to remove most visible pollutants and particles, while the second spout 301 increases the oxidation and circulation capacity of the water through the spraying action, further improving the water quality. Finally, the second sump 5 not only serves as the main water storage area, but also optimizes the water circulation efficiency of the entire system through its combination with the first sump 4, ensuring the continuous operation of the sculpture and the stability of the water quality.
[0040] The first spout 201 is connected to the second sump 5 through a water pipe assembly. The water inlet of this water pipe assembly is set at the top of the second sump 5. The purpose of this design is to use the cleanest upper layer of water on the water surface for spraying. The water pumped from the top of the second sump 5 usually contains less sediment and pollutants and is suitable for visual display and beautification of the sculpture. Pumping water from the top also helps to maintain the stability of the water level in the sump and avoid disturbing the bottom sediment; the second spout 301 is connected to the second sump 5 through the first water pipe 303, and the water inlet of this water pipe is located at the bottom of the second sump 5. The extraction of bottom water is mainly to utilize the water that has cleared floating impurities through natural sedimentation. This part of the water may be colder and contain more dissolved oxygen, which is suitable for spraying through the second spout 301 to increase the oxygenation of the water body and promote the further purification of the water quality. The recycling of bottom water also helps to prevent the stratification of the water body and ensure the uniformity of the water quality in the sump.
[0041] The dual use of the top and bottom water sources not only ensures the aesthetic display of the water (clean water at the top) and the functional spraying (oxygen-rich water at the bottom), but also promotes the self-purification of the water quality and the simplicity of maintenance; through the circulation of the top water, a clean water source can be continuously provided for viewing, while maintaining the vitality and freshness of the entire water body; the bottom water circulation is mainly responsible for the self-purification of the water quality and the maintenance of the ecological balance. Through the spraying of the bottom water, the water body can be effectively stirred to promote the water quality balance of the entire sump.
[0042] Specifically, the foundation enclosure 1 consists of cement as the matrix 101 and tiles as the surface covering 102, and the tiles are laid on top of the cement. Cement, as the basic material of the foundation enclosure 1, provides a strong and stable support structure. This structure ensures the durability and stability of the entire sculpture installation under various weather and usage conditions. Tiles, as the material for the surface covering 102 of the foundation enclosure 1, not only increase the visual appeal of the entire installation, but also provide diverse design and color options, which can be matched according to the design style of the surrounding environment.
[0043] In any of the above embodiments, the water spray sculpture 2 is installed on the foundation enclosure 1 through the first support base 202, and a water storage cavity 203 communicating with the middle of the water pipe assembly is formed inside the first support base 202, and the height of the first spout 201 along the longitudinal direction is higher than that of the water storage cavity 203.
[0044] In this embodiment, the first support base 202 is used to fix the water spray sculpture 2 on the foundation enclosure 1 to ensure the stability and durability of the water spray sculpture 2. This support structure not only needs to bear the weight of the sculpture but also be able to withstand the potential pressure and dynamic effects caused by water flow; the water storage cavity 203 formed inside the first support base 202 is a key component, which is connected to the middle of the water delivery pipe assembly. The main function of the water storage cavity 203 is to temporarily store the water transported from the second sump 5 through the water delivery pipe. This design can relieve the water flow pressure directly from the sump to the water spray nozzle, allowing for more delicate control of the water flow speed and volume, thereby enhancing the stability and aesthetics of the water spray effect; the first water spray nozzle 201 is arranged above the water storage cavity 203 and has a relatively high height along the longitudinal direction. Such a height design helps to enhance the water spray force and height by utilizing gravity. The relatively high water spray nozzle can not only increase the visual effect of the water spray but also promote the oxidation and quality improvement of water by generating more air contact through spraying.
