CN210134502U - Tubular water storage device - Google Patents

Tubular water storage device Download PDF

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Publication number
CN210134502U
CN210134502U CN201920242997.XU CN201920242997U CN210134502U CN 210134502 U CN210134502 U CN 210134502U CN 201920242997 U CN201920242997 U CN 201920242997U CN 210134502 U CN210134502 U CN 210134502U
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storage device
water storage
drain pipe
rainwater
filler
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CN201920242997.XU
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Chinese (zh)
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邱蓉
熊艳
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SHANGHAI JOHNSON ARCHITECTURAL & ENGINEERING DESIGN CONSULTANTS Ltd
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SHANGHAI JOHNSON ARCHITECTURAL & ENGINEERING DESIGN CONSULTANTS Ltd
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Abstract

The utility model discloses a tubular water storage device, include: outdoor plastic drain pipe, filler and protective layer; more than one outdoor plastic drain pipe is embedded in the filler to form a communicated pipeline, and the side wall of the outdoor plastic drain pipe is provided with a hole, so that the outdoor plastic drain pipe is communicated with the filler gap of the filler; the outer side of the filler is wrapped with a protective layer. The utility model discloses a rainwater collection device unitization and modularization, the maintenance, maintenance and the change of each tubulose water storage device of also being convenient for simultaneously, the later maintenance of being convenient for and maintenance cost are low, and rainwater collection device is applicable to the sponge city construction of any big or small area. The practicability is strong, the application range is wider, the environment is protected, the cost is low, and the realization is easy.

Description

Tubular water storage device
Technical Field
The utility model relates to a rainwater is collected and is utilized technical field, indicates especially a tubular water storage device.
Background
At present, the country advocates sponge city construction vigorously and encourages the development of green buildings. And the rainwater collection device is the most important thing in sponge city construction. The existing rainwater water storage device has multiple forms and comprises a concrete reservoir, an arched water storage module, a rectangular water storage module and the like. However, the water storage devices have all the disadvantages of large space requirement and low construction speed in the concrete pool, and are difficult to apply to small public places and communities with full-paved warehouses (because the paving space is limited), and some plastic module devices are expensive and difficult to obtain materials. In view of the guidance of national policies, a water storage device which is simple to assemble, wide in application range and convenient to draw materials is needed in the field to solve the problem of rainwater collection in sponge city construction.
Disclosure of Invention
The utility model aims at providing a tubulose water storage device to realize the nimble of rainwater collection device installation, simple and convenient, the maintenance, maintenance and the change of each this tubulose water storage device of also being convenient for simultaneously, the later maintenance of being convenient for, maintenance cost are low, this rainwater collection device is applicable to the sponge city construction of any big or small area, and the practicality is strong, application scope is wider, green, with low costs and easily realize.
The utility model provides a preparation mode as follows:
a tubular water storage device comprising:
outdoor plastic drain pipe, filler and protective layer;
more than one outdoor plastic drain pipe is embedded in the filler and forms a communicated pipeline, and the side wall of the outdoor plastic drain pipe is provided with a through hole so that the outdoor plastic drain pipe is communicated with the filler gap of the filler;
the protective layer is wrapped on the outer side of the filler.
In the technical scheme, the underground water state of the nature is simulated through the water-water exchange between the outdoor plastic drain pipe and the filler, the collected rainwater is treated with certain water quality, and the structural integrity and the service life of the utility model are ensured by the arrangement of the protective layer; the modularized rainwater collecting device is realized, the maintenance, the repair and the replacement of each tubular water storage device are facilitated, the later maintenance is facilitated, and the maintenance cost is low. The rainwater collecting device can be suitable for sponge city construction with any size and any area and any burial depth, such as a residential green belt, a commercial green belt, an activity square, even a road and the like. Because the utility model discloses a tubulose water storage device can partially transport again to the scene after prefabricating in batches and lay to can combine planning map in earlier stage to design and mat formation, save the site operation time greatly, avoid traffic jam, raise dust that the work progress arouses, reduce the site operation worker because of the abominable disease that causes of construction environment (like the too heavy dust that causes pneumoconiosis, eye disease etc.) and uncomfortable (the dust is too heavy leads to breathing not smooth, coughs, eye disease etc.). Of course, this tubulose water storage device also can the site operation, to sum up can know, the utility model discloses a rainwater collection device unitization and modularization, it is convenient to maintain and maintain, and the shape is various, and the practicality is strong and application scope is wider, and the efficiency of construction is high, green, with low costs and easily realization.
