Garden rainwater collecting device
By introducing a filtration structure consisting of inclined plates and a filter box into the water collection tank, the problem of impurity deposition in the water collection tank is solved, achieving effective filtration of impurities and convenient installation of the protective cover, reducing maintenance costs and extending service life.
Patent Information
- Application Number
- CN202422993045.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-04
- Publication Date
- 2025-12-09
- Estimated Expiration
- 2034-12-04
AI Technical Summary
The protective cover installed at the inlet of the existing water collection tank can only block larger impurities, while smaller impurities will sink to the bottom of the water collection tank, increasing maintenance costs.
The design includes a water collection bucket, a fixing ring, a water collection tray, a protective cover, and a filter structure. The filter structure consists of an inclined plate, a filter box, a limiting groove, a water inlet groove, and a connecting groove. The inclined plate and the filter box filter out heavier impurities in the rainwater, preventing them from sinking to the bottom of the water collection bucket.
It effectively filters out heavier impurities in rainwater, reduces the maintenance cost of the water collection tank, extends its service life, and simplifies the installation process of the protective cover through the connection structure, thereby improving installation efficiency.
Smart Images

Figure CN223647134U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of rainwater harvesting devices, and in particular to a garden rainwater harvesting device. Background Technology
[0002] Rainwater harvesting devices consist of a water collection bucket, a water collection tray, a protective cover, and a fixing ring. They are mainly used to collect rainwater in gardens and are quite common in existing technologies.
[0003] Existing technologies, such as the utility model patent with publication number CN220352946U, disclose a rainwater harvesting device for landscape gardens. This patent uses a water tank and a dispensing box. A connecting pipe is installed on the water tank, vertically connected to it. A rotating plate is rotatably connected inside the connecting pipe. The rotating plate is connected to a top rod inside an outer box. A medicine box is located in the direction of rotation of the top rod. A medicine outlet is opened on one side of the medicine box, and a connecting pipe on one side of the medicine box communicates with the water tank. By installing a rotating plate inside the connecting pipe in the water tank, and connecting the rotating plate to a top head inside the outer box, the top head also rotates when the rotating plate rotates. When the plate rotates, the mandrel follows the rotating plate. When the plate is pushed by rainwater, the mandrel rotates towards the blocking plate, pushing it outwards and away from the chemical inlet. This allows the chemical to be discharged and fall into the water tank, achieving sedimentation and disinfection. This eliminates the need for separate chemical dosing, reducing labor intensity and solving the problem of cumbersome rainwater collection processes where rainwater is first stored and then transferred for sedimentation and filtration, increasing workload.
[0004] In daily use, it has been found that the protective cover installed on the inlet of the existing water collection tank can only block some larger impurities. Smaller impurities can enter the inside of the water collection tank through the protective cover. Over time, the heavier impurities will sink to the bottom of the water collection tank, which will increase the maintenance cost of the water collection tank. Utility Model Content
[0005] The purpose of this invention is to address the shortcomings of existing rainwater collection devices, where the protective cover installed at the inlet of the existing rainwater collection tank can only block some larger impurities, while smaller impurities will sink to the bottom of the collection tank, thus increasing the maintenance cost of the collection tank. Therefore, this invention proposes a garden rainwater collection device.
[0006] To achieve the above objectives, this utility model adopts the following technical solution: It includes a water collection bucket and a connecting structure. A fixing ring is fixedly connected to the upper surface of the water collection bucket. A water collecting tray is fixedly connected to the arc surface of the fixing ring. A protective cover is installed on the arc surface of the fixing ring via the connecting structure. A filter structure is provided on the inner wall of the water collection bucket. The filter structure includes an inclined plate, a filter box, a limiting groove, a water inlet groove, and a connecting groove. The inclined plate is fixedly connected to the water collection bucket. The filter box is fixedly connected to the water collection bucket. The limiting groove, the water inlet groove, and the connecting groove are all located on the water collection bucket. The connecting groove and the water inlet groove are interconnected, the water inlet groove and the limiting groove are interconnected, a connecting pipe is fixedly connected to the inner wall of the inclined plate, the connecting pipe is fixedly connected to the water collection tank, the connecting pipe is fixedly connected to the water filter box, the water filter box and the connecting pipe are interconnected, the connecting pipe and the water collection tank are interconnected, a rotating column is threadedly connected to the arc surface of the water filter box, a water outlet groove is opened on the inner wall of the water filter box, the water outlet groove and the water inlet groove are interconnected, a baffle plate and a connecting block are slidably connected to the inner wall of the limiting groove, the baffle plate and the connecting block are fixedly connected, and a float plate is fixedly connected to the side of the connecting block away from the baffle plate.
