Recycling system for garden landscape water
By using a sliding plate and arc-shaped filter plate structure, a water neutralization device, and a soil leveling device, the problems of soil sedimentation and acid rain corrosion are solved, and the efficient recycling of garden landscape water is achieved.
Patent Information
- Application Number
- PCT/CN2024/097210
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Priority Date
- 2024-05-24
- Filing Date
- 2024-06-04
- Publication Date
- 2025-11-27
AI Technical Summary
Water accumulating in the soil settles on the filtration device, causing it to become clogged and affecting rainwater collection efficiency. Furthermore, acid rain can corrode the equipment, impacting the use and storage of rainwater.
The system employs a sliding plate and arc-shaped filter plate structure, combined with elastic pull ropes and a rotating shaft, to achieve the reciprocating motion of the arc-shaped filter plate and prevent soil sedimentation. It is equipped with a water neutralization device and an acid rain detector to automatically neutralize acid rain. It also uses a soil leveling device and a rainwater collection and protection device to prevent soil solidification and clogging of the filter device.
It effectively prevents soil sediment from clogging the filter device, protects the equipment from acid rain corrosion, and ensures the quality and efficiency of rainwater collection and storage.
Smart Images

Figure CN2024097210_27112025_PF_FP_ABST
Abstract
Description
Recyclable system of landscape water TECHNICAL FIELD
[0001] The present application relates to rainwater collection technical field, specifically to the recyclable system of landscape water. BACKGROUND
[0002] The surface of the soil accumulates too much water, which can affect the growth of plants, so that the excess water in the soil can be collected, and a large amount of soil can be mixed in the water in the soil, so that a filtering device needs to be used for filtering, so that the soil in the rainwater can be deposited on the filtering device, and the deposited soil can be solidified to block the filtering device, thereby affecting the effect of the filtering device on rainwater collection.
[0003] SUMMARY
[0004] The present application provides a recyclable system of landscape water, comprising a processing frame, a storage frame is arranged on the right side of the processing frame, a water inlet frame is installed on the processing frame, and a soil and water loss filtering device is arranged on the processing frame.
[0005] A sliding plate is slidingly installed on the water inlet frame, and an arc-shaped filter plate is hinged on the sliding plate.
[0006] A rotating shaft is rotatably installed on the processing frame, a support plate is fixedly installed on the surface of the rotating shaft, a water collecting frame is fixedly installed on the support plate, a winding reel is fixedly installed on the surface of the rotating shaft, one end of the elastic pull rope is fixed to the winding reel, the other end of the elastic pull rope is fixed to the arc-shaped filter plate, and an arc-shaped plate is fixedly installed on the processing frame. ADVANTAGEOUS EFFECTS
[0007] (1) The soil in the rainwater is prevented from being deposited on the arc-shaped filter plate, so that the arc-shaped filter plate is prevented from being blocked by the soil.
[0008] (2) The internal storage of the processing frame and the storage frame is prevented from being affected by the subsequent use of the rainwater, and the acid rain detector can detect the acid rain, so that the liquid in the material frame enters the internal of the discharging frame.
[0009] (3) The rainwater in the residual frame is prevented from entering the internal of the material frame through the discharging pipe when the rainwater is collected, which affects the liquid in the material frame.