Further preferably, the outside of the filler is wrapped with an impermeable layer and forms a reservoir to prevent water in the reservoir from seeping out; the cistern is equipped with water inlet, delivery port, gap and outlet.
Among this technical scheme, avoid spilling of rainwater through the barrier layer for the scope that this tubulose water storage device is suitable for is wider, and applicable in some communities or urban construction that can not seep water, like areas such as underground garage, bicycle lane, activity square. And the water seepage phenomenon does not exist on the ground in the area passing through the tubular water storage device, so that the dryness of the ground is ensured, and the water accumulation phenomenon does not exist.
Further preferably, the water inlet pipe forming the water inlet is connected with the water outlet pipe forming the water outlet in a socket-and-spigot manner.
In the technical scheme, the different water storage units can be communicated in a socket mode, so that a large-scale water storage system is formed, and the tubular water storage device is not only suitable for collecting rainwater in a small area region, but also suitable for collecting rainwater in a large area region.
Further preferably, a planting soil layer is arranged on the upper layer of the tubular water storage device.
In the technical scheme, the tubular water storage device can collect rainwater in rainy days and release and store rainwater in sunny days to keep plants in the area and provide water sources.
Further preferably, the reservoir is provided with an inspection well.
In the technical scheme, the sediment is deposited in the bottom falling area of the inspection well through measures such as pipeline slope descending, the tubular water storage device can be regularly cleaned and maintained through the inspection well, the problem of clearing the sediment of the water storage device is solved, and the maintenance personnel can not carry out pipeline maintenance without the purpose.
Further preferably, the reservoir is provided with an overflow pipe.
In this technical scheme, through the overflow pipe with the unable rainwater direction municipal pipeline of in time retrieving of this tubulose water storage device to effectively avoid the bad phenomenon of ponding to appear in the ground.
Further preferably, the ring stiffness of the outdoor plastic drain pipe is above 4 KN.
In the technical scheme, the ring rigidity of the outdoor plastic drain pipe is set differently according to the upper condition of the place where the tubular water storage device is buried, so that the requirement is met and the cost is reduced. When the tubular water storage device needs to be arranged below a traffic lane, the ring rigidity of the outdoor plastic drain pipe is not less than 8KN after the hole is formed; when the tubular water storage device is arranged on places such as a bicycle lane, a movable square and the like, the ring rigidity of the outdoor plastic drain pipe is not less than 6KN after the hole is formed; if the tubular water storage device is arranged on greenbelts, lawns and other places, the ring rigidity of the outdoor plastic drain pipe is not less than 4KN after the hole is formed.
Further preferably, the tubular water storage device is provided with a liquid level sensor, and two liquid level sensing points are sequentially arranged along the height direction of the tubular water storage device.
In the technical scheme, the highest alarm liquid level and the lowest liquid level of the tubular water storage device are detected through the liquid level sensor, a rear-end rainwater emptying pump set and a rainwater utilization pump set can be effectively controlled and monitored, and the running condition of the device, even a sponge rainwater drainage system, is judged.
Further preferably, a plurality of outdoor plastic drain pipes are arranged in an array, and one horizontal drain pipe is communicated with and correspondingly provided with a plurality of vertical drain pipes; the horizontal drainage pipe arranged close to the starting end is used as a water separator to balance the flow rate of rainwater, preliminarily precipitate silt in the rainwater and distribute the rainwater to a plurality of vertical drainage pipes communicated with the rainwater for storage; the horizontal drain pipe close to the tail end is used as a water collector and collects rainwater of a plurality of vertical drain pipes communicated with the horizontal drain pipe.
