Garden water-saving road

By installing intercepting structures and bases in the drainage pipes of garden roads, the water in the drainage channels can be filtered in stages and cleaned easily, which solves the problem of poor water quality in the drainage channels, improves the water recycling rate, and enhances the water-saving capacity of the garden.

CN224119675UActive Publication Date: 2026-04-14WENZHOU HUAHONG MUNICIPAL GARDEN ENG CONSTR CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
WENZHOU HUAHONG MUNICIPAL GARDEN ENG CONSTR CO LTD
Filing Date
2025-03-31
Publication Date
2026-04-14

AI Technical Summary

Technical Problem

In existing garden road drainage channels, the water used for recycling has poor impurity removal, resulting in water quality unsuitable for reuse and affecting water conservation.

Method used

A sludge interception structure is installed in the drainage pipe, including a sludge interception net and a sludge interception base. The sludge interception net has different filter apertures above and below for graded filtration. The sludge interception base can be raised and lowered to facilitate the cleaning of silt. Combined with a magnetic connection structure, the drainage cover can be easily disassembled for cleaning.

Benefits of technology

It improves the removal of impurities from water in drainage channels, enhances water quality, facilitates water recycling, and strengthens the water-saving capacity of garden irrigation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The garden water-saving road comprises a roadbed and drainage pipelines arranged on the two sides of the roadbed, sewage intercepting structures are arranged on the drainage pipelines, a collecting channel is arranged on one side in each drainage pipeline, and each sewage intercepting structure comprises a sewage intercepting net between the corresponding drainage pipeline and the corresponding collecting pipeline and a drainage cover plate arranged on the corresponding drainage pipeline. Filtering holes are formed in the sewage intercepting net at intervals, and the aperture of the filtering holes, close to the drainage pipeline, below the sewage intercepting net is smaller than that of the filtering holes above the sewage intercepting net; water taking holes are formed in the collecting channel at intervals. Water entering the collecting channel is filtered in a classified mode through the sewage intercepting net with different hole diameters, silt and the like deposited at the bottom of the drainage channel are further intercepted through the filtering holes with the small hole diameters, the impurity removal effect on the water flowing into the drainage channel is improved, the water quality is improved so that the water can be recycled for garden irrigation and the like, and water saving is facilitated; when the abutting plate rotates to be staggered with the drainage cover plate, the drainage cover plate can be conveniently opened to clean silt and the like deposited in the drainage channel, and operation is more convenient.
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Description

Technical Field

[0001] This application relates to the technical field of garden road construction, and in particular to a water-saving garden road. Background Technology

[0002] Existing garden paths are usually equipped with drainage channels to enhance the overall drainage performance of the road surface. The water in the drainage channels can be recycled and reused, thus saving water resources.

[0003] Currently, in order to ensure smooth drainage, gratings are usually used to seal the top of the drainage channel. However, the water flowing into the drainage channel may still carry some garbage or silt. The water in the drainage channel is not effectively cleaned, which is not conducive to recycling. Therefore, there is still room for improvement. Utility Model Content

[0004] In order to improve the impurity removal effect of the water in the recycled drainage channel and improve the water quality in the drainage channel for recycling and reuse in garden irrigation, which is beneficial to water conservation, this application provides a garden water-saving road.

[0005] The technical solution for a water-saving garden road provided in this application is as follows:

[0006] A water-saving garden road includes a roadbed and drainage pipes installed on both sides of the roadbed. The drainage pipes are equipped with a sewage interception structure, and a collection channel is provided on one side of the drainage pipes. The sewage interception structure includes a sewage interception net installed on the side of the drainage pipe near the collection channel and a drainage cover plate installed on the drainage pipe. The sewage interception net has several filter holes spaced apart, and the diameter of the filter holes on the lower part of the sewage interception net near the drainage pipe is smaller than the diameter of the filter holes on the upper part of the sewage interception net. The collection channel has water intake holes spaced apart. The drainage cover plate is detachably connected to the drainage pipe via an installation structure, which includes an abutment plate rotatably connected to the drainage pipe and rotatably abutting against the drainage cover plate.