[0010] (4) The excessive soil accumulated on the left side of the water inlet frame is prevented from being solidified to affect the subsequent rainwater entering the internal of the water inlet frame. BRIEF DESCRIPTION OF DRAWINGS
[0011] Fig. 1 is a schematic view of the overall structure of the present application;
[0012] Figure 2 is a schematic diagram of the cross-section structure of the processing frame of the present application;
[0013] Figure 3 is a schematic diagram of the cross-section structure of the water inlet frame of the present application;
[0014] Figure 4 is a schematic diagram of the structure of the moving plate of the present application;
[0015] Figure 5 is a schematic diagram of the structure of the winding wheel of the present application;
[0016] Figure 6 is a schematic diagram of the cross-section structure of the discharge pipe of the present application;
[0017] Figure 7 is a schematic diagram of the structure of the baffle of the present application;
[0018] Figure 8 is a schematic diagram of the internal structure of the arc-shaped frame of the present application. DETAILED DESCRIPTION
[0019] The application provides a recyclable system for garden landscape water, which comprises a treatment frame 1, a storage frame 3 is arranged at the right side of the treatment frame 1 and communicates with the treatment frame 1 through a pipeline, a water inlet frame 2 is fixedly installed at the left side of the treatment frame 1, rainwater in the treatment frame 1 enters the inside of the storage frame 3 through a pipeline, the treatment frame 1 and the storage frame 3 are in the inside of soil, the water inlet frame 2 is at the top of the soil and can collect accumulated water in the soil, the water inlet frame 2 communicates with the inside of the treatment frame 1, a soil erosion filter device is arranged on the treatment frame 1, the soil erosion filter device comprises a sliding plate 41 and a rotating shaft 44, the sliding plate 41 is slidingly installed on the inner wall of the water inlet frame 2, an arc-shaped filter plate 42 is hingedly connected to the top of the sliding plate 41, a first elastic sheet is arranged between the arc-shaped filter plate 42 and the sliding plate 41, the arc-shaped filter plate 42 can filter rainwater entering the inside of the water inlet frame 2, when the rainwater outside is too large, the rainwater will impact the soil on the ground, so that a large amount of soil in the accumulated water on the ground will be mixed, the rainwater mixed with the soil enters the inside of the treatment frame 1 and causes deposition, which affects the storage effect of the treatment frame 1 and the storage frame 3, the arc-shaped filter plate 42 can prevent the soil in the rainwater from entering the inside of the treatment frame 1 and the storage frame 3, the rotating shaft 44 is fixedly installed on the inner wall of the treatment frame 1, a supporting plate 45 is fixedly installed on the surface of the rotating shaft 44, a water collecting frame 46 is fixedly installed at the end, away from the rotating shaft 44, of the supporting plate 45, water entering the inside of the treatment frame 1 through the water inlet frame 2 will flow to the water collecting frame 46, the gravity generated by the water entering the inside of the water collecting frame 46 can drive the water collecting frame 46, the supporting plate 45 and the rotating shaft 44 to rotate, a winding wheel 48 is fixedly installed on the surface of the rotating shaft 44, an elastic pull rope 49 is fixedly installed on the inner wall of the winding wheel 48, the end, away from the winding wheel 48, of the elastic pull rope 49 is fixedly installed at the right side of the arc-shaped filter plate 42, an arc-shaped plate 47 is fixedly installed on the inner wall of the treatment frame 1, the elastic pull rope 49 slides on the top of the arc-shaped plate 47, the arc-shaped plate 47 can change the moving track of the arc-shaped plate 47, a through hole is formed in the water collecting frame 46, the rotating shaft 44 can drive the winding wheel 48 to rotate when the rotating shaft 44 rotates, the elastic pull rope 49 can be wound through the rotation of the winding wheel 48, the elastic pull rope 49 can drive the arc-shaped filter plate 42 and the sliding plate 41 to move when the elastic pull rope 49 is wound, the arc-shaped filter plate 42 will rotate when the arc-shaped filter plate 42 is driven, the rotating shaft 44, the supporting plate 45 and the water collecting frame 46 will not rotate when the arc-shaped filter plate 42 moves to a certain distance, the rotating shaft 44 reciprocatingly rotates through the impact of the rainwater on the water collecting frame 46 and the elastic force of the elastic pull rope 49, the arc-shaped filter plate 42 is driven to swing through the reciprocating rotation of the rotating shaft 44, the rainwater at the left side of the arc-shaped filter plate 42 is driven to move through the swing of the arc-shaped filter plate 42, the soil in the rainwater at the left side of the arc-shaped filter plate 42 can be prevented from depositing on the arc-shaped filter plate 42 and blocking the arc-shaped filter plate 42, the arc-shaped filter plate 42 can be prevented from affecting the flowability and causing the accumulated water to not enter the inside of the treatment frame 1 in time, which can affect the plants planted in the garden.