Among this technical scheme, the setting through the outdoor plastics drain pipe that is the array and arranges improves this tubulose water storage device's water storage capacity and circulation, improves this tubulose water storage device's rainwater collection efficiency. And the arrangement of the transverse drain pipe arranged at the tail end is convenient for the emptying or the collection and the utilization of the water pump arranged at the rear end of the tubular water storage device.
Further preferably, the vertical drain pipe and/or the horizontal drain pipe are formed by splicing a plurality of sub-pipelines connected in a socket manner.
Among this technical scheme, realize this tubulose water storage device's the connection of outdoor plastics drain pipe through the socket joint mode, and then realize laying by a large scale, the socket joint mode is simple and easily realize. And the arrangement of the plurality of outdoor plastic drain pipes improves the water storage capacity and the circulation of the tubular water storage device, and improves the rainwater collection efficiency of the tubular water storage device.
The utility model provides a pair of tubular water storage device can bring following at least one beneficial effect:
1. in the utility model, the underground water state of the nature is simulated through the water exchange between the outdoor plastic drain pipe and the filler, the collected rainwater is treated with certain water quality, and the structural integrity and the service life of the utility model are ensured by the arrangement of the protective layer; the device has the advantages that the modularization and modularization of the rainwater collecting device are realized, the maintenance, the repair and the replacement of each tubular water storage device are facilitated, the later maintenance is facilitated, the maintenance cost is low, and the rainwater collecting device can be suitable for sponge city construction with any size and any area and any buried depth, such as a residential green belt, a commercial green belt, an activity square, even a road and the like. Because the utility model discloses a tubulose water storage device can partially transport again to the scene after prefabricating in batches and lay, and can combine planning map in earlier stage to design and mat formation, has saved the site operation time greatly, avoids traffic jam, raise dust that the work progress arouses, reduces the disease (like the too heavy pneumoconiosis that easily causes of raise dust, eye disease etc.) and the discomfort that causes of site operation worker because of the construction environment is abominable (the dust is too heavy leads to breathing not smooth, coughs, eye disease etc.). Of course, this tubulose water storage device also can the site operation, to sum up can know, the utility model discloses a rainwater collection device unitization and modularization, it is convenient to maintain and maintain, and the shape is various, and the practicality is strong and application scope is wider, and the efficiency of construction is high, green, with low costs and easily realization.
2. The utility model discloses in, avoid spilling of rainwater through the barrier layer for the scope that this tubulose water storage device is suitable for is wider, applicable in some communities or the urban construction that can not seep water, like region such as underground garage, bicycle lane, activity square. And the regional ground through this tubulose water storage device does not have the infiltration phenomenon, has guaranteed the aridity on ground, does not have the ponding phenomenon.
3. The utility model discloses in, survey this tubulose water storage device's the highest liquid level of reporting to the police, minimum liquid level through level sensor, can utilize the pump package to control and systematic monitoring rear end rainwater evacuation pump package, rainwater effectively to judge the device or even sponge rainwater drainage system's operational aspect.
Drawings
The above characteristics, technical features, advantages and realisations of the tubular water storage device will be further explained in a clearly understandable way, with reference to the following description of preferred embodiments, with reference to the attached drawings.
FIG. 1 is a schematic cross-sectional view of one embodiment of a tubular water storage device of the present invention;
fig. 2 is a schematic structural view of a planar layout of an embodiment of the tubular water storage device of the present invention.
The reference numbers illustrate:
1. the method comprises the steps of inspection well, 2 planting soil layer, 3 distributing two films, 4 filling, 5 arranging outdoor plastic drain pipe, 51 sub-pipeline, 6 plain soil leveling layer, 7 reinforced concrete bottom plate, 8 liquid level sensor, 91 water inlet pipeline and 92 water outlet pipeline.