[0045] The water storage cavity 203 directly receives water from the water delivery pipe. This setting helps to balance the water pressure and prevent sudden spraying or water pressure instability that may occur when water flows directly from the water delivery pipe to the water spray nozzle; the water flow from the water storage cavity 203 to the water spray nozzle is regulated by gravity and control valves, which can ensure the continuity and aesthetics of the water spray. In addition, by adjusting the water level in the water storage cavity 203, the timing and intensity of the water spray can be precisely controlled to meet different display requirements.
[0046] In any of the above embodiments, the water delivery pipe assembly includes:
[0047] A second water delivery pipe 204, which penetrates the first support base 202 to connect the water storage cavity 203 and the second sump 5; the pipe orifice of the second water delivery pipe 204 located in the second sump 5 serves as the water inlet of the water delivery pipe assembly.
[0048] A third water delivery pipe 205, which penetrates the first support base 202, and the top pipe orifice of the third water delivery pipe 205 is fixedly assembled with the first water spray nozzle 201.
[0049] In this embodiment, the main function of the second water delivery pipe 204 is to connect the second water collecting tank 5 and the water storage cavity 203 to achieve the water flow delivery from the water collecting tank to the water storage cavity 203. This pipe runs through the first support base 202 to ensure direct and efficient water flow transmission. The pipe orifice of the second water delivery pipe 204 at the second water collecting tank 5 serves as the water inlet of the water delivery pipe assembly, and the selected position is usually at the lower or middle position of the water tank to utilize the natural pressure of the water body to boost the water flow upward to the water storage cavity 203; the third water delivery pipe 205 is responsible for delivering the water in the water storage cavity 203 to the first water spraying orifice 201 and is a key part to achieve the water spraying function. Through this pipe, the regulated water flow in the water storage cavity 203 can be accurately guided to the water spraying orifice. The top pipe orifice of the third water delivery pipe 205 is fixedly assembled with the first water spraying orifice 201 to ensure direct and stable water flow output. This fixed assembly method not only ensures the structural stability but also ensures precise control of the water flow during the spraying process.
[0050] In any of the above embodiments, the height of the pipe orifice of the second water delivery pipe 204 along the longitudinal direction at the water storage cavity 203 is higher than that of the pipe orifice of the third water delivery pipe 205 at the water storage cavity 203.
[0051] In this embodiment, the main function of the second water delivery pipe 204 is to deliver water from the second water collecting tank 5 to the water storage cavity 203. The water inlet of this pipe is at a relatively low position in the second water collecting tank 5, while its outlet in the water storage cavity 203 is relatively high, higher than the pipe orifice of the third water delivery pipe 205 at the water storage cavity 203. This layout helps to utilize gravity and water pressure, so as to help the water flow move upward and quickly fill the water storage cavity 203 without additional energy support. The outlet set at a higher position also promotes the uniform distribution of the water layer in the water storage cavity 203, avoids directly impacting the pipe orifice of the third water delivery pipe 205 below, and reduces water flow disorder; the third water delivery pipe 205 is responsible for delivering the water in the water storage cavity 203 to the first water spraying orifice 201. The water inlet of this pipe is at a relatively low position in the water storage cavity 203. Such a design ensures that enough water volume can be extracted from the water storage cavity 203 for spraying. The relatively low water inlet position helps to make full use of the water resources in the water storage cavity 203 and maintain the continuity of water spraying even when the water level is relatively low. At the same time, such a configuration ensures that the water can obtain sufficient pressure before spraying upward.
[0052] The water extracted from the collecting tank by the second water pipe 204 first fills the water storage cavity 203 and is output through the high-level pipe orifice, which helps to form a stable water flow in the water storage cavity 203 and evenly distribute the pressure. When the water level in the water storage cavity 203 reaches a certain level, the third water pipe 205 starts to function and pumps water from the bottom of the water storage cavity 203 for spraying; through this pipe layout with higher at the top and lower at the bottom, the direction and pressure of the water flow can be controlled more effectively, making the spraying effect more stable and continuous. At the same time, this design also helps to reduce the energy consumption of the water pump because the pressure difference naturally generated by the water level is utilized to assist the movement of the water flow.
