CN219775034U - Seepage-proofing structure of reservoir - Google Patents

Seepage-proofing structure of reservoir Download PDF

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Publication number
CN219775034U
CN219775034U CN202320881755.1U CN202320881755U CN219775034U CN 219775034 U CN219775034 U CN 219775034U CN 202320881755 U CN202320881755 U CN 202320881755U CN 219775034 U CN219775034 U CN 219775034U
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China
Prior art keywords
sealing
pipeline
reservoir
admission line
cistern
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CN202320881755.1U
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Chinese (zh)
Inventor
申学波
杨利军
吴代富
周炜竣
陈应强
方伟
黄国锋
姜健
段凤祥
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Sinohydro Bureau 9 Co Ltd
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Sinohydro Bureau 9 Co Ltd
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Abstract

The utility model discloses an impermeable structure of a reservoir, and relates to the field of impermeable structures. Including the cistern main part, the outlet has been seted up to cistern main part bottom, outlet internal fixation has drainage pipe, be equipped with sealing mechanism on the drainage pipe, sealing mechanism includes sealing cap, one-way admission valve, admission line, sealing washer and sealing airbag, sealing airbag cover is established on drainage pipe, is connected with sealing washer on the sealing airbag, is connected with admission line on the sealing airbag, is equipped with one-way admission valve in the admission line, and the admission line end is equipped with sealing cap, is connected with detection mechanism on the sealing airbag, and detection mechanism includes butt joint screw, communication pipeline, barometer, positioning base and locating hole. After the air in the sealed air bag is inflated, the inflated air bag can block the existing gap, so that water in the reservoir is prevented from exuding, and the air pressure in the sealed air bag can be detected in real time through the air pressure meter, so that a user is reminded of timely inflation when the air pressure is too low.