Detailed Description
In order to more clearly illustrate embodiments of the present invention or technical solutions in the prior art, specific embodiments of the present invention will be described below with reference to the accompanying drawings. It is obvious that the drawings in the following description are only examples of the invention, and that for a person skilled in the art, other drawings and embodiments can be obtained from these drawings without inventive effort.
For the sake of simplicity, only the parts relevant to the present invention are schematically shown in the drawings, and they do not represent the actual structure as a product. In addition, for simplicity and clarity of understanding, only one of the components having the same structure or function is schematically illustrated or labeled in some of the drawings. In this document, "one" means not only "only one" but also a case of "more than one". In this context, it is to be understood that, unless otherwise explicitly stated or limited, the terms "mounted," "connected," and "connected" are to be construed broadly, e.g., as meaning either a fixed connection, a removable connection, or an integral connection; can be mechanically or electrically connected; they may be connected directly or indirectly through intervening media, or they may be interconnected between two elements. The specific meaning of the above terms in the present invention can be understood in specific cases to those skilled in the art. In this document, upper, lower, left, right, front and rear refer to upper, lower, left, right, front and rear of the described figures and do not necessarily represent actual reality.
In one embodiment, as shown in fig. 1 and 2, a tubular water storage device comprises: an outdoor plastic drain pipe 5, a filler 4 and a protective layer; more than one outdoor plastic drain pipe 5 is embedded in the filler 4 to form a communicating pipeline, and the side wall of the outdoor plastic drain pipe 5 is provided with a through hole, so that the outdoor plastic drain pipe 5 is communicated with the filler gap of the filler 4; the outer side of the filler 4 is wrapped with a protective layer. In practical application, the underground water state of the nature is simulated through water-water exchange between the outdoor plastic drain pipe 5 and the filler 4, and certain water quality treatment is carried out on the collected rainwater; the arrangement of the protective layer ensures the structural integrity and the service life of the utility model; the device has the advantages that the modularization and modularization of the rainwater collecting device are realized, the maintenance, the repair and the replacement of each tubular water storage device are facilitated, the later maintenance is facilitated, the maintenance cost is low, and the rainwater collecting device can be suitable for sponge city construction with any size and any area and any buried depth, such as a residential green belt, a commercial green belt, an activity square, even roads and the like. It is worth to be noted that when the tubular water storage device is arranged in a cell, the tubular water storage device can be communicated with a rainwater collecting pipeline of the cell, so that the rainwater in the cell can be collected; when the tubular water storage device is arranged on a square, the tubular water storage device can be communicated with a rainwater collecting pipeline of the square, so that the collection of the square rainwater is realized; this tubulose water storage device sets up when the road, can collect the pipeline intercommunication with the rainwater of road to realize the collection of road rainwater.
In the second embodiment, as shown in fig. 1 and 2, on the basis of the first embodiment, the outside of the filler 4 is wrapped with a barrier layer and forms a water reservoir to prevent water in the water reservoir from seeping out; the reservoir is provided with a water inlet, a water outlet, an overflow opening and a water discharge opening. In practical application, when a plurality of tubular water storage devices are laid in a certain region, two tubular water storage devices in a plurality of adjacent tubular water storage devices are communicated through a communication pipeline. Preferably, the inlet conduit 91 forming the inlet is socket connectable with the outlet conduit 92 forming the outlet. So that the two adjacent tubular water storage devices are in socket joint connection with the water inlet pipeline 91 of the other tubular water storage device through the water outlet pipeline 92 of one tubular water storage device, thereby realizing large-scale laying. It should be noted that the number of the water outlet pipes 92 and the number of the water inlet pipes 91 of different present tubular water storage devices may be the same or different, and the water outlet pipes 92 and the water inlet pipes 91 of the same present tubular water storage device may also be the same or different, and may be specifically set according to the position of the present tubular water storage device, for example, when four present tubular water storage devices are disposed around one of the present tubular water storage devices, four corresponding water outlet pipes 92 or water inlet pipes 91 are preferably disposed (of course, more than one of the present tubular water storage devices may be selected to communicate, which is not described herein), and the present tubular water storage device communicated with the present tubular water storage device is no longer communicated with other tubular water storage devices, and the present tubular water storage device only needs to be provided with one water inlet pipe 91 and one water outlet pipe 92. Preferably, the inlet conduit 91 forming the inlet is socket connectable with the outlet conduit 92 forming the outlet.
