Landscaping water storage and purification pond
By designing a shielding cover and quicksand track in the landscaping water storage purification pool, combining the barrier structure and filtering structure, the problem of difficult separation of solid impurities in the prior art is solved, and the efficient operation of the purification pool and the cleanliness of water quality are achieved.
Patent Information
- Application Number
- CN202520772761.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-23
- Publication Date
- 2025-05-30
- Estimated Expiration
- 2035-04-23
AI Technical Summary
It is difficult to effectively separate solid impurities such as fallen leaves and branches in landscaping, resulting in hindering the circulation of water flow in the purification pool, reducing purification efficiency, blockage of equipment and increasing maintenance costs.
A landscaping water storage purification pool was designed, and the main body of the purification pool that was pre-buried underground and installed on the top was used to install a closure loop. A quicksand track was installed on the top. A quicksand track and a filter structure were installed inside the quicksand track. The separation and filtration structure of solid impurities were realized through the design of spiral paths and impurities.
It effectively avoids large impurities entering the purification pool, extends the water flow path, uses gravity settlement to separate tiny impurities, improves purification efficiency, reduces equipment blockage and maintenance costs, and ensures the cleanliness of the water source output of the purification pool.
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Figure CN222918283U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of solid-liquid separation, and more specifically, to a water storage and purification pool for landscaping. Background Technique
[0002] In the construction and maintenance of urban landscaping, water storage and purification pools are indispensable facilities, which play a key role in the rational utilization and recycling of water resources. It can collect rainwater, purify sewage, provide water sources for garden plant irrigation, and help the healthy operation of the urban ecosystem. There is rich vegetation in the garden, and a large number of green leaves naturally fall during the growth cycle, and branches may also break due to bad weather such as wind and rain. These solid impurities are extremely easy to mix into the water storage and purification pool along with precipitation runoff or artificially introduced water flow. On the one hand, a large number of green leaves and branches accumulate in the purification pool, which will hinder the normal circulation of water flow and reduce the purification efficiency. The impurities decompose and rot in the water, consume dissolved oxygen, breed microorganisms such as bacteria and algae, making the water body stink and deteriorate, which not only affects the water quality, but also destroys the beauty of the garden landscape. On the other hand, solid impurities may block key components such as the filtering device and drainage pipeline of the purification pool, resulting in equipment failures, increasing maintenance costs and repair frequencies. In severe cases, the entire water purification system may even collapse, unable to provide stable and clean water sources for landscaping. In view of this, we propose a water storage and purification pool for landscaping. Content of the Utility Model
[0003] The purpose of the utility model is to overcome the deficiencies of the prior art, adapt to the actual needs, and provide a water storage and purification pool for landscaping to solve the technical problem that the current purification pool cannot well separate solid impurities such as green leaves and branches.
[0004] To solve the above technical problems, the utility model provides the following technical solutions: A water storage and purification pool for landscaping, including a purification pool main body buried underground, a shielding cover is installed on the top of the purification pool main body, a sealing ring is installed on the outer periphery of the shielding cover, a conical top is fixed above the shielding cover, a top connecting column is installed at the center of the top of the conical top, and a decoration is installed on the top of the top connecting column;
[0005] A flowing sand track is opened inside the shielding cover, one end of the flowing sand track is communicated with the inside of the purification pool main body, a solid impurity blocking structure is arranged inside the flowing sand track, the solid impurity blocking structure includes a plurality of solid impurity blocking parts, and the plurality of solid impurity blocking parts are arranged at uniform intervals inside the flowing sand track. A filtering structure is arranged between the conical top and the flowing sand track.
[0006] Preferably, the flowing sand track is a spiral path with the center downward, the flowing sand track is designed with the height gradually decreasing from the outside to the inside, and the outer arc of the flowing sand track penetrates through the top of the shielding cover.
[0007] Preferably, the impurity blocking member includes a sliding seat, which is in the structure of a wedge block. A plurality of blocking ribs are integrally formed on the slope side of the sliding seat. Elastic blocks are fixed on both sides of the sliding seat. The elastic blocks are made of flexible materials. A central shaft is connected to the center of the sliding seat, and the central shaft is limited and slid on the inner wall of the quicksand track.