Description

Seepage-proofing structure of reservoir
Technical Field
The utility model relates to the field of seepage-proofing structures, in particular to a seepage-proofing structure of a reservoir.
Background
The reservoir is a water storage facility which is built by artificial materials and has an anti-seepage function, and is an important engineering facility for accumulating important rainwater. The lack of fresh water resources, water pollution and ecological deterioration limit the social and economic development to a certain extent, and the impounding reservoir is used as a water saving system with low cost, so that the shortage of water resources is effectively relieved, and the problems of urban flood control and drainage are solved. The current cistern is generally made through the concrete, and is equipped with drainage pipe in the bottom of cistern, can produce the gap between cistern and the drainage pipe under the effect of expend with heat and contract with cold after long-time use, and the water in the cistern can ooze through these gaps.
Disclosure of Invention
The utility model mainly aims to provide an impermeable structure of a reservoir, which can effectively solve the problems in the prior art.
In order to achieve the above purpose, the technical scheme adopted by the utility model is as follows:
the utility model provides a cistern seepage prevention structure, includes the cistern main part, the outlet has been seted up to cistern main part bottom, fixed mounting has drainage pipe in the outlet, be equipped with sealing mechanism on the drainage pipe, sealing mechanism includes sealing cap, one-way admission valve, admission line, sealing washer and sealing airbag, sealing airbag cover is established on drainage pipe, be connected with sealing washer on the sealing airbag, be connected with the admission line on the sealing airbag, be equipped with one-way admission valve in the admission line, the admission line end is equipped with sealing cap, be connected with detection mechanism on the sealing airbag, detection mechanism includes butt joint screw, communication pipeline, barometer, positioning base and location through-hole, the communication pipeline is connected on sealing airbag, communication pipeline end-to-end connection has the barometer, fixed mounting has positioning base on the barometer, the location through-hole has been seted up on the positioning base, be equipped with the butt joint screw in the positioning through-hole.
Furthermore, the drainage pipeline is provided with a mounting groove, and the sealing air bag is mounted on the drainage pipeline through the mounting groove.
Furthermore, the one-way air inlet valve only allows outside air to enter the sealed air bag through the air inlet pipeline, threads are arranged at the tail end of the air inlet pipeline, and the sealing cap is connected to the tail end of the air inlet pipeline through screws.
Furthermore, screw holes are formed in the reservoir main body, and the butt screws are connected to the reservoir main body through the screw holes.
Furthermore, the butt-joint screw is connected to the positioning base through the positioning through hole, the positioning base is fixed to the reservoir main body through the butt-joint screw, the barometer is fixed to the reservoir main body through the screw, one end of the communication pipeline is connected to the barometer, and the other end of the communication pipeline is connected to the sealing air bag.
Further, the drain pipe is connected to the reservoir main body through a drain port.
Compared with the prior art, the utility model has the following beneficial effects:
when the sealing device is used, the sealing mechanism and the drainage pipeline are arranged in the water outlet, then the sealing device can be inflated into the sealing air bag through the air inlet pipeline, the sealing air bag can be inflated after being inflated into the sealing air bag, the inflated air bag can block the existing gap, water in the water storage tank is prevented from exuding, the air pressure in the sealing air bag can be detected in real time through the air pressure meter, and a user is reminded of timely inflation when the air pressure is too low.
Drawings
FIG. 1 is a schematic diagram of the overall structure of the present utility model;
FIG. 2 is a schematic view of a partial structure of the present utility model;
FIG. 3 is a schematic view of a sealing mechanism of the present utility model;
FIG. 4 is a schematic diagram of the detection mechanism of the present utility model.
In the figure: 1. a water outlet; 2. a reservoir main body; 3. a drainage pipe; 4. a sealing mechanism; 401. a sealing cap; 402. a one-way air inlet valve; 403. an air intake duct; 404. a sealing gasket; 405. sealing the air bag; 5. a detection mechanism; 501. a butt joint screw; 502. a communication pipe; 503. an air pressure gauge; 504. positioning a base; 505. and positioning the through holes.
Detailed Description
The utility model is further described in connection with the following detailed description, in order to make the technical means, the creation characteristics, the achievement of the purpose and the effect of the utility model easy to understand.
As shown in fig. 1 to 4, the anti-seepage structure of the reservoir comprises a reservoir main body 2, a water outlet 1 is formed in the bottom of the reservoir main body 2, a drainage pipeline 3 is fixedly arranged in the water outlet 1, a sealing mechanism 4 is arranged on the drainage pipeline 3, the sealing mechanism 4 comprises a sealing cap 401, a one-way air inlet valve 402, an air inlet pipeline 403, a sealing gasket 404 and a sealing air bag 405, a detection mechanism 5 is connected to the sealing air bag 405, the detection mechanism 5 comprises a butt joint screw 501, a communication pipeline 502, an air pressure meter 503, a positioning base 504 and a positioning through hole 505, and the drainage pipeline 3 is connected to the reservoir main body 2 through the water outlet 1.
The sealing mechanism 4 is arranged on the drainage pipeline 3, the sealing mechanism 4 comprises a sealing cap 401, a one-way air inlet valve 402, an air inlet pipeline 403, a sealing gasket 404 and a sealing air bag 405, the sealing air bag 405 is sleeved on the drainage pipeline 3, the sealing air bag 405 is connected with the sealing gasket 404, the sealing air bag 405 is connected with the air inlet pipeline 403, the one-way air inlet valve 402 is arranged in the air inlet pipeline 403, the sealing cap 401 is arranged at the tail end of the air inlet pipeline 403, the one-way air inlet valve 402 only allows outside air to enter the sealing air bag 405 through the air inlet pipeline 403, the tail end of the air inlet pipeline 403 is provided with threads, the sealing cap 401 is connected at the tail end of the air inlet pipeline 403 through screws, the sealing mechanism 4 and the drainage pipeline 3 are installed in the drainage pipeline 1 in use, the sealing mechanism 4 and the drainage pipeline 3 can be inflated through the air inlet pipeline 403 to the sealing air bag 405 after inflation, and the inflated air bag can block gaps existing in the water storage tank, and water in the water storage tank can be prevented from exuding.
The sealing airbag 405 is connected with a detection mechanism 5, the detection mechanism 5 comprises a butt joint screw 501, a communication pipeline 502, a barometer 503, a positioning base 504 and a positioning through hole 505, the communication pipeline 502 is connected to the sealing airbag 405, the end of the communication pipeline 502 is connected with the barometer 503, the positioning base 504 is fixedly arranged on the barometer 503, the positioning base 504 is provided with the positioning through hole 505, the butt joint screw 501 is arranged in the positioning through hole 505, the butt joint screw 501 is connected to the positioning base 504 through the positioning through hole 505, the positioning base 504 is fixed to the reservoir main body 2 through the butt joint screw 501, the barometer 503 is fixed to the reservoir main body 2 through the screw, one end of the communication pipeline 502 is connected to the barometer 503, the other end of the communication pipeline 502 is connected to the sealing airbag 405, and the air pressure in the sealing airbag 405 can be detected in real time through the barometer 503, so that a user is reminded of timely inflation when the air pressure is too low.
In practical use, the sealing mechanism 4 and the drainage pipeline 3 are firstly installed in the drainage port 1, the sealing mechanism 4 and the drainage pipeline 3 are installed in the drainage port 1, then the sealing mechanism 4 and the drainage pipeline 3 can be inflated into the sealing air bag 405 through the air inlet pipeline 403, the drainage pipeline 3 is provided with the installation groove, the sealing air bag 405 is installed on the drainage pipeline 3 through the installation groove, the one-way air inlet valve 402 only allows external air to enter the sealing air bag 405 through the air inlet pipeline 403, the tail end of the air inlet pipeline 403 is provided with threads, the sealing cap 401 is connected to the tail end of the air inlet pipeline 403 through screws, the sealing air bag 405 is inflated after being inflated, the inflated air bag can block the existing gap, so that moisture in the water storage tank is prevented from exuding, and secondly, the water storage tank body 2 is provided with screw holes, the butt screw 501 is connected to the water storage tank body 2 through the positioning base 504 through the screw holes, the positioning base 504 is fixed to the water storage tank body 2 through the butt screw holes 501, the air pressure meter 503 is fixed to the water storage tank body 2 through the screw, one end of the air inlet pipeline 403 is connected to the air pressure meter 503 through the air inlet pipe 403, the other end of the air inlet pipeline 403 is connected to the air inlet pipeline 403 through the air inlet pipeline 403, and the air pressure meter is connected to the air inlet valve 405 through the air inlet pipeline 405, and the air inlet pipeline 405 is sealed in time, and the air pressure can be timely detected when the user is in real time, and the air pressure is low.
Finally, it should be noted that: the foregoing description is only a preferred embodiment of the present utility model, and the present utility model is not limited thereto, but it is to be understood that modifications and equivalents of some of the technical features described in the foregoing embodiments may be made by those skilled in the art, although the present utility model has been described in detail with reference to the foregoing embodiments. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present utility model should be included in the protection scope of the present utility model.