[0053] In any of the above embodiments, a first water pump 206 is provided at the pipe orifice of the third water pipe 205 located in the water storage cavity 203, and the first water pump 206 is used to convey the accumulated water in the water storage cavity 203 to the first water spraying orifice 201 through the third water pipe 205.
[0054] In this embodiment, the third water pipe 205 is responsible for conveying the water in the water storage cavity 203 to the first water spraying orifice 201. The design of this pipe ensures a direct water flow connection from the water storage cavity 203 to the water spraying orifice. The third water pipe 205 located at the bottom of the water storage cavity 203 can effectively utilize all the water resources in the water storage cavity 203, and can maintain the spraying operation even when the water level is not very high; the first water pump 206 is installed at the pipe orifice of the third water pipe 205 located in the water storage cavity 203, mainly used to extract the accumulated water in the water storage cavity 203 and press it to the first water spraying orifice 201 for spraying. The use of the water pump enhances the stability and spraying force of the water flow, ensuring that a continuous and strong spraying effect can be achieved even when the water resources are low. By increasing the pressure of the water flow, the first water pump 206 enables the water column to reach a higher height, enhancing the visual impact of the sculpture.
[0055] The first water pump 206 effectively pushes the water from the bottom of the water storage cavity 203 through the third water pipe 205 upward to the first water spraying orifice 201 by increasing the pressure of the water flow. This setting helps to overcome the potential flow resistance brought by gravity and distance, ensuring the continuity and power of the water column. The addition of the water pump not only improves the spraying ability of the system, but also enables the spraying volume and height to be adjusted according to needs. This is very beneficial for different display requirements or specific artistic expressions.
[0056] In any of the above embodiments, the heights of the pipe orifice of the second water pipe 204 located in the second collecting tank 5 and the pipe orifice of the second water pipe 204 located in the water storage cavity 203 are the same along the longitudinal direction.
[0057] In this embodiment, when the heights of the water delivery pipes at two positions are the same, it helps to form a balanced water pressure environment inside the pipeline. This balance ensures the stability of the water flow, reducing the pressure fluctuations or water hammer phenomena that may occur when pumping water; since the water flow does not need to overcome an additional gravity difference to move, the working burden on the pump is relatively reduced. This not only helps to reduce energy consumption but also extends the service life of the pump and related equipment; the height alignment also helps to improve the overall energy efficiency of the system. Because the water pump only needs to maintain sufficient force to push the water from the sump to the water storage chamber 203, without having to overcome the gravitational potential energy difference due to the height difference additionally. Such a design reduces the demand for energy, thereby improving the energy efficiency and reliability of the system.
[0058] In any of the above embodiments, the water collection sculpture 3 is fixed in the middle of the foundation enclosure 1 through the second support base 302, and the second support base 302 is located inside the second sump 5; the first water delivery pipe 303 is located inside the second support base 302.
[0059] In this embodiment, the second support base 302 is fixed in the middle of the foundation enclosure 1 and is located inside the second sump 5. This configuration makes the support base both the core support point of the sculpture structure and involved in the collection and distribution of the water flow. By setting the support base inside the sump, the space can be effectively utilized, and at the same time, the structure is protected from the direct influence of the external environment; setting the support base inside the sump helps to enhance the overall structural stability, because the surrounding water can provide additional wind resistance and structural support for the sculpture, especially in an external environment with strong winds or harsh climates; the first water delivery pipe 303 is located inside the second support base 302 and is mainly responsible for delivering the water at the bottom of the second sump 5 to the second water spray port 301. This embedded pipe design helps to protect the pipe from external damage and makes the water flow transmission more efficient and safe. Since the first water delivery pipe 303 pumps water from the bottom of the sump, it helps to promote the circulation and renewal of the water quality inside the sump, avoiding the long-term stagnation of the bottom water body, thereby reducing the accumulation of sediments and water quality deterioration.