[0020] The inner wall bottom of the water inlet frame 2 is fixedly provided with a blocking block 410, and a second elastic sheet is arranged between the blocking block 410 and the sliding plate 41. Because the gravity of the soil is relatively large, the soil is concentrated at the bottom of the rainwater. The blocking block 410 can block most of the soil at the bottom of the rainwater from entering the inside of the water inlet frame 2. The top of the inner wall of the water inlet frame 2 is hingedly provided with a sealing plate 43, and a third elastic sheet is arranged between the sealing plate 43 and the inner wall of the water inlet frame 2. The bottom of the sealing plate 43 is in contact with the left side of the arc-shaped filter plate 42. When the arc-shaped filter plate 42 is reset by the elastic force of the first elastic sheet, the arc-shaped filter plate 42 can be pushed, and the sealing plate 43 rotates. When the sealing plate 43 rotates, the sealing plate 43 can be attached to the sliding plate 41 to seal the water inlet frame 2. When the temperature outside is relatively high, the sealing plate 43 can prevent the rainwater in the treatment frame 1 and the storage frame 3 from evaporating, so as to reduce the loss of the rainwater in the treatment frame 1 and the storage frame 3. When the sealing plate 43 moves downward at the left side of the arc-shaped filter plate 42, the sealing plate 43 can push the residual soil at the left side of the arc-shaped filter plate 42 away from the arc-shaped filter plate 42, so as to further avoid the residual soil on the arc-shaped filter plate 42.
[0021] The processing frame 1 is provided with a water quality neutralizing device, the water quality neutralizing device comprises a contact plate 51, a material frame 61 and an acid rain detector 8. The contact plate 51 penetrates through the arc-shaped plate 47 and is slidingly installed on the arc-shaped plate 47, and a fourth elastic sheet is arranged between the contact plate 51 and the arc-shaped plate 47. When the support plate 45 drives the water collecting frame 46 to rotate, the water collecting frame 46 will contact the contact plate 51, and the water collecting frame 46 can push the contact plate 51 to move when contacting the contact plate 51. The inner wall of the processing frame 1 is slidingly installed with a bending plate 52, the bottom of the bending plate 52 is in contact with the top of the contact plate 51, and an arc-shaped elastic sheet 53 is fixedly installed on one side of the bending plate 52 close to the arc-shaped filter plate 42. The arc-shaped elastic sheet 53 is in contact with the arc-shaped filter plate 42 at the end away from the bending plate 52, and the arc-shaped elastic sheet 53 moves up and down to drive the arc-shaped filter plate 42 to swing when the bending plate 52 moves up and down, so that the swinging effect of the arc-shaped filter plate 42 is improved, and the soil in the rainwater is further prevented from depositing on the arc-shaped filter plate 42 to affect the filtering effect of the arc-shaped filter plate 42. The left side of the sliding plate 41 is rotatably installed with a pushing plate 54, and a spring is arranged between the pushing plate 54 and the sliding plate 41. When the sliding plate 41 drives the pushing plate 54 to move to the left side, the pushing plate 54 pushes the deposited soil in the water inlet frame 2 to move to the left side of the blocking block 410. The material frame 61 is fixedly installed on the top of the inner wall of the processing frame 1, a discharge pipe 64 is fixedly installed on the left side of the material frame 61, a T-shaped plate 65 is fixedly installed on one side of the bending plate 52 close to the discharge pipe 64, the top of the T-shaped plate 65 is slidingly installed on the inner wall of the discharge pipe 64, the top of the T-shaped plate 65 is penetrated through by a baffle 66, and the baffle 66 is slidingly installed on the T-shaped plate 65. A fifth elastic sheet is arranged