[0007] The aforementioned components achieve the following effect: When it rains in the garden and personnel need to collect rainwater using a collection bucket, the rainwater will directly enter the inside of the collection bucket through the protective cover. Since rain is often accompanied by strong winds, these winds will blow leaves and other debris into the collection bucket. The protective cover blocks larger leaves, but smaller debris will still enter the collection bucket. This problem can be solved by a filtration structure. When rainwater enters the collection bucket, it first enters the filter box. During this process, heavier debris will sink to the bottom of the filter box, while clean rainwater will enter the collection bucket through the outlet and inlet. This prevents heavier debris from sinking to the bottom of the collection bucket, thereby reducing the cost of maintaining the collection bucket and increasing its service life.
[0008] Preferably, a limiting rod is fixedly connected to the inner wall of the limiting groove, and the limiting rod is slidably connected to the connecting block.
[0009] The effect achieved by the above components is that the limiting rod can limit the connecting block and prevent the connecting block from becoming misaligned during the sliding process on the inner wall of the limiting groove.
[0010] Preferably, a guide plate is fixedly connected to the upper surface of the baffle plate, and the guide plate is slidably connected to the water inlet trough.
[0011] The effect achieved by the above components is that the guide plate can guide the baffle plate, making it easier for the baffle plate to slide into the inner wall of the connecting groove.
[0012] Preferably, the arc surface of the rotating column is provided with a plurality of anti-slip grooves, and the plurality of anti-slip grooves are evenly provided on the arc surface of the rotating column.
[0013] The effect achieved by the above components is that the anti-slip groove can increase the friction between the personnel's hands and the rotating column, which can prevent the personnel from slipping during the rotation of the rotating column.
[0014] Preferably, the filter box is made of stainless steel.
[0015] The effect achieved by the above components is that the stainless steel box has high strength and good corrosion resistance, which can prevent the surface of the water filter box from rusting during short-term use.
[0016] Preferably, the arc surface of the fixing ring is provided with a connecting structure, which includes three fixing plates and three positioning plates. The three fixing plates are fixedly connected to the fixing ring, and the three positioning plates are fixedly connected to the protective cover. A locking block is fixedly connected to the upper surface of the positioning plate. The inner wall of the fixing plate is provided with two connecting grooves, an installation groove, an auxiliary groove, and a locking groove. A connecting block is slidably connected to the inner wall of the connecting groove. A top plate is fixedly connected to the side of the two connecting blocks that are close to each other. The top plate is slidably connected to the auxiliary groove and the installation groove. A spring is provided between the lower surface of the connecting block and the connecting groove. The two ends of the spring are fixedly connected to the connecting block and the connecting groove, respectively. The installation groove is slidably connected to the positioning plate, the auxiliary groove is slidably connected to the positioning plate, and the locking block is slidably connected to the locking groove.
[0017] The effect achieved by the above components is as follows: when personnel need to install the protective cover on the fixing ring to prevent leaves and other impurities from entering the water collection tank, the personnel can first move the protective cover to align the positioning plate with the mounting groove. Then, the personnel can move the protective cover again to make the positioning plate drive the top plate downward. Then, the personnel can rotate the protective cover to move the locking block closer to the locking groove until the locking block slides into the inner wall of the locking groove. This makes it easier for personnel to install the protective cover on the arc surface of the fixing ring, improving the installation efficiency.
