CN210194742U - Gardens rainwater recovery system - Google Patents
Gardens rainwater recovery system Download PDFInfo
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- CN210194742U CN210194742U CN201920776408.6U CN201920776408U CN210194742U CN 210194742 U CN210194742 U CN 210194742U CN 201920776408 U CN201920776408 U CN 201920776408U CN 210194742 U CN210194742 U CN 210194742U
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02A—TECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
- Y02A20/00—Water conservation; Efficient water supply; Efficient water use
- Y02A20/108—Rainwater harvesting
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Abstract
The utility model discloses a garden rainwater recovery system, which relates to the garden water supply field and aims to solve the problem that the prior recovery system has small rainwater collection capacity, and has the technical key points of comprising a garden greenbelt, a water collection auxiliary groove sunken and arranged on the surface of the garden greenbelt, a water collection well arranged on the bottom wall of the water collection auxiliary groove, a plurality of rainwater collection grooves arranged on the surface of the garden greenbelt, a water delivery channel arranged on the surface of the garden greenbelt, a water collection channel arranged on the surface of the garden greenbelt, a mud-proof component arranged at the inlet of the water collection well, a water storage bin arranged under the greenbelt, a water well arranged on the surface of the garden greenbelt and extending downwards, a water replenishing channel and a water pump arranged between the water well and the water storage bin, a first liquid level sensor and a second liquid level sensor arranged in the water well and an automatic controller, the utility model can increase the rainwater collection capacity, and meanwhile, the influence of the sludge on rainwater collection is avoided.
Description
Technical Field
The utility model relates to a gardens water supply field, more specifically say, it relates to a gardens rainwater recovery system.
Background
Along with the development of society, the living standard of people improves, and environmental problem also is more and more serious, and there is the serious problem of lack of water in many places, and the gardens greenery patches is in the construction process, need irrigate the plant, to avoid the waste of water resource, carries out the recycle to the rainwater and is solving the water resource shortage very effective method.
The prior Chinese patent with the publication number of CN206128258U discloses a garden greenbelt rainwater recovery system, which comprises an urban greenbelt, a runoff rainwater recovery well, a rainwater recovery pipeline, a seepage well, a water outlet device, a water pump and a rainwater recycling pipeline.
But this utility model's an in-process catchments, the work of catchmenting is only gone on by the well head of runoff rainwater recovery well, and the rainwater collection volume is little, and sets up a plurality of runoff rainwater recovery wells, will produce the destruction to the earth's surface in city green space.
SUMMERY OF THE UTILITY MODEL
Not enough to prior art exists, the utility model aims to provide a gardens rainwater recovery system can increase the collection volume of rainwater, avoids the influence that silt was collected the rainwater simultaneously.
In order to achieve the above purpose, the utility model provides a following technical scheme:
a garden rainwater recovery system comprises a garden greenbelt, a water collecting auxiliary groove sunken on the surface of the garden greenbelt, a water collecting well arranged on the bottom wall of the water collecting auxiliary groove and extending to the underground of the garden greenbelt, a plurality of rainwater collecting grooves arranged on the surface of the garden greenbelt, a water conveying channel arranged on the surface of the garden greenbelt and communicated with the rainwater collecting grooves, and a water collecting channel arranged on the surface of the garden greenbelt and communicated with the water outlet ends of the water conveying channels and extending to the water inlet end of the water collecting well, wherein the side walls of the rainwater collecting grooves, the water conveying channel and the water collecting channel contacted with rainwater are provided with impermeable layers, the garden rainwater recovery system further comprises a mud-proof component arranged at the inlet of the water collecting well, a water storage bin arranged far away from the underground of the greenbelt and communicated with the bottom end of the water collecting well, a water well arranged on the surface of the garden greenbelt and extending downwards, a water supplementing channel and a water pump arranged between the water using well, a first liquid level sensor and a second liquid level And the automatic controller senses signals and controls the water pump to work, and the first liquid level sensor is positioned above the second liquid level sensor.