In the third embodiment, as shown in fig. 1 and 2, on the basis of the first or second embodiment, the protective layer is a wrapping layer which is permeable to water and has strong toughness, so that the bad phenomena such as collapse of the filler 4 are avoided. Preferably, the protective layer is two layers, and the impermeable layer is also two layers, and the protective layer, the impermeable layer and the protective layer are arranged at intervals in sequence (namely two films 3 are distributed on the protective layer and the impermeable layer); or from inside to outside, the anti-seepage layer, the protective layer, the anti-seepage layer and the protective layer are arranged; or constructed of other strong protective materials. Preferably, the outdoor plastic drain pipe 5 of the tubular water storage device is connected through a special connecting fitting, so that large-area laying is realized, and the socket connection mode is simple and easy to realize. Many outdoor plastics drain pipe 5 set up and improved the utility model discloses a retaining volume and circulation improve the utility model discloses a rainwater collection efficiency. Preferably, a plurality of outdoor plastic drain pipes 5 are arranged in an array, and one horizontal drain pipe is communicated with and correspondingly provided with a plurality of vertical drain pipes; the horizontal drainage pipe arranged close to the starting end is used as a water separator to balance the flow rate of rainwater, preliminarily precipitate silt in the rainwater and distribute the rainwater to a plurality of vertical drainage pipes communicated with the rainwater for storage; the horizontal drain pipe close to the tail end is used as a water collector and collects rainwater of a plurality of vertical drain pipes communicated with the horizontal drain pipe. The water pump at the rear end of the tubular water storage device can be emptied or collected and utilized conveniently. Preferably, the vertical drain pipe and/or the horizontal drain pipe are formed by splicing a plurality of socket-connected subducts 51. Thereby carry out socket joint concatenation through subduct 51 and realize the big or small free regulation of this tubular water storage device to improve this tubular water storage device's adaptability and harmony to the region that it laid greatly, make this tubular water storage device's outward appearance neat pleasing to the eye, improve city efficiency of building.
In the fourth embodiment, as shown in fig. 1 and 2, on the basis of the first, second or third embodiment, a planting soil layer 2 is arranged on the upper layer of the tubular water storage device. When the tubular water storage device is not provided with the impermeable membrane, the tubular water storage device can collect rainwater in rainy days and release and store rainwater in sunny days to keep plants in the area and provide water sources. In practical application, the planting soil layer 2 can be used for planting grass, shrubs, flowers and the like. Thereby realizing that the sponge city and the garden city can be put in place at one time. It is worth explaining that the upper layer of the tubular water storage device can also be used for paving and constructing roads, so that the whole ground can participate in rainwater collection, the full urbanization of sponge city construction is improved, the floor area of a sponge city is increased, and the full sponge urbanization is realized. Preferably, the cistern is equipped with inspection shaft 1, and inspection shaft 1 communicates with each other with outdoor plastics drain pipe 5, and the staff can regularly be right through inspection shaft 1 the utility model discloses overhaul and maintain. Preferably, the reservoir is provided with an overflow pipe. In practice, the overflow pipe is preferably in communication with a municipal storm water pipe network. Make and surpass the utility model discloses the rainwater of collection ability in time discharges into municipal rainwater pipe network, effectively avoids ground ponding to influence the city appearance, and the road surface does not have the ponding phenomenon when guaranteeing to rain. In practical application, the overflow pipe can be arranged close to the water inlet or the water outlet of the tubular water storage device and can also be communicated with at least one outdoor plastic drain pipe 5; the realization mode is diversified, can set up according to actual need.