[0018] Preferably, a protective plate is fixedly connected to the upper surface of the top plate, the protective plate is slidably connected to the auxiliary groove, and the protective plate is slidably connected to the mounting groove.
[0019] The effect achieved by the above components is that the protective plate can protect the top plate and the positioning plate, and can prevent the positioning plate from directly contacting the top plate during the process of the positioning plate sliding into the inner wall of the mounting groove.
[0020] In summary, the beneficial effects of this utility model are as follows:
[0021] In this invention, by operating the filtration structure, when people use a water collection bucket to collect rainwater in a garden during rain, the filtration structure can filter out heavier impurities in the rainwater, thereby preventing heavier impurities from settling into the inside of the water collection bucket and increasing the maintenance cost of the water collection bucket.
[0022] In this invention, by operating the auxiliary device, when there are many trees near the water collection bucket and the protective cover needs to be installed on the fixing ring, the connecting structure allows personnel to quickly install the protective cover on the fixing ring, thereby improving the installation efficiency. Attached Figure Description
[0023] Appendix Figure 1 This is a three-dimensional structural schematic diagram of the present invention;
[0024] Appendix Figure 2 This is a schematic diagram of the filter structure of this utility model;
[0025] Appendix Figure 3 This is an appendix to the utility model Figure 2 A schematic diagram of the cross-sectional structure;
[0026] Appendix Figure 4 This is an appendix to the utility model Figure 3 A magnified structural diagram at point A;
[0027] Appendix Figure 5 This is a schematic diagram of the connection structure of this utility model;
[0028] Appendix Figure 6 This is an appendix to the utility model Figure 5 A magnified structural diagram at point B.
[0029] The following are the labels shown in the attached diagram: 1. Water collection bucket; 2. Water collection tray; 3. Filter structure; 301. Inclined plate; 302. Connecting pipe; 303. Filter box; 304. Anti-slip groove; 305. Water inlet groove; 306. Rotating column; 307. Limiting groove; 308. Water baffle; 309. Connecting block; 310. Limiting rod; 311. Float plate; 312. Guide plate; 313. Connecting groove; 314. Water outlet groove; 4. Connecting structure; 401. Fixing plate; 402. Connecting groove; 403. Connecting block; 404. Spring; 405. Top plate; 406. Mounting groove; 407. Protective plate; 408. Auxiliary groove; 409. Slot; 410. Positioning plate; 411. Slot; 5. Protective cover; 6. Fixing ring. Detailed Implementation
[0030] The present invention will be further illustrated below with reference to specific embodiments. It should be understood that these embodiments are for illustrative purposes only and are not intended to limit the scope of the present invention. Furthermore, it should be understood that after reading the teachings of this invention, those skilled in the art can make various alterations or modifications to the present invention, and these equivalent forms also fall within the scope defined by the appended claims.
[0031] Reference Figure 1 As shown, this utility model provides a technical solution: a garden rainwater collection device, including a water collection bucket 1 and a connecting structure 4. A fixing ring 6 is fixedly connected to the upper surface of the water collection bucket 1, and a water collection tray 2 is fixedly connected to the arc surface of the fixing ring 6. A protective cover 5 is installed on the arc surface of the fixing ring 6 through the connecting structure 4. A filter structure 3 is provided on the inner wall of the water collection bucket 1, and a connecting structure 4 is provided on the arc surface of the fixing ring 6.
[0032] The following section will explain the specific settings and functions of its filter structure 3 and connection structure 4.