By adopting the technical scheme, the arrangement of the rainwater collecting tank increases the position point for collecting rainwater, rainwater can be collected in the water collecting channel through the water conveying channel, the arrangement of the water collecting well can be reduced, the earth surface far away from greenbelt can be protected, the water conveying channel and the water collecting channel can also collect rainwater while conveying the rainwater, the collecting amount of the rainwater is increased, the arrangement of the water collecting auxiliary channel ensures that the water inlet end of the water collecting well is lower than that of the rainwater collecting tank, the water conveying channel and the water collecting channel, the rainwater can rapidly enter the water collecting well under the action of gravity, the water collecting efficiency is improved, the mud-proof component prevents soil from splashing to block the water collecting well in the process of increasing the water collecting amount, the first liquid level sensor and the second liquid level sensor are arranged simultaneously, a water pump can be used for inputting proper amount of water into the water collecting well, the utilization rate of the rainwater in the water storage bin is improved, and the utility model can, but also can avoid the influence of the sludge on the rainwater collection.
The utility model discloses a further set up to, prevent that mud subassembly is including setting up the filter frame and setting up the filter screen in the filter frame of bearing block upper surface at bearing block upper surface in the end wall of a well water intaking, still including setting up the fender mud ring board on the well water intaking top and setting up in the relative groove of stepping down of fender mud ring board bottom and water collection channel, the notch that highly is higher than the collection water and assists the groove of fender mud ring board.
Through taking above-mentioned technical scheme, the filter screen filters the rainwater, avoids debris to get into the water storage storehouse, and simultaneously, fender mud ring board can avoid the mud that splashes to get into the water inlet of sump pit, and the setting of the groove of stepping down moreover can be sheltered from the roof department of water collecting channel play water end when not influencing the transport of water collecting channel to the rainwater, avoids the splash-in of earth.
The utility model discloses a further set up as, the underground of gardens greenery patches is provided with communicating pipe of water well, the underground of gardens greenery patches is provided with keeps away from communicating pipe with the communicating anti-infiltration well of water well one end, the top of anti-infiltration well is provided with the communicating balanced pipe of earth's surface air, be provided with the infiltration piece that is used for automatic moisturizing in to soil in the anti-infiltration well.
By adopting the technical scheme, the communicating vessel principle is utilized, so that rainwater with the same liquid level height as a water well can be reserved in the reverse osmosis well, and then rainwater can be provided for the water seepage piece, and the water seepage piece can provide moisture for plants in a garden green land in daily life, so that the normal growth of the plants is ensured.
The utility model discloses a further set up to, infiltration spare is including setting up in gardens greenery patches underground and the communicating infiltration pipe in anti-infiltration well wall of a well top, setting up the infiltration hole on the infiltration pipe wall, pack the cotton and set up in anti-infiltration well and the communicating water guide silver of cotton that absorbs water, the infiltration pipe is higher than first displacement inductor.
Through taking above-mentioned technical scheme, when the soil moisture of gardens greenery patches is low excessively, utilize the principle of osmotic pressure, water in the cotton that absorbs water can be by infiltration hole infiltration to soil in, and simultaneously, after the cotton interior moisture that absorbs water has reduced, the water guide silver can be with in the cotton that absorbs water is poured into to the moisture in the anti-infiltration well, and then guarantee the cotton moisture that absorbs water, realize the real-time anti-infiltration to soil, and simultaneously, the infiltration pipe is higher than first displacement inductor, can guarantee that the water level in the anti-infiltration well can not be higher than the infiltration pipe, avoid the rainwater to gush into the infiltration pipe, cause the water that soil transported too much, influence the growth of plant.
The utility model discloses a further set up to, be provided with the connecting ring board on the interior rampart of fender mud ring board, the wall of a well laminating setting of connecting ring board and sump pit, the top butt of fender mud ring board and sump pit, the connecting ring board is connected with the last fixed surface who crosses the filter frame.