[0007] By adopting the above technical solution, a intercepting net is set up to filter the water entering the collection channel in stages. The filter holes above and below the intercepting net have different diameters. The smaller diameter filter holes further intercept the silt and sand deposited at the bottom of the drainage channel, improving the impurity removal effect of the water in the drainage channel and improving the water quality in the drainage channel for recycling in garden irrigation, which is beneficial to water conservation. The water intake hole opened on the collection channel facilitates water intake and recycling. When the abutment plate is rotated to be misaligned with the drainage cover, the drainage cover can be easily opened to clean the silt and sand accumulated in the drainage channel, making the operation more convenient.

[0008] Preferably, the intercepting structure further includes a silt-blocking base, which is located at the bottom of the drainage pipe and can be raised and lowered, and the silt-blocking base is connected to the drainage cover plate through a connecting structure.

[0009] By adopting the above technical solution and setting up a sewage interception base, the ease of cleaning up accumulated silt and sand can be improved by raising and lowering the sewage interception base. The connecting structure keeps the sewage interception base stably set at the bottom of the drainage pipe and prevents it from floating due to the buoyancy of the water flow.

[0010] Preferably, the silt-blocking base has several silt-blocking grooves spaced apart, and the silt-blocking grooves are dovetail grooves; several drainage holes are provided on the circumferential sidewall of the silt-blocking base and the upper part of the sidewall of the silt-blocking groove.

[0011] By adopting the above technical solution, the dovetail groove lowers the horizontal level of the intercepted silt, allowing the silt to be contained within the groove. On the other hand, the inward-curving sidewall at the top of the dovetail groove restricts the outflow of silt, thereby improving the interception effect. The drainage hole discharges as much water as possible from the intercepting base. The drainage hole of the intercepting groove is located on the upper part of the sidewall to minimize the removal of silt.

[0012] Preferably, the connecting structure includes a connecting rod fixed to the silt intercepting base and a positioning rod slidably connected to the drainage cover plate. The connecting rod extends upward through the drainage cover plate, and the positioning rod extends vertically through and is positioned inside the connecting rod.

[0013] Preferably, an inverted T-shaped block is fixed to the bottom of the positioning rod, and a sliding groove is provided in the drainage cover for the inverted T-shaped block to slide; a magnetic block is fixed on the inverted T-shaped block, and a magnet that attracts the magnetic block is fixed on the side wall of the sliding groove near the connecting rod. When the positioning rod is inserted into the connecting rod, the magnetic block attracts the magnet.

[0014] By adopting the above technical solution, the T-block maintains the connection of the positioning rod on the drainage cover, and the magnetic block and magnet attract each other after the positioning rod is inserted into the connecting rod, which plays a further role in fixing it.

[0015] Preferably, the connecting rod has positioning grooves at both the upper and lower ends in the longitudinal direction, and the positioning rod can be respectively inserted into the corresponding positioning grooves.

[0016] By adopting the above technical solution, when the positioning rod is positioned in the upper positioning groove, the silt-blocking base is positioned at the bottom of the drainage pipe. When the positioning plate is positioned in the lower positioning groove, the silt-blocking base is close to the drainage cover plate, which shortens the movement distance of the connecting rod in the drainage pipe, making it easier to remove the drainage cover plate and the silt-blocking base from the drainage pipe at the same time for cleaning.

[0017] Preferably, the mounting structure further includes a mounting groove formed on the drainage pipe, and the drainage cover is accommodated in the mounting groove.

[0018] In summary, this application includes at least one of the following beneficial technical effects:

[0019] A filtration screen is installed to filter water entering the collection channel in stages. The filter holes above and below the screen have different diameters. The smaller diameter holes further trap sediment and sand deposited at the bottom of the drainage channel, improving the impurity removal effect of the water in the drainage channel and improving the water quality for reuse in garden irrigation, which is beneficial for water conservation. Water intake holes on the collection channel facilitate water intake and recycling. When the connecting plate is rotated to be misaligned with the drainage cover, the drainage cover can be easily opened to clean the sediment and sand accumulated in the drainage channel, making the operation more convenient.

[0020] A silt-catching base is installed to facilitate the cleaning of accumulated silt by raising and lowering it. The connecting structure ensures that the silt-catching base is stably installed at the bottom of the drainage pipe and does not float due to the buoyancy of the water flow. The silt-catching groove is a dovetail groove, which lowers the horizontal level of the silt to retain it in the groove, and restricts the outflow of silt through the inward side wall at the top of the dovetail groove, thus improving the interception effect. The drain hole drains as much water as possible from the silt-catching base. The drain hole of the silt-catching groove is located on the upper side wall to minimize the removal of silt.