Claims (6)

1. An impermeable structure of cistern, its characterized in that: including cistern main part (2), outlet (1) has been seted up to cistern main part (2) bottom, fixed mounting has drainage pipe (3) in outlet (1), be equipped with sealing mechanism (4) on drainage pipe (3), sealing mechanism (4) are including sealing cap (401), one-way admission valve (402), admission line (403), sealing washer (404) and sealed gasbag (405), sealed gasbag (405) cover is established on drainage pipe (3), be connected with sealing washer (404) on sealed gasbag (405), be connected with admission line (403) on sealed gasbag (405), be equipped with one-way admission valve (402) in admission line (403), the end of admission line (403) is equipped with sealing cap (401), be connected with detection mechanism (5) on sealed gasbag (405), detection mechanism (5) are including butt joint screw (501), communicating pipe (502), barometer (503), location base (504) and location through-hole (505), communicating pipe (502) are connected on sealed gasbag (405), communicating pipe (403) are connected with admission line (403), are connected with atmospheric pressure table (503) and are fixed on the location base (503), the positioning base (504) is provided with a positioning through hole (505), and a butt screw (501) is arranged in the positioning through hole (505).
2. The cistern permeation prevention structure according to claim 1, wherein: the drainage pipeline (3) is provided with a mounting groove, and the sealing air bag (405) is mounted on the drainage pipeline (3) through the mounting groove.
3. The cistern permeation prevention structure according to claim 2, wherein: the one-way air inlet valve (402) only allows outside air to enter the sealing air bag (405) through the air inlet pipeline (403), threads are arranged at the tail end of the air inlet pipeline (403), and the sealing cap (401) is connected to the tail end of the air inlet pipeline (403) through screws.
4. A cistern permeation prevention structure according to claim 3, wherein: screw holes are formed in the reservoir main body (2), and the butt-joint screws (501) are connected to the reservoir main body (2) through the screw holes.
5. The water reservoir permeation prevention structure according to claim 4, wherein: the butt joint screw (501) is connected to the positioning base (504) through the positioning through hole (505), the positioning base (504) is fixed to the reservoir main body (2) through the butt joint screw (501), the barometer (503) is fixed to the reservoir main body (2) through the screw, one end of the communication pipeline (502) is connected to the barometer (503), and the other end of the communication pipeline (502) is connected to the sealing air bag (405).
6. The water reservoir permeation prevention structure according to claim 5, wherein: the drainage pipeline (3) is connected to the reservoir main body (2) through the drainage port (1).
CN202320881755.1U 2023-04-19 2023-04-19 Seepage-proofing structure of reservoir Active CN219775034U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202320881755.1U CN219775034U (en) 2023-04-19 2023-04-19 Seepage-proofing structure of reservoir

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202320881755.1U CN219775034U (en) 2023-04-19 2023-04-19 Seepage-proofing structure of reservoir

Publications (1)

Publication Number Publication Date
CN219775034U true CN219775034U (en) 2023-09-29

Family

ID=88107278

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202320881755.1U Active CN219775034U (en) 2023-04-19 2023-04-19 Seepage-proofing structure of reservoir

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CN (1) CN219775034U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN117309724A (en) * 2023-10-23 2023-12-29 江苏亨通高压海缆有限公司 Test device for longitudinal water permeability test of cable metal sleeve and application method of test device

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN117309724A (en) * 2023-10-23 2023-12-29 江苏亨通高压海缆有限公司 Test device for longitudinal water permeability test of cable metal sleeve and application method of test device
CN117309724B (en) * 2023-10-23 2024-04-26 江苏亨通高压海缆有限公司 Test device for longitudinal water permeability test of cable metal sleeve and application method of test device

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