Through taking above-mentioned technical scheme, fender mud ring board is connected with the filter frame, conveniently takes out the filter screen, clears up the filter screen, receives the limiting displacement of connecting ring board and the sump pit wall of a well moreover, can make fender mud ring board and filter frame setting on the sump pit.
The utility model discloses a further set up to, the section shape of the vertical direction of filter screen is sawtooth pattern.
By adopting the technical scheme, the rainwater passes through the filter screens on different horizontal planes, the rainwater is prevented from being sealed at the water inlet end of the water collecting well when the rainwater amount is overlarge, the air pressure in the water collecting well is enabled to be larger than the atmospheric pressure, the rainwater cannot enter the water collecting well due to the influence of air pressure difference.
The utility model discloses a further set up to, the play water end in infiltration hole is provided with keeps off native net.
Through adopting above-mentioned technical scheme, avoid the soil in gardens greenery patches to get into the infiltration hole in a large number, cause the caking of infiltration hole department soil, block up the infiltration hole.
The utility model discloses a further set up as, the top lateral wall of rainwater collecting vat, water delivery way and water collecting way all is provided with the fender mud strip that upwards extends.
Through taking above-mentioned technical scheme, at rainwater collecting vat, water delivery way and water collecting way carry out the in-process of catchmenting and carrying the rainwater, avoid gardens greenery patches earth on the earth's surface to get into rainwater collecting vat, water delivery way and water collecting way in, cause the muddy of rainwater, and then avoid influencing the smooth and easy transport of rainwater and increaseing the working strength that the sump pit intake end prevents mud subassembly.
To sum up, the utility model discloses following beneficial effect has:
1. the utility model utilizes the rainwater collecting tank, the water conveying channel and the water collecting channel to collect rainwater in multiple points, thereby increasing the collecting amount of rainwater;
2. the utility model discloses set up the anti-seepage well and ooze water spare, utilize the linker principle, make and to reserve in the anti-seepage well and with the rainwater of liquid level height such as well, and then can provide the rainwater for the piece that oozes water, make the piece that oozes water can provide moisture for the plant in gardens greenery patches when daily, and then guarantee the normal growth of plant.
Drawings
Fig. 1 is a partial sectional view of the structure of the present invention.
Fig. 2 is an enlarged view of a point a in fig. 1.
Fig. 3 is an enlarged view at B in fig. 1.
Reference numerals: 1. garden greenbelts; 2. a water collecting auxiliary tank; 3. a water collecting well; 4. a rainwater collection tank; 5. a water delivery channel; 6. a water collecting channel; 7. an impermeable layer; 8. a mud-guard assembly; 9. a water storage bin; 10. using a water well; 11. a water replenishing pipeline; 12. a water pump; 13. a first liquid level sensor; 14. a second liquid level sensor; 15. an automatic controller; 16. a bearing block; 17. a filter frame; 18. a filter screen; 19. a mud guard ring plate; 20. a yielding groove; 21. a communicating pipe; 22. reverse osmosis wells; 23. a balance tube; 24. a water seepage part; 25. a water seepage pipe; 26. a water seepage hole; 27. absorbent cotton; 28. a water guide cotton sliver; 29. a connecting ring plate; 30. a soil blocking net; 31. and (6) a mud guard strip.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings.