[0060] In any of the above embodiments, the second water pump 304 is installed at the bottom of the side wall of the second support base 302, the water outlet of the second water pump 304 is fixedly assembled with the water inlet of the first water delivery pipe 303, and the water outlet of the first water delivery pipe 303 is fixedly assembled with the second water spray port 301.
[0061] In this embodiment, the second water pump 304 is installed at the bottom of the side wall of the second support base 302. This position is selected so that the water pump can directly draw water from the second sump 5. The position at the bottom of the side wall helps the water pump to effectively perform its function without occupying too much space, and at the same time protects the water pump from the direct environmental impact. The water outlet of the second water pump 304 is fixedly assembled with the water inlet of the first water delivery pipe 303, ensuring the continuity and tightness of the water flow and avoiding any leakage or pressure loss of the water flow during transportation; the first water delivery pipe 303 is responsible for directly delivering the water pumped by the second water pump 304 to the second water spray nozzle 301. This direct connection method reduces the energy loss in the water flow dynamics and improves the water spray efficiency. The water outlet of the first water delivery pipe 303 is fixedly assembled with the second water spray nozzle 301. This fixing method ensures that the direction and pressure of the water flow are precisely controlled when it reaches the water spray nozzle, thus optimizing the water spray effect.
[0062] In any of the above embodiments, a water leakage gap 305 is provided at the top edge of the water collection sculpture 3, and the water leakage gap 305 is communicated with the top of the first sump 4;
[0063] A filter screen 7 is installed in the water leakage gap 305.
[0064] In this embodiment, the water leakage gap 305 is provided at the top edge of the water collection sculpture 3. This design enables the water flowing down from the top of the sculpture to directly flow into the first sump 4. The water leakage gap 305 is communicated with the top of the first sump 4, effectively guiding the water flow into the sump. This helps to centrally process and recycle the water resources in the sculpture. By designing the water leakage gap 305 at the top, the direction and flow rate of the water flow can be controlled to ensure that excessive water does not accumulate on the surface of the sculpture, and at the same time, the impact of splashing water on the surrounding environment is reduced. This direct guidance of the water flow helps to maintain the cleanliness and tidiness of the sculpture and the surrounding area; the installation of the filter screen 7 in the water leakage gap 305 is to intercept large particle impurities in the water flowing down from the top of the sculpture, such as fallen leaves, sundries or other floating objects. This filtering function protects the downstream water pump and pipeline system from being blocked or damaged by these large particles. The filter screen 7 also helps to maintain the cleanliness of the water quality, reduce the pollutants entering the first sump 4 through physical interception, thereby improving the quality of the recycled water and ensuring the good operation and long-term stability of the water spray system.
[0065] In any of the above embodiments, a plurality of fourth water delivery pipes 6 are further provided at the top of the foundation enclosure 1. The fourth water delivery pipes 6 are communicated with the second sump 5 to discharge the accumulated water in the second sump 5 outward or convey purified water into the second sump 5.
[0066] In this embodiment, the fourth water delivery pipe 6 is arranged at the top of the foundation enclosure 1, and this position allows the pipe to be directly connected to the second catch basin 5. In this way, the pipe can conveniently manage the water level of the second catch basin 5, whether it is to drain excess water or supplement the required water volume; the main function of the fourth water delivery pipe is two-way: on the one hand, it can drain the accumulated water in the second catch basin to prevent water overflow and ensure the safety and stability of the sculpture and the surrounding environment; on the other hand, it can also transport the purified water outside into the second catch basin to supplement the water source or improve the water quality.
[0067] In the description of the present utility model, it should be understood that the orientation or positional relationship indicated by the terms "longitudinal", "transverse", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc. is based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the present utility model, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation to the present utility model.
[0068] The above-described embodiments are only descriptions of the preferred modes of the present utility model, and do not limit the scope of the present utility model. Without departing from the design spirit of the present utility model, various deformations and improvements made by those of ordinary skill in the art to the technical solutions of the present utility model shall fall within the protection scope determined by the claims of the present utility model.