[0008] Preferably, the impurity blocking structure includes a wire rope, which is connected to a plurality of sliding seats. A pull ring is connected to the outer end of the wire rope, and the pull ring is connected to the outer side of the shielding cover.
[0009] Preferably, the impurity filtering structure includes a water through-flow tank, which is communicated with the outer arc part of the quicksand track. A cover plate is provided on the top of the water through-flow tank. A plurality of liquid guiding concave cavities are formed on the outer side of the water through-flow tank. The liquid guiding concave cavities are designed to incline inward. A liquid inlet gap is arranged between the liquid guiding concave cavities and the water through-flow tank.
[0010] Preferably, a plurality of liquid blocking sheets are installed on the top of the liquid guiding concave cavities, and the plurality of liquid blocking sheets form an impurity blocking flow channel.
[0011] Compared with the prior art, the beneficial effects of the present utility model are as follows:
[0012] 1. By arranging a shielding cover on the top of the main body of the purification pool, installing a sealing ring on its outer periphery, and opening a liquid through-hole at the same time, the present utility model can effectively prevent larger impurities such as green leaves and branches from entering the quicksand track, play a role in initially separating larger impurities, reduce their influence on the water flow circulation and equipment inside the purification pool, maintain the normal operation order of the purification pool, improve the purification efficiency, and solve the problem that the purification pool cannot well separate solid impurities such as green leaves and branches.
[0013] 2. The quicksand track of the present utility model also adopts a spiral path with the center downward and the height gradually decreasing from the outside to the inside. This design prolongs the water flow path, uses gravity sedimentation separation to make tiny impurity particles precipitate to the bottom of the quicksand track. At the same time, the impurity blocking structure in the quicksand track slows down the water flow speed and blocks tiny particle impurities through a plurality of impurity blocking members, making them deposit at the bottom of the quicksand track, further purifying the water quality, preventing tiny impurities from flowing into the inside of the main body of the purification pool, ensuring the cleanliness of the water source output by the purification pool, and solving the problem that the purification pool cannot well separate particulate solid impurities.
[0014] 3. The wire rope in the impurity blocking structure of the present utility model is also connected to a plurality of sliding seats. By externally controlling the winding motor to unwind the winding roller and cooperating with pulling the pull ring, the particulate impurities between the plurality of impurity blocking members can be easily extracted, realizing convenient cleaning of the deposited impurities, reducing the labor cleaning cost and difficulty, and improving the maintenance efficiency of the purification pool.
[0015] 4. The utility model also connects the water passing trough in the impurity filtering structure with the quicksand track. The liquid guiding concave cavity inclines inwards and has a liquid inlet gap with the water passing trough, which not only avoids a large amount of external dust from entering the water passing trough, but also increases the liquid inlet volume. At the same time, the impurity blocking flow channels formed by multiple liquid blocking sheets further block tiny particulate impurities, and multiple filtrations ensure the water quality entering the purification pool and improve the overall filtering effect of the purification pool;
[0016] The conical top fixed on the shielding cover and the ornaments installed on the top play a decorative role while performing their functions, improving the integration degree of the purification pool and the garden landscape, expanding the utilization rate of the garden area, enabling the purification pool to better blend into the overall garden environment, and not affecting the beauty of the garden landscape while realizing the water storage and purification function. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 is a structural schematic diagram of the utility model;
[0018] Figure 2 In the utility model Figure 2 is an enlarged structural view of part A in
[0019] Figure 3 is a structural schematic diagram of the half-sectioned shielding cover and conical top in the utility model;
[0020] Figure 4 is a structural schematic diagram of the impurity blocking structure in the utility model;
[0021] Figure 5 is a structural schematic diagram of the impurity blocking part in the utility model.