Example (b):
the utility model discloses a garden rainwater recovery system, as shown in figures 1 and 2, comprising a garden greenbelt 1, a water collecting auxiliary groove 2 which is concavely arranged on the earth surface of the garden greenbelt 1, a water collecting well 3 which is arranged on the bottom wall of the water collecting auxiliary groove 2 and extends to the underground of the garden greenbelt 1, a plurality of rainwater collecting grooves 4 which are arranged on the earth surface of the garden greenbelt 1, a water conveying channel 5 which is arranged on the earth surface of the garden greenbelt 1 and is communicated with the rainwater collecting grooves 4, and a water collecting channel 6 which is arranged on the earth surface of the garden greenbelt 1, is communicated with the water outlet ends of the water conveying channels 5 and extends to the water inlet end of the water collecting well 3, when raining, the rainwater 4 and the water collecting well 3 collect the rainwater at a plurality of position points of the garden greenbelt 1, the rainwater collected by the water collecting well 3 directly enters the water collecting well 3, the rainwater collected by the rainwater 4 is collected in the water collecting channel 6 along the water, simultaneously, in order to avoid at the in-process of catchmenting and water delivery, the rainwater takes place the infiltration loss and receives the influence of splash earth, the utility model discloses in, rainwater collecting vat 4, water delivery way 5 and water collection way 6 all are provided with barrier 7 with the lateral wall of rainwater contact, and rainwater collecting vat 4, water delivery way 5 and water collection way 6's top lateral wall all is provided with the fender mud strip 31 that upwards extends, and then the utility model discloses can the greatly increased ponding volume.
As shown in fig. 1 and 2, the garden rainwater recovery system further comprises a mud-proof assembly 8 disposed at an inlet of the water collecting well 3, a water storage bin 9 disposed far away from the ground of the green land and communicated with the bottom end of the water collecting well 3, a water using well 10 disposed on the ground of the garden green land 1 and extending downwards, a water replenishing pipeline 11 and a water pump 12 disposed between the water using well 10 and the water storage bin 9, a first liquid level sensor 13 and a second liquid level sensor 14 disposed in the water using well 10, and an automatic controller 15 for receiving signals of the first liquid level sensor 13 and the second liquid level sensor and controlling the operation of the water pump 12, wherein the first liquid level sensor 13 is located above the second liquid level sensor 14; when rainwater flows to the water inlet end of the water collecting well 3 and then enters the water storage bin 9, the mud-proof assembly 8 can prevent mud from entering the water storage bin 9, then the water pump 12 can pump part of water into the water using well 10 under the action of the automatic controller 15 according to the use requirement, the water level in the water using well 10 is located between the first liquid level sensor 13 and the second liquid level sensor 14, and the rainwater cannot be wasted while sufficient water consumption is guaranteed.
As shown in fig. 1 and 2, the mud-proof assembly 8 comprises a bearing block 16 arranged on the inner wall of the water inlet end of the water collecting well 3, a filter frame 17 lapped on the upper surface of the bearing block 16, a filter screen 18 arranged in the filter frame 17, a mud-blocking ring plate 19 arranged at the top end of the water collecting well 3, and a abdicating groove 20 arranged at the bottom end of the mud-blocking ring plate 19 and opposite to the water collecting channel 6, wherein the cross section of the filter screen 18 in the vertical direction is in a sawtooth shape, the mud-blocking ring plate 19 is higher than the notch of the water collecting auxiliary groove 2, when the rainwater flows into the water collecting well 3, the filter screen 18 filters the rainwater to prevent impurities from entering the water storage bin 9, meanwhile, the mud blocking ring plate 19 can prevent splashed mud from entering the water inlet of the water collecting well 3, the arrangement of the abdicating groove 20 does not affect the conveying of the rainwater by the water collecting channel 6, and can shield the top wall of the water outlet end of the water collecting channel 6, so as to avoid the splashing of soil; simultaneously in order to facilitate taking out the clearance of filter screen 18, the utility model discloses in, be provided with the connecting ring board 29 on the inner ring wall of fender mud ring board 19, the wall of a well laminating setting of connecting ring board 29 and water-collecting well 3, the top butt of fender mud ring board 19 and water-collecting well 3, connecting ring board 29 is connected with the last fixed surface who crosses filter frame 17, when needing to clear up filter screen 18, directly lifts up and keeps off mud ring board 19, can take out water-collecting well 3 with filter screen 18 under the effect of connecting ring board 29.