[0021] When the positioning rod is positioned in the upper positioning groove, the intercepting base is positioned at the bottom of the drainage pipe. When the positioning plate is positioned in the lower positioning groove, the intercepting base is close to the drainage cover, shortening the movement distance of the connecting rod in the drainage pipe, thus making it easier to remove the drainage cover and the intercepting base from the drainage pipe at the same time for cleaning. Attached Figure Description

[0022] Figure 1 This is a structural schematic diagram of an embodiment of this application;

[0023] Figure 2 This is a schematic diagram of the structure of the silt-blocking base according to an embodiment of this application;

[0024] Figure 3 This is a partially exploded structural diagram highlighting the connection between the positioning rod and the connecting rod in an embodiment of this application.

[0025] Explanation of reference numerals in the attached drawings: 1. Roadbed; 2. Drainage pipe; 3. Sewage interception structure; 31. Drainage cover; 311. Sliding groove; 32. Sewage interception net; 321. Filter hole; 33. Silt interception base; 331. Silt interception groove; 332. Drainage hole; 4. Collection channel; 41. Water intake hole; 5. Installation structure; 51. Installation groove; 52. Abutment plate; 6. Connection structure; 61. Connecting rod; 611. Positioning groove; 62. Positioning rod; 621. T-block; 7. Magnetic block; 8. Magnet. Detailed Implementation

[0026] The present application will be further described in detail below with reference to the accompanying drawings.

[0027] This application discloses a water-saving garden road, referring to... Figure 1 It includes a roadbed 1 and drainage pipes 2 set on both sides of the roadbed 1. The drainage pipes 2 are equipped with intercepting structures 3 and a collection channel 4 is set on one side of the drainage pipes 2. The water in the drainage pipes 2 passes through the intercepting structures 3 to intercept garbage and silt before entering the collection channel 4 for recycling. The collection channel 4 is provided with water intake holes 41 at intervals to improve the impurity removal effect of the recycled water in the drainage channel and improve the water quality of the recycled water resources in the drainage channel for recycling and reuse in garden irrigation, etc., which is conducive to water conservation.

[0028] Reference Figure 1 The intercepting structure 3 includes a drainage cover plate 31 installed on the drainage pipe 2. The drainage cover plate 31 is detachably connected to the drainage pipe 2 via an installation structure 5. The installation structure 5 includes an installation groove 51 opened on the drainage pipe 2 and an abutment plate 52 rotatably connected to the drainage pipe 2. The drainage cover plate 31 is accommodated in the installation groove 51, and the abutment plate 52 can rotatably abut against the drainage cover plate 31.

[0029] Reference Figure 1 The intercepting structure 3 also includes an intercepting net 32 ​​installed on the side of the drainage pipe 2 near the collection pipe. The intercepting net 32 ​​performs graded filtration on the water entering the collection channel 4. Several filter holes 321 are opened at intervals on the intercepting net 32, and the diameter of the filter holes 321 on the lower part of the intercepting net 32 ​​near the drainage pipe 2 is smaller than the diameter of the filter holes 321 on the upper part of the intercepting net 32. The small-diameter filter holes 321 further intercept the mud and sand deposited at the bottom of the drainage channel, thereby improving the impurity removal effect of the water in the recovered drainage channel.

[0030] Reference Figure 1 , 2 The intercepting structure 3 also includes a silt-blocking base 33, which is located at the bottom of the drainage pipe 2 and can be raised and lowered. Several silt-blocking grooves 331 are opened at intervals on the silt-blocking base 33. The silt-blocking grooves 331 are dovetail grooves, which on the one hand lower the horizontal level of the intercepted silt so that the silt can be contained in the silt-blocking grooves 331, and on the other hand restrict the silt from flowing out through the trapezoidal upper inward side wall, thereby improving the interception effect. Several drainage holes 332 are opened on the circumferential side wall of the silt-blocking base 33 and the side wall of the silt-blocking grooves 331.

[0031] Reference Figure 1 , 3 The intercepting base 33 is connected to the drainage cover plate 31 through the connecting structure 6. The connecting structure 6 includes connecting rods 61 fixed at the four corners of the intercepting base 33 and positioning rods 62 slidably connected at the four corners of the drainage cover plate 31. The connecting rods 61 extend upward through the drainage cover plate 31, and the positioning rods 62 extend vertically through and are positioned inside the connecting rods 61, so that the intercepting base 33 is stably installed at the bottom of the drainage pipe 2.