between the T-shaped plate 65 and the baffle 66. The T-shaped plate 65 can be driven to move up and down through the bending plate 52, and the baffle 66 moves up to contact the top of the inner wall of the discharge pipe 64 to seal the inside of the discharge pipe 64 when the T-shaped plate 65 moves up. An arc-shaped liquid discharge frame 67 is fixedly installed at the end of the discharge pipe 64 away from the material frame 61, and an open rubber is arranged in the arc-shaped liquid discharge frame 67. The liquid in the discharge pipe 64 will only extrude the open rubber to deform when a certain extrusion force is generated, so that the arc-shaped liquid discharge frame 67 sprays liquid, the T-shaped plate 65 can extrude the liquid on the left side of the baffle 66, and the liquid on the T-shaped plate 65 is sprayed from the arc-shaped liquid discharge frame 67. The inside of the material frame 61 is provided with calcium hydroxide solution, so that the amount of liquid sprayed from the arc-shaped liquid discharge frame 67 can be changed by changing the frequency of movement of the bending plate 52.The acid rain detector 8 is fixedly installed on the top of the processing frame 1, the inner wall of the material frame 61 is fixedly installed with a driving device 62, which can be an electric push rod or a device that can drive other devices to move up and down, the output end of the driving device 62 is fixedly installed with a plug plate 63, the plug plate 63 is slidingly installed in the interior of the material frame 61, the plug plate 63 can seal the position where the discharge pipe 64 is connected with the material frame 61, acid rain can cause damage to the environment and human body, the acid rain detector 8 can detect acid rain, when it rains acid rain, the driving device 62 can be opened through the detection of the acid rain detector 8, the driving device 62 drives the plug plate 63 to move upward, so that the liquid frame in the interior of the material frame 61 enters the interior of the discharge pipe 64, the rainwater can be automatically neutralized, which can avoid the influence of acid rain on the subsequent use of collected rainwater, and can also avoid the corrosion of acid rain to the processing frame 1 and the storage frame 3, affecting the service life of the processing frame 1 and the storage frame 3.
[0022] The rainwater collecting protection device is arranged on the processing frame 1, which comprises an arc-shaped frame 71, the arc-shaped frame 71 is fixedly installed on the inner wall of the processing frame 1, the bottom of the arc-shaped frame 71 is provided with an opening, the rainwater in the interior of the processing frame 1 can enter the interior of the arc-shaped frame 71 through the opening, the inner wall of the arc-shaped frame 71 is slidingly installed with a piston 73, the inner wall of the arc-shaped frame 71 is provided with a No. 6 elastic sheet between the piston 73 and the inner wall of the arc-shaped frame 71, the bottom of the inner wall of the arc-shaped frame 71 is provided with a float 72, the top of the piston 73 away from the float 72 is fixedly installed with a connecting rod 74, the surface of the connecting rod 74 is fixedly installed with a blocking plate 75, the blocking plate 75 penetrates through the bottom of the discharge pipe 64 and is slidingly installed on the discharge pipe 64, when the rainwater in the interior of the processing frame 1 is collected, the buoyancy generated by the float 72 can push the gas in the interior of the arc-shaped frame 71 to be extruded, so that the gas in the interior of the arc-shaped frame 71 can push the piston 73, the connecting rod 74 and the blocking plate 75 to move upward, the upward movement of the blocking plate 75 can seal the discharge pipe 64, which can avoid the rainwater in the interior of the processing frame 1 from entering the interior of the material frame 61 through the discharge pipe 64 when the material frame 61 is full, and can protect the material frame 61.