In the fifth embodiment, as shown in fig. 1 and 2, in addition to the first, second, third or fourth embodiments, the ring stiffness of the outdoor plastic drain pipe 5 constituting the present tubular water storage apparatus is set according to the upper portion of the place where the apparatus is buried. If the tubular water storage device needs to be arranged below a traffic lane, the ring stiffness of the outdoor plastic drain pipe 5 is not less than 8KN after the hole is formed; when the tubular water storage device is arranged on places such as a bicycle lane, a movable square and the like, the ring rigidity of the outdoor plastic drain pipe 5 is not less than 6KN after the hole is formed; if the tubular water storage device is arranged on greenbelts, lawns and other places, the ring rigidity of the outdoor plastic drain pipe 5 is not less than 4KN after the hole is formed. Thereby reducing the cost while satisfying the use requirement. Preferably, a liquid level sensor 8 is arranged in the tubular water storage device, and two liquid level sensing points are sequentially arranged along the height direction of the tubular water storage device. The highest alarm liquid level and the lowest liquid level of the tubular water storage device are detected through the liquid level sensor 8, a rear-end rainwater emptying pump set and a rainwater utilization pump set can be effectively controlled and monitored, and the running condition of the device, even a sponge rainwater drainage system, can be judged.
In the sixth embodiment, as shown in fig. 1 and 2, on the basis of the second, third, fourth or fifth embodiment, a grille is arranged at the water inlet to filter impurities (such as fallen leaves, branches, garbage and the like) of rainwater flowing in from the outside, so as to prevent the impurities from blocking the outdoor plastic drain pipe 5 or filling gaps, ensure the smoothness of rainwater flow of the tubular water storage device and reduce the maintenance times and cost. It should be noted that the filler 4 should completely wrap each outdoor plastic drain pipe 5, and the filler 4 may be a gravel filler, such as gravel, zeolite, quartz stone, volcanic rock, ceramsite, pumice, etc., and is leveled and compacted manually. The pipe diameter of the outdoor plastic drain pipe 5 is preferably DN 600-DN 1000 according to the setting space, namely the outdoor plastic drain pipe 5 with the diameter of 600-1000 mm is adopted. Preferably, the particle size of the filler 4 is 16 to 40 mm.
In practical application, through the utility model discloses collect the rainwater, filter the back through filler 4, with the rainwater storage in the cistern, the rainwater of collecting can be used to the afforestation to water and spill, the road is washed, and the ground storehouse is washed, view water, bathroom towards lavatory etc to realize the recycle of rainwater, can practice thrift fresh water resources, alleviate the pressure that the fresh water resources crisis brought. The method can also reduce flood peaks and urban waterlogging, and plays a certain role in sponge urban construction and green buildings. More preferably, the utility model discloses the installation is simple, and the form is various, is applicable to various places, especially full berth basement roof earthing and small-size public space.
Exemplarily, as shown in fig. 1 and 2, this tubulose water storage device is applied to district ground storehouse top, and this tubulose water storage device lays on reinforced concrete bottom plate 7 of ground storehouse promptly, just the utility model discloses a be equipped with plain soil screed-coat 6 and two membranes of cloth 3 between tubulose water storage device and the reinforced concrete bottom plate 7, guarantee that this tubulose water storage device steadily lays and prevents water storage device water seepage, be equipped with three parallel arrangement's outdoor plastics drain pipe 5 (vertical drain pipe promptly, its extension direction is the left and right sides direction of fig. 2) in the tubulose water storage device to and set up in these three parallel arrangement's both ends and with two outdoor plastics drain pipe 5 (horizontal drain pipe promptly, its extension direction is the upper and lower direction of fig. 2) of these three parallel arrangement's outdoor plastics drain pipe 5 perpendicular settings. The three outdoor plastic drainage pipes 5 which are arranged in parallel are formed by socket joint connection of two sub-pipes 51, and the water inlet pipe 91 and the water outlet pipe 92 are respectively communicated with two transverse drainage pipes; the horizontal drain pipe and the vertical drain pipe that mutually perpendicular set up are connected through inverting the inspection shaft, preferentially, at least one of three outdoor plastics drain pipe 5 (the extension direction is the left and right direction of fig. 2) of parallel arrangement is equipped with inspection shaft 1 along the direction setting of fig. 2 back and forth, two outdoor plastics drain pipe 5's that extend along the direction from top to bottom in the picture at least one end is equipped with inspection shaft 1 along the direction setting of fig. 2, in practical application, inspection shaft 1 preferably sets up in the water inlet department or the water outlet department of cistern to and the junction of two outdoor plastics drain pipe 5. The concrete combines the terrace to set up double-deck well lid or plant the well lid as required.