As shown in fig. 1, a communicating pipe 21 communicated with the water using well 10 is arranged underground of the garden green land 1, a reverse osmosis well 22 communicated with one end of the communicating pipe 21 far away from the water using well 10 is arranged underground of the garden green land 1, a balance pipe 23 communicated with the surface air is arranged at the top end of the reverse osmosis well 22, and a water seepage piece 24 for automatically replenishing water to the soil is arranged in the reverse osmosis well 22; when storing the rainwater in the water well 10 for later use, under the effect of communicating vessel principle, the rainwater can enter along communicating pipe 21 in reverse osmosis well 22, makes the rainwater supply water to the soil in gardens greenery patches 1 in real time through infiltration piece 24, guarantees the daily growth of plant.
As shown in fig. 1 and 3, the water seepage member 24 comprises a water seepage pipe 25 arranged under the garden green land 1 and communicated with the top end of the well wall of the reverse seepage well 22, a water seepage hole 26 arranged on the pipe wall of the water seepage pipe 25, absorbent cotton 27 filled in the water seepage pipe 25 and a water guide cotton strip 28 arranged in the reverse seepage well 22 and communicated with the absorbent cotton 27, wherein the water seepage pipe 25 is higher than the first displacement sensor, and the water outlet end of the water seepage hole 26 is provided with a soil retaining net 30; the water of the reverse osmosis well 22 is guided into the absorbent cotton 27 through the water guide cotton strip 28, when the soil moisture of the garden green land 1 is too low, the water in the absorbent cotton 27 can permeate into the soil through the water seepage holes 26 by utilizing the principle of osmotic pressure, and meanwhile, after the moisture in the absorbent cotton 27 is reduced, the water guide cotton strip 28 can pour the moisture in the reverse osmosis well 22 into the absorbent cotton 27, so that the moisture in the absorbent cotton 27 is ensured.
The working process is as follows:
when raining, the rainwater collecting groove 4 and the water collecting well 3 collect rainwater at a plurality of positions of the garden greenbelt 1, the rainwater collected by the water collecting well 3 directly enters the water collecting well 3, the rainwater collected by the rainwater collecting groove 4 is collected into the water collecting channel 6 along the water conveying channel 5 and then enters the water collecting well 3, meanwhile, the filtering screen 18 filters the rainwater to prevent sundries from entering the water storage bin 9, the mud blocking ring plate 19 can prevent splashed mud from entering the water inlet of the water collecting well 3, then the water pump 12 pumps part of water into the water using well 10 for standby under the action of the automatic controller 15 according to the use requirement, the water level in the water using well 10 is positioned between the first liquid level sensor 13 and the second liquid level sensor 14, so that sufficient water consumption is ensured, no rainwater is wasted, and the water in the water using well 10 can be supplied to the garden greenbelt 1 in real time through the reverse osmosis well 22 and the water osmosis piece 24, to ensure the normal growth of the plant.
The present embodiment is only for explaining the present invention, and it is not limited to the present invention, and those skilled in the art can make modifications to the present embodiment without inventive contribution as required after reading the present specification, but all of them are protected by patent laws within the scope of the claims of the present invention.