[0033] Reference Figures 2 to 4As shown in this embodiment: the filter structure 3 includes an inclined plate 301, a filter box 303, a limiting groove 307, a water inlet groove 305, and a connecting groove 313. The inclined plate 301 is fixedly connected to the water collection tank 1, the filter box 303 is fixedly connected to the water collection tank 1, the limiting groove 307 is formed on the water collection tank 1, the water inlet groove 305 is formed on the water collection tank 1, the connecting groove 313 is formed on the water collection tank 1, the connecting groove 313 and the water inlet groove 305 are interconnected, the water inlet groove 305 and the limiting groove 307 are interconnected, and a connecting pipe 302 is fixedly connected to the inner wall of the inclined plate 301. The connecting pipe 302 is connected to the water collection tank 1. The water bucket 1 is fixedly connected, the connecting pipe 302 is fixedly connected to the filter box 303, the filter box 303 and the connecting pipe 302 are interconnected, the connecting pipe 302 is interconnected with the water collection bucket 1, the arc surface of the filter box 303 is threadedly connected to the rotating column 306, the inner wall of the filter box 303 is provided with a water outlet groove 314, the water outlet groove 314 is interconnected with the water inlet groove 305, the inner wall of the limiting groove 307 is slidably connected to the baffle plate 308 and the connecting block 309, the baffle plate 308 and the connecting block 309 are fixedly connected, and the side of the connecting block 309 away from the baffle plate 308 is fixedly connected to the float plate 311. When it rains in the garden, the rainwater needs to be collected in the water collection bucket 1. The rainwater will enter the interior of the water collection bucket 1 directly through the protective cover 5. Since the rain is accompanied by strong winds, the wind will blow leaves and other debris into the interior of the water collection bucket 1. The protective cover 5 blocks larger leaves, but smaller debris will still enter the interior of the water collection bucket 1. This problem can be solved by the filter structure 3. When the rainwater enters the interior of the water collection bucket 1 through the filter structure 3, it will first enter the interior of the filter box 303. During the process of the rainwater entering the filter box 303, the heavier debris will sink to the bottom of the filter box 303. The clean rainwater will enter the interior of the water collection bucket 1 through the outlet and the inlet groove 305, which prevents the heavier debris from sinking to the bottom of the water collection bucket 1, thereby reducing the maintenance cost of the water collection bucket 1 and increasing the service life of the water collection bucket 1. The inner wall of the limiting groove 307 is fixedly connected to the limiting rod 310, and the limiting rod 310 is slidably connected to the connecting block 309. The limiting rod 310 can limit the connecting block 309, preventing it from shifting during sliding within the limiting groove 307. A guide plate 312 is fixedly connected to the upper surface of the baffle plate 308, and the guide plate 312 is slidably connected to the water inlet groove 305. The guide plate 312 guides the baffle plate 308, facilitating its sliding into the inner wall of the connecting groove 313. Several anti-slip grooves 304 are evenly distributed on the arc surface of the rotating column 306. These grooves increase friction between the user's hand and the rotating column 306, preventing slippage during rotation. The filter box 303 is made of stainless steel. Stainless steel has high strength and good corrosion resistance, preventing rust on the surface of the filter box 303 during short-term use.
[0034] Reference Figure 5 and Figure 6 As shown in this embodiment: the connecting structure 4 includes three fixing plates 401 and three positioning plates 410. The three fixing plates 401 are fixedly connected to the fixing ring 6, and the three positioning plates 410 are fixedly connected to the protective cover 5. A locking block 411 is fixedly connected to the upper surface of the positioning plate 410. The inner wall of the fixing plate 401 has two connecting grooves 402, a mounting groove 406, an auxiliary groove 408, and a locking groove 409. A connecting block 403 is slidably connected to the inner wall of the connecting groove 402. The two connecting blocks 406 and 407 are connected to the mounting ring 6. 3. A top plate 405 is fixedly connected to one side of the two sides. The top plate 405 is slidably connected to the auxiliary groove 408 and the mounting groove 406. A spring 404 is provided between the lower surface of the connecting block 403 and the connecting groove 402. The two ends of the spring 404 are fixedly connected to the connecting block 403 and the connecting groove 402 respectively. The mounting groove 406 is slidably connected to the positioning plate 410. The auxiliary groove 408 is slidably connected to the positioning plate 410. The locking block 411 is slidably connected to the locking groove 409. When personnel need to install the protective cover 5 on the fixing ring 6 to prevent leaves and other impurities from entering the water collection tank 1, they can first move the protective cover 5 to align the positioning plate 410 with the mounting groove 406. Then, they can move the protective cover 5 again, causing the positioning plate 410 to move the top plate 405 downwards. Next, they can rotate the protective cover 5 to move the locking block 411 closer to the locking groove 409 until it slides into the inner wall of the groove 409. This allows for easy installation of the protective cover 5 on the arc surface of the fixing ring 6, improving installation efficiency. A protective plate 407 is fixedly connected to the upper surface of the top plate 405. The protective plate 407 is slidably connected to the auxiliary groove 408 and the mounting groove 406. The protective plate 407 protects the top plate 405 and the positioning plate 410, preventing direct contact between them during the sliding process.