Claims
1. An environmental art sculpture water collection device, characterized in that: include: A foundation enclosure, wherein a plurality of water-spraying sculptures are circumferentially arranged on the upper surface of the edge of the foundation enclosure, and the water-spraying sculptures have a first water-spraying port facing the middle of the foundation enclosure; A water-collecting sculpture is arranged in the middle of the foundation enclosure; a first water-collecting pool is formed on the top of the water-collecting sculpture, and a second water-spout located inside the first water-collecting pool is also formed on the top of the water-collecting sculpture, and the second water-spout is oriented vertically upward; a second water-collecting pool is formed between the outer wall of the water-collecting sculpture and the inner wall of the foundation enclosure, and the longitudinal projection of the first water-collecting pool is located inside the second water-collecting pool; Among them, the first water spray outlet is connected to the second water collecting tank through a water pipe assembly, and the water inlet of the water pipe assembly is located at the top of the second water collecting tank, so as to transport the water from the top of the second water collecting tank to the first water spray outlet; the second water spray outlet is connected to the second water collecting tank through a first water pipe, and the water inlet of the first water pipe is located at the bottom of the second water collecting tank, so as to transport the accumulated water at the bottom of the second water collecting tank to the second water spray outlet.
2. The environmental art sculpture water collection device according to claim 1 is characterized in that: The water fountain sculpture is installed on the foundation enclosure through a first supporting base, and a water storage cavity connected to the middle part of the water pipe assembly is formed inside the first supporting base, and the height of the first water spray port in the longitudinal direction is higher than the water storage cavity.
3. The environmental art sculpture water collection device according to claim 2 is characterized in that: The water pipe assembly comprises: A second water pipe runs through the first support base to connect the water storage cavity and the second water collection tank; the pipe opening of the second water pipe located in the second water collection tank serves as the water inlet of the water pipe assembly; The third water pipe passes through the first support base, and the top pipe opening of the third water pipe is fixedly assembled with the first water spraying port.
4. The environmental art sculpture water collection device according to claim 3 is characterized in that: The height of the pipe opening of the second water pipe located in the water storage chamber in the longitudinal direction is higher than the pipe opening of the third water pipe located in the water storage chamber.
5. The environmental art sculpture water collection device according to claim 4 is characterized in that: The third water pipe is provided with a first water pump at the pipe opening of the water storage chamber, and the first water pump is used to transport the accumulated water in the water storage chamber to the first water spraying port through the third water pipe.
6. The environmental art sculpture water collection device according to claim 3 is characterized in that: The pipe opening of the second water pipe located in the second water collecting tank and the pipe opening of the second water pipe located in the water storage chamber have the same height in the longitudinal direction.
7. The environmental art sculpture water collection device according to claim 1 is characterized in that: The water collection sculpture is fixed to the middle of the foundation enclosure through a second supporting base, and the second supporting base is located inside the second water collection pool; the first water pipe is located inside the second supporting base.
8. The environmental art sculpture water collection device according to claim 7 is characterized in that: A second water pump is installed at the bottom of the side wall of the second supporting base, the water outlet of the second water pump is fixedly assembled with the water inlet of the first water pipe, and the water outlet of the first water pipe is fixedly assembled with the second water spraying port.
9. The environmental art sculpture water collection device according to claim 1 is characterized in that: A water leakage gap is provided on the top edge of the water collection sculpture, and the water leakage gap is connected to the top of the first water collection pool; A filter screen is installed in the water leakage gap.
10. The environmental art sculpture water collection device according to claim 1, characterized in that: A plurality of fourth water pipes are also provided on the top of the foundation enclosure, and the fourth water pipes are connected with the second water collecting tank to discharge the accumulated water in the second water collecting tank to the outside or to transport purified water to the inside of the second water collecting tank.