Claims (8)
1. The utility model provides a gardens rainwater recovery system which characterized in that: the garden greenbelt water collecting system comprises a garden greenbelt (1), a water collecting auxiliary groove (2) which is arranged on the ground surface of the garden greenbelt (1) in a sunken mode, a water collecting well (3) which is arranged on the bottom wall of the water collecting auxiliary groove (2) and extends to the underground of the garden greenbelt (1), a plurality of rainwater collecting tanks (4) which are arranged on the ground surface of the garden greenbelt (1), water conveying channels (5) which are arranged on the ground surface of the garden greenbelt (1) and communicated with the rainwater collecting tanks (4), and water collecting channels (6) which are arranged on the ground surface of the garden greenbelt (1), are communicated with the water outlet ends of the water conveying channels (5) and extend to the water inlet end of the water collecting well (3), wherein impermeable layers (7) are arranged on the side walls of the rainwater (4), the water conveying channels (5) and the water collecting channels (6) which are contacted with the rainwater, and further comprises a mud preventing component (8) arranged at the inlet of the water collecting, The water-saving system comprises a water-using well (10) which is arranged on the ground surface of a garden green land (1) and extends downwards, a water-supplementing pipeline (11) and a water pump (12) which are arranged between the water-using well (10) and a water storage bin (9), a first liquid level sensor (13) and a second liquid level sensor (14) which are arranged in the water-using well (10), and an automatic controller (15) which is used for receiving a first liquid level sensor (13) and a second liquid level sensor signal and controlling the water pump (12) to work, wherein the first liquid level sensor (13) is positioned above the second liquid level sensor (14).
2. The garden rainwater recovery system according to claim 1, wherein: prevent mud subassembly (8) including setting up bearing block (16) on the end wall of a well in sump pit (3) are intake, overlap joint at filter frame (17) of bearing block (16) upper surface and set up filter screen (18) in filter frame (17), still including setting up fender mud ring board (19) and the setting on fender mud ring board (19) top of sump pit (3) and setting up and stepping down groove (20) relative with water collecting channel (6) in fender mud ring board (19) bottom, the notch that highly is higher than catchment auxiliary tank (2) of fender mud ring board (19).
3. The garden rainwater recovery system according to claim 1, wherein: the underground of gardens greenery patches (1) is provided with communicating pipe (21) with water well (10) communicating, the underground of gardens greenery patches (1) is provided with keeps away from communicating pipe (21) with communicating pipe (22) with communicating reverse osmosis well (10) one end communicating, the top of reverse osmosis well (22) is provided with communicating balance pipe (23) of earth's surface air, be provided with in reverse osmosis well (22) and be used for automatic infiltration spare (24) to moisturizing in the soil.
4. The garden rainwater recovery system according to claim 3, wherein: the water seepage piece (24) comprises a water seepage pipe (25) arranged underground the garden greenbelt (1) and communicated with the top end of the well wall of the reverse seepage well (22), a water seepage hole (26) arranged on the pipe wall of the water seepage pipe (25), absorbent cotton (27) filled in the water seepage pipe (25) and a water guide cotton strip (28) arranged in the reverse seepage well (22) and communicated with the absorbent cotton (27), wherein the water seepage pipe (25) is higher than the first displacement sensor.
5. The garden rainwater recovery system according to claim 2, wherein: be provided with on the interior rampart of fender mud ring board (19) and connect ring board (29), connect ring board (29) and the wall of a well laminating setting of sump pit (3), the top butt of fender mud ring board (19) and sump pit (3), connect ring board (29) and the last fixed surface who filters frame (17) and be connected.
6. The garden rainwater recovery system according to claim 2, wherein: the cross section of the filter screen (18) in the vertical direction is in a sawtooth shape.
7. The gardens rainwater recovery system according to claim 4, characterized in that: and the water outlet end of the water seepage hole (26) is provided with a soil retaining net (30).
8. The garden rainwater recovery system according to claim 1, wherein: and mud blocking strips (31) extending upwards are arranged on the side walls of the top ends of the rainwater collecting tank (4), the water conveying channel (5) and the water collecting channel (6).
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CN201920776408.6U CN210194742U (en) | 2019-05-27 | 2019-05-27 | Gardens rainwater recovery system |
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CN201920776408.6U CN210194742U (en) | 2019-05-27 | 2019-05-27 | Gardens rainwater recovery system |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
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CN111576550A (en) * | 2020-06-10 | 2020-08-25 | 广东金聪建设工程有限公司 | Rainwater recovery system on building roof |
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2019
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN111576550A (en) * | 2020-06-10 | 2020-08-25 | 广东金聪建设工程有限公司 | Rainwater recovery system on building roof |
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