It should be noted that the above embodiments can be freely combined as necessary. The foregoing is only a preferred embodiment of the present invention, and it should be noted that, for those skilled in the art, a plurality of modifications and decorations can be made without departing from the principle of the present invention, and these modifications and decorations should also be regarded as the protection scope of the present invention.

Claims (10)

1. A tubular water storage device, comprising:
outdoor plastic drain pipe, filler and protective layer;
more than one outdoor plastic drain pipe is embedded in the filler and forms a communicated pipeline, and the side wall of the outdoor plastic drain pipe is provided with a through hole so that the outdoor plastic drain pipe is communicated with the filler gap of the filler;
the protective layer is wrapped on the outer side of the filler.
2. The tubular water storage device according to claim 1, characterized in that:
the outer side of the filler is wrapped with an impermeable layer and forms a reservoir to prevent water in the reservoir from seeping out; the cistern is equipped with water inlet, delivery port, gap and outlet.
3. The tubular water storage device according to claim 2, characterized in that:
the water inlet pipeline forming the water inlet is connected with the water outlet pipeline forming the water outlet in a socket-and-spigot manner.
4. The tubular water storage device according to claim 1, characterized in that:
and a planting soil layer is arranged on the upper layer of the tubular water storage device.
5. The tubular water storage device according to claim 2, characterized in that:
the cistern is equipped with the inspection shaft.
6. The tubular water storage device according to claim 2, characterized in that:
the cistern is equipped with the overflow pipe.
7. The tubular water storage device according to claim 1, characterized in that:
the ring rigidity of the outdoor plastic drain pipe is more than 4 KN.
8. The tubular water storage device according to claim 1, characterized in that:
a liquid level sensor is arranged in the tubular water storage device, and two liquid level sensing points are sequentially arranged along the height direction of the tubular water storage device.
9. The tubular water storage device according to any one of claims 1 to 8, characterized in that:
the plurality of outdoor plastic drain pipes are arranged in an array, and one transverse drain pipe is communicated with and correspondingly provided with a plurality of vertical drain pipes; the horizontal drainage pipe arranged close to the starting end is used as a water separator to balance the flow rate of rainwater, preliminarily precipitate silt in the rainwater and distribute the rainwater to a plurality of vertical drainage pipes communicated with the rainwater for storage; the horizontal drain pipe close to the tail end is used as a water collector and collects rainwater of a plurality of vertical drain pipes communicated with the horizontal drain pipe.
10. The tubular water storage device according to claim 9, characterized in that:
the vertical water drainage pipe and/or the horizontal water drainage pipe are formed by splicing a plurality of sub-pipelines connected in a socket joint mode.
CN201920242997.XU 2019-02-26 2019-02-26 Tubular water storage device Active CN210134502U (en)

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Application Number Priority Date Filing Date Title
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109723123A (en) * 2019-02-26 2019-05-07 上海中森建筑与工程设计顾问有限公司 A kind of tubulose water-storing device

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109723123A (en) * 2019-02-26 2019-05-07 上海中森建筑与工程设计顾问有限公司 A kind of tubulose water-storing device

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