[0022] Explanation of the reference numerals in the drawings: 1. Purification pool main body; 2. Shielding cover; 3. Sealing ring; 4. Conical top; 5. Top connecting column; 6. Ornament; 7. Quicksand track; 8. Impurity blocking structure; 9. Impurity filtering structure; 10. Winding roller; 11. Winding motor;
[0023] 81. Impurity blocking part; 811. Slide seat; 812. Blocking rib; 813. Elastic block; 814. Central axis; 815. Pulling wire; 816. Pulling ring;
[0024] 901. Water passing trough; 902. Cover plate; 903. Liquid guiding concave cavity; 904. Liquid blocking sheet. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0025] As Figures 1 to 5As shown in the figure, a water storage and purification pool for landscaping of the present utility model includes a purification pool main body 1 embedded in the ground. A shielding cover 2 is installed on the top of the purification pool main body 1. A sealing ring 3 is installed on the outer periphery of the shielding cover 2. A conical top 4 is fixed above the shielding cover 2. A top connecting column 5 is installed at the center of the top of the conical top 4. An ornament 6 is installed on the top of the top connecting column 5. A quicksand track 7 is opened inside the shielding cover 2. One end of the quicksand track 7 communicates with the inside of the purification pool main body 1. The sealing ring 3 and the shielding cover 2 are provided with liquid through holes communicating with the outer part of the quicksand track 7.
[0026] Working principle: By covering the shielding cover 2 on the top of the purification pool main body 1 and cooperating with the design of the ornament 6, it can play a decorative role and expand the utilization rate of the garden area. And through the design of the liquid through hole, larger impurities such as green leaves and branches can be prevented from entering the quicksand track 7, achieving the effect of separating larger impurities such as green leaves and branches.
[0027] In order to filter out tiny particulate impurities, the quicksand track 7 is a spiral path centered downward. The quicksand track 7 is designed with a gradually decreasing height from the outside to the inside. A impurity blocking structure 8 is arranged inside the quicksand track 7. The impurity blocking structure 8 includes a plurality of impurity blocking members 81. The plurality of impurity blocking members 81 are arranged at uniform intervals inside the quicksand track 7. The impurity blocking member 81 includes a sliding seat 811. The sliding seat 811 is in the structure of a wedge-shaped block. A plurality of blocking ribs 812 are integrally formed on the slope side of the sliding seat 811. Elastic blocks 813 are fixed on both sides of the sliding seat 811. The elastic blocks 813 are made of flexible materials. A central shaft 814 is connected to the center of the sliding seat 811. The central shaft 814 is limited to slide with the inner wall of the quicksand track 7. The impurity blocking structure 8 further includes a pull wire 815. The pull wire 815 is connected to the plurality of sliding seats 811. The outer end of the pull wire 815 is connected to a pull ring 816. The pull ring 816 is connected to the outer side of the shielding cover 2. A winding roller 10 is wound with one end of the pull wire 815. A winding motor 11 is installed at the top of the winding roller 10.
[0028] Working principle: Through the spiral trajectory and the gradually decreasing height of the quicksand track 7, the flow path is extended. When the water liquid with tiny particulate impurities is input into the purification pool main body 1, through gravitational sedimentation separation, the tiny impurity particles in the water liquid fall to the bottom of the purification pool main body 1. At the same time, the design of the plurality of sliding seats 811 can slow down the flow rate and block the tiny particulate impurities, making them deposit at the bottom of the quicksand track 7 and preventing them from flowing into the inside of the purification pool main body 1.
[0029] When it is necessary to clean the internal impurities, the winding motor 11 is controlled to operate through an external control structure to unwind the winding roller 10, and then by pulling the pull ring 816, the impurity blocking members 81 can be pulled, and the particulate impurities between the plurality of impurity blocking members 81 can be extracted.
[0030] In order to further play a filtering role, the outer arc of the quicksand track 7 penetrates through the top of the shielding cover 2. A filtering structure 9 is arranged between the conical top 4 and the quicksand track 7. The filtering structure 9 includes a water through-flow groove 901, and the water through-flow groove 901 is communicated with the outer arc part of the quicksand track 7. A cover plate 902 is arranged on the top of the water through-flow groove 901. A plurality of liquid guiding concave cavities 903 are formed on the outer side of the water through-flow groove 901. The liquid guiding concave cavities 903 are designed to be inclined inward. An inlet liquid gap is arranged between the liquid guiding concave cavities 903 and the water through-flow groove 901. A plurality of liquid blocking sheets 904 are installed on the top of the liquid guiding concave cavities 903, and the plurality of liquid blocking sheets 904 form a blocking impurity flow channel.