[0035] Detailed Instructions for Use: When rainwater is collected using the collection bucket 1, the rainwater flows along the collecting tray 2 through the fixing ring 6 into the inside of the collection bucket 1. Then, the rainwater flows along the inclined plate 301 into the connecting pipe 302, and then through the connecting pipe 302 into the filter box 303. The rainwater first accumulates inside the filter box 303. During this accumulation process, heavier impurities in the rainwater will sink to the bottom of the filter box 303. When the rainwater in the filter box 303... Once the water reaches the height of the outlet trough 314, clean rainwater will pass through the outlet trough 314 and the inlet trough 305 and then enter the water collection tank 1. As the rainwater level inside the water collection tank 1 gradually rises, the float 311 will float on the rainwater surface. Then, the float 311 will drive the connecting block 309 to move upward. The connecting block 309 will slide on the arc surface of the limiting rod 310, where the limiting rod 310 can limit the connecting block 309 and prevent the connecting block 309 from entering the limiting groove 310. During the sliding process of the inner wall of 07, misalignment occurs, and then the connecting block 309 drives the baffle plate 308 to move upward. The baffle plate 308 drives the guide plate 312 to move upward until the guide plate 312 and part of the baffle plate 308 slide into the inner wall of the connecting groove 313. The guide plate 312 can guide the baffle plate 308, making it easier for the baffle plate 308 to slide into the inner wall of the connecting groove 313. When there are many impurities inside the filter box 303 after a long period of use, the operator can rotate the rotating column 306 to rotate it away from the filter box 303. The anti-slip groove 304 on the arc surface of the rotating column 306 can increase the friction between the operator's hand and the rotating column 306, preventing the operator from slipping during the rotation of the rotating column 306, until the rotating column 306 completely detaches from the arc surface of the filter box 303. At this time, the impurities at the bottom of the filter box 303 will flow out from the bottom of the filter box 303.
[0036] Additionally, when personnel need to install the protective cover 5 onto the fixing ring 6, they can first move the protective cover 5. The protective cover 5 will move the three positioning plates 410, and the positioning plates 410 will move the locking blocks 411 until the positioning plates 410 correspond to the mounting groove 406. Then, personnel can move the protective cover 5 again, causing the positioning plates 410 to move closer to the mounting groove 406 until the positioning plates 410 slide into the inner wall of the mounting groove 406. At this time, the positioning plates 410 will abut against the protective plate 407, causing the protective plate 407 to move downwards. The protective plate 407 can protect the top plate 405 and the positioning plates 410, preventing them from becoming stuck during the process of the positioning plates 410 sliding into the inner wall of the mounting groove 406. The positioning plate 410 comes into direct contact with the top plate 405. Then, the protective plate 407 drives the top plate 405 to move downward. The top plate 405 drives the two connecting blocks 403 to move downward. The connecting blocks 403 drive the spring 404 to retract. After the top plate 405 has moved a certain distance, the personnel rotate the protective cover 5. The protective cover 5 drives the three positioning plates 410 to rotate, so that the positioning plates 410 slide into the inner wall of the auxiliary groove 408 until the locking block 411 corresponds to the locking groove 409. At this time, the two springs 404 rebound and drive the top plate 405 to move upward. The top plate 405 drives the protective plate 407 to move upward. The protective plate 407 drives the positioning plate to move upward until the locking block 411 slides into the inner wall of the locking groove 409.