[0023] The water inlet frame 2 is provided with a soil pushing device, which comprises an arc-shaped sliding groove 91 fixedly installed on the inner wall of the water inlet frame 2, a sliding block 92 slidingly installed on the inner wall of the arc-shaped sliding groove 91, a curved pushing plate 93 fixedly installed at the end of the sliding block 92 away from the arc-shaped sliding groove 91, a moving plate 94 slidingly installed on the inner wall of the water inlet frame 2, an arc-shaped block 95 fixedly installed on the side of the moving plate 94 close to the arc-shaped sliding groove 91, a No. 7 elastic piece arranged between the curved pushing plate 93 and the water inlet frame 2, and a No. 8 elastic piece arranged between the moving plate 94 and the water inlet frame 2. When the arc-shaped filter plate 42 moves, the sealing plate 43 is driven to rotate, the sealing plate 43 can push the moving plate 94 to move when the sealing plate 43 rotates, the arc-shaped block 95 can push the sliding block 92 and the curved pushing plate 93 to move in an arc shape when the moving plate 94 moves, the curved pushing plate 93 can push the accumulated soil on the left side of the water inlet frame 2 to move through the arc-shaped movement, so that the accumulated soil on the left side of the water inlet frame 2 is avoided, and the effect of subsequent rainwater entering the water inlet frame 2 is not affected after the soil solidifies.
Claims
1. A recirculating system for landscape water, comprising a treatment frame, characterized in that: The right side of the processing frame is provided with a storage frame, a water inlet frame is installed on the processing frame, an erosion filter device is arranged on the processing frame, and the erosion filter device comprises: A sliding plate is slidingly installed on the water inlet frame, and an arc-shaped filter plate is hinged to the sliding plate; A rotating shaft is rotatably installed on the processing frame, a support plate is fixedly installed on the surface of the rotating shaft, a water collecting frame is fixedly installed on the support plate, a winding wheel is fixedly installed on the surface of the rotating shaft, one end of an elastic pull rope is fixed to the winding wheel, the other end of the elastic pull rope is fixed to the arc-shaped filter plate, and an arc-shaped plate is fixedly installed on the processing frame.
2. The recirculating system for landscape water of claim 1, wherein: A sealing plate is hinged to the water inlet frame, and a third elastic sheet is arranged between the sealing plate and the water inlet frame.
3. The recirculating system for landscape water of claim 1, wherein: A first elastic sheet is arranged between the arc-shaped filter plate and the sliding plate, a blocking block is fixedly installed on the water inlet frame, and a second elastic sheet is arranged between the blocking block and the sliding plate.
4. The recirculating system for landscape water of claim 1, wherein: A water quality neutralizing device is arranged on the processing frame, and the water quality neutralizing device comprises: A contact plate is slidingly sleeved on the arc-shaped plate, a curved plate is slidingly installed on the processing frame, an arc-shaped elastic sheet is fixedly installed on the curved plate, and a pushing plate is rotatably installed on the sliding plate; A material frame is fixedly installed on the processing frame, a discharge pipe is fixedly installed on the material frame, a T-shaped plate is fixedly installed on the curved plate, a baffle is slidingly sleeved on the T-shaped plate, and an arc-shaped liquid discharge frame is fixedly installed on the discharge pipe; An acid rain detector is fixedly installed on the processing frame, a driving device is fixedly installed in the material frame, and a plug plate is fixedly installed on the output end of the driving device.
5. The recirculating system for landscape water of claim 4, wherein: A rainwater collection protection device is arranged on the processing frame, and the rainwater collection protection device comprises: An arc-shaped frame is fixedly installed on the processing frame, a float is arranged on the inner wall of the arc-shaped frame, a piston is arranged in the arc-shaped frame, a connecting rod is fixedly installed on the top of the piston, a blocking plate is fixedly installed on the connecting rod, and the blocking plate is slidingly sleeved on the discharge pipe.
Citation Information
Patent Citations
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CN111877494A
Garden landscape rainwater collecting and water recycling system
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CN117101259A