[0031] Working principle: Through the inlet liquid gap between the liquid guiding concave cavities 903 and the water through-flow groove 901, it is avoided that external dust directly enters the water through-flow groove 901, resulting in a large amount of dust collection. At the same time, it is avoided that larger impurities such as tree branches and green leaves enter, and the liquid inlet amount is increased. Through the distribution design of the plurality of liquid blocking sheets 904, the role of blocking tiny particle impurities is further played.
[0032] The embodiments disclosed in the present utility model are preferred embodiments, but are not limited thereto. Those of ordinary skill in the art can easily understand the spirit of the present utility model according to the above embodiments and make different extensions and changes. However, as long as they do not depart from the spirit of the present utility model, they are within the protection scope of the present utility model.
Claims
1. A garden greening water storage and purification pool, characterized in that: It comprises a purification pool body (1) pre-buried underground, a shielding cover (2) being installed on the top of the purification pool body (1), a closed ring (3) being installed on the outer periphery of the shielding cover (2), a conical top (4) being fixed above the shielding cover (2), a top connecting column (5) being installed at the center of the top of the conical top (4), and a decorative object (6) being installed on the top of the top connecting column (5); A quicksand track (7) is provided inside the shielding cover (2), one end of the quicksand track (7) is connected to the inside of the purification tank body (1), an impurity blocking structure (8) is provided inside the quicksand track (7), the impurity blocking structure (8) comprises a plurality of impurity blocking members (81), the plurality of impurity blocking members (81) are evenly spaced inside the quicksand track (7), and a filter structure (9) is provided between the conical top (4) and the quicksand track (7).
2. A garden greening water storage and purification pool according to claim 1, characterized in that: The quicksand track (7) is a spiral path with the center downward, and the quicksand track (7) is designed to gradually decrease in height from the outside to the inside, and the outer arc of the quicksand track (7) penetrates the top of the shielding cover (2).
3. A garden greening water storage and purification pool according to claim 2, characterized in that: The debris blocking member (81) comprises a slide seat (811), the slide seat (811) being a wedge-shaped block structure, a plurality of blocking ribs (812) being integrally formed on the slope side of the slide seat (811), elastic blocks (813) being fixed on both sides of the slide seat (811), the elastic blocks (813) being made of a flexible material, a central axis (814) being connected to the center of the slide seat (811), and the central axis (814) slidingly limits movement with the inner wall of the quicksand track (7).
4. A garden greening water storage and purification pool according to claim 3, characterized in that: The impurity-blocking structure (8) comprises a pull wire (815), the pull wire (815) and a plurality of slide seats (811) being connected to each other, a pull ring (816) being connected to the outer end of the pull wire (815), and the pull ring (816) being connected to the outer side of the shielding cover (2).
5. A garden greening water storage and purification pool according to claim 4, characterized in that: The impurity filtering structure (9) comprises a water trough (901), the water trough (901) being connected to the outer arc portion of the quicksand track (7), the top of the water trough (901) being covered with a cover plate (902), a plurality of liquid guiding concave cavities (903) being provided on the outer side of the water trough (901), the liquid guiding concave cavities (903) being designed to be inclined inwards, and a liquid inlet gap being provided between the liquid guiding concave cavities (903) and the water trough (901).
6. A garden greening water storage and purification pool according to claim 5, characterized in that: A plurality of liquid blocking sheets (904) are installed on the top of the liquid-conducting cavity (903), and the plurality of liquid blocking sheets (904) form a flow channel that blocks impurities.
7. A garden greening water storage and purification pool according to claim 4, characterized in that: One end of the pulling wire (815) is wound around a winding roller (10), and a winding motor (11) is installed at the top end of the winding roller (10).