Claims
1. A garden rainwater collection device, comprising a water collection bucket (1) and a connecting structure (4), characterized in that: A fixing ring (6) is fixedly connected to the upper surface of the water collection tank (1). A water collection tray (2) is fixedly connected to the arc surface of the fixing ring (6). A protective cover (5) is installed on the arc surface of the fixing ring (6) by means of a connecting structure (4). A filter structure (3) is provided on the inner wall of the water collection tank (1). The filter structure (3) includes an inclined plate (301), a water filter box (303), a limiting groove (307), a water inlet groove (305), and a connecting groove. (313) The inclined plate (301) is fixedly connected to the water collection tank (1), the filter box (303) is fixedly connected to the water collection tank (1), the limiting groove (307) is opened on the water collection tank (1), the water inlet groove (305) is opened on the water collection tank (1), the connecting groove (313) is opened on the water collection tank (1), the connecting groove (313) and the water inlet groove (305) are interconnected, and the water inlet groove (305) and the limiting groove are connected to each other. (307) They are interconnected. The inner wall of the inclined plate (301) is fixedly connected to a connecting pipe (302). The connecting pipe (302) is fixedly connected to the water collection bucket (1). The connecting pipe (302) is fixedly connected to the water filter box (303). The water filter box (303) and the connecting pipe (302) are interconnected. The connecting pipe (302) is interconnected with the water collection bucket (1). The arc surface of the water filter box (303) is threaded with a rotating column ( 306), the inner wall of the filter box (303) is provided with a water outlet groove (314), the water outlet groove (314) and the water inlet groove (305) are interconnected, the inner wall of the limiting groove (307) is slidably connected with a baffle plate (308) and a connecting block (309), the baffle plate (308) and the connecting block (309) are fixedly connected, and a float plate (311) is fixedly connected to the side of the connecting block (309) away from the baffle plate (308).
2. A garden rainwater harvesting device according to claim 1, characterized in that: The inner wall of the limiting groove (307) is fixedly connected to a limiting rod (310), and the limiting rod (310) is slidably connected to the connecting block (309).
3. A garden rainwater harvesting device according to claim 1, characterized in that: A guide plate (312) is fixedly connected to the upper surface of the baffle plate (308), and the guide plate (312) is slidably connected to the water inlet trough (305).
4. A garden rainwater harvesting device according to claim 1, characterized in that: The rotating column (306) has a plurality of anti-slip grooves (304) on its arc surface, and the plurality of anti-slip grooves (304) are evenly distributed on the arc surface of the rotating column (306).
5. A garden rainwater harvesting device according to claim 1, characterized in that: The water filter box (303) is made of stainless steel.
6. A garden rainwater harvesting device according to claim 1, characterized in that: The fixed ring (6) has a connecting structure (4) on its arc surface. The connecting structure (4) includes three fixed plates (401) and three positioning plates (410). The three fixed plates (401) are fixedly connected to the fixed ring (6), and the three positioning plates (410) are fixedly connected to the protective cover (5). A locking block (411) is fixedly connected to the upper surface of the positioning plate (410). The inner wall of the fixed plate (401) has two connecting grooves (402), an installation groove (406), an auxiliary groove (408), and a locking groove (409). A connecting block (403) is slidably connected to the inner wall of the connecting groove (402). The two locking blocks (401) are connected to the connecting ring (6) and the positioning plate (410) are fixedly connected to the protective cover (5). A top plate (405) is fixedly connected to one side of the connecting blocks (403) that are close to each other. The top plate (405) is slidably connected to the auxiliary groove (408) and the mounting groove (406). A spring (404) is provided between the lower surface of the connecting block (403) and the connecting groove (402). The two ends of the spring (404) are fixedly connected to the connecting block (403) and the connecting groove (402) respectively. The mounting groove (406) is slidably connected to the positioning plate (410). The auxiliary groove (408) is slidably connected to the positioning plate (410). The locking block (411) is slidably connected to the locking groove (409).
7. A garden rainwater harvesting device according to claim 6, characterized in that: A protective plate (407) is fixedly connected to the upper surface of the top plate (405). The protective plate (407) is slidably connected to the auxiliary groove (408) and the mounting groove (406).
Citation Information
Patent Citations
Rainwater collecting equipment for landscape garden
CN220352946U