[0032] Reference Figure 2 , 3 The connecting rod 61 has positioning grooves 611 at both the upper and lower ends in the longitudinal direction, and the positioning rod 62 can be inserted into the corresponding positioning grooves 611 respectively. When the positioning rod 62 is positioned in the upper positioning groove 611, the silt intercepting base 33 is positioned at the bottom of the drainage pipe 2. Lifting the silt intercepting base 33 close to the drainage cover plate 31 and positioning the positioning plate in the lower positioning groove 611 can shorten the movement distance of the connecting rod 61 in the drainage pipe 2, and make it easier to remove the drainage cover plate 31 and the silt intercepting base 33 from the drainage pipe 2 at the same time for cleaning.

[0033] Reference Figure 1 , 3 The bottom of the positioning rod 62 is fixed with an inverted T-shaped block 621. A sliding groove 311 is provided in the drain cover 31 for the inverted T-shaped block 621 to slide, so as to keep the positioning rod 62 connected to the drain cover 31. A magnetic block 7 is fixed on the inverted T-shaped block 621. A magnet 8 that attracts the magnetic block 7 is fixed on the side wall of the sliding groove 311 near the connecting rod 61. When the positioning rod 62 is inserted into the connecting rod 61, the magnetic block 7 and the magnet 8 attract each other, which plays a further role in fixing.

[0034] The above are all preferred embodiments of this application, and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.

Claims

1. A water-saving garden road, characterized in that: The system includes a roadbed (1) and drainage pipes (2) installed on both sides of the roadbed (1). The drainage pipes (2) are equipped with a sewage interception structure (3). A collection channel (4) is provided on one side of the drainage pipes (2). The sewage interception structure (3) includes a sewage interception net (32) installed on the side of the drainage pipe (2) near the collection channel and a drainage cover plate (31) installed on the drainage pipe (2). The sewage interception net (32) has several filter holes (321) spaced apart. The aperture of the filter hole (321) below the drain pipe (2) is smaller than the aperture of the filter hole (321) above the intercepting screen (32); water intake holes (41) are spaced apart on the collection channel (4); the drain cover (31) is detachably connected to the drain pipe (2) through the installation structure (5), the installation structure (5) includes an abutment plate (52) rotatably connected to the drain pipe (2), the abutment plate (52) can rotatably abut against the drain cover (31).

2. The garden water-saving road according to claim 1, characterized in that: The intercepting structure (3) also includes a silt-blocking base (33), which is located at the bottom of the drainage pipe (2) and can be raised and lowered. The silt-blocking base (33) is connected to the drainage cover plate (31) through the connecting structure (6).

3. The garden water-saving road according to claim 2, characterized in that: The silt-blocking base (33) has several silt-blocking grooves (331) spaced apart, and the silt-blocking grooves (331) are dovetail grooves; several drainage holes (332) are provided on the circumferential sidewall of the silt-blocking base (33) and the upper part of the sidewall of the silt-blocking grooves (331).

4. A water-saving garden road according to claim 2, characterized in that: The connecting structure (6) includes a connecting rod (61) fixed to the intercepting base (33) and a positioning rod (62) slidably connected to the drainage cover (31). The connecting rod (61) passes upward through the drainage cover (31), and the positioning rod (62) passes vertically through and is positioned inside the connecting rod (61).

5. A water-saving garden road according to claim 4, characterized in that: The bottom of the positioning rod (62) is fixed with an inverted T-shaped block (621), and a sliding groove (311) for sliding the inverted T-shaped block (621) is provided in the drainage cover plate (31); a magnetic block (7) is fixed on the inverted T-shaped block (621), and a magnet (8) that attracts the magnetic block (7) is fixed on one side wall of the sliding groove (311) near the connecting rod (61). When the positioning rod (62) is inserted into the connecting rod (61), the magnetic block (7) and the magnet (8) attract each other.

6. A water-saving garden road according to claim 4, characterized in that: The connecting rod (61) has positioning grooves (611) at both the upper and lower ends in the longitudinal direction, and the positioning rod (62) can be respectively inserted into the corresponding positioning grooves (611).

7. A water-saving garden road according to claim 1, characterized in that: The installation structure (5) also includes an installation groove (51) opened on the drainage pipe (2), and the drainage cover (31) is accommodated in the installation groove (51).