CN218598385U - Water station water intaking mechanism - Google Patents
Water station water intaking mechanism Download PDFInfo
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- CN218598385U CN218598385U CN202222969389.3U CN202222969389U CN218598385U CN 218598385 U CN218598385 U CN 218598385U CN 202222969389 U CN202222969389 U CN 202222969389U CN 218598385 U CN218598385 U CN 218598385U
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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
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Abstract
The utility model discloses a water station water intaking mechanism, including motor, water pump, vacuum bucket and pond, the output shaft and the water pump of motor are connected the motion of drive water pump, and inlet tube and pond intercommunication are passed through to the one end of vacuum bucket, and the other end of vacuum bucket passes through the water pump and absorbs water the entry intercommunication of pipe and water pump, and the export of water pump is equipped with the delivery pipe and is used for supplying water for the system. The water taking mechanism can realize water supply to the system without using a non-blocking self-suction pump, thereby reducing the cost and the occupied area.
Description
Technical Field
The utility model belongs to the technical field of supply water, concretely relates to water station water intaking mechanism.
Background
Because the geographical environment of each region is different, and the local water level is also different, precipitation is very important in the construction process. In the prior art, a water pump is generally selected for pumping water, but due to the limitation of a sewage pump base, water in a foundation pit cannot be completely pumped, a plurality of water pumps are required to work simultaneously and a specially-assigned person is used for nursing the foundation pit due to the fact that the water pump is of a motor-driven impeller type, and therefore the foundation pit is extremely easy to damage and causes electric shock accidents to personnel.
In the prior art, sewage pumps are mostly arranged on the upper plane of a water tank, a non-blocking self-suction pump needs to be arranged, a water source of the water tank is led to a sewage pump impeller, water is supplied by rotating the impeller, the water station is difficult to arrange due to large occupied area, the energy consumption is high, and the maintenance is needed.
SUMMERY OF THE UTILITY MODEL
To exist not enough among the prior art, the utility model aims to provide a simple structure, convenient to use's water station water intaking mechanism need not the unblock from inhaling the suction pump, the cost is reduced, area has been reduced.
In order to achieve the above purpose, the technical scheme of the utility model is that: the utility model provides a water station water intaking mechanism, includes motor, water pump, vacuum bucket and pond, the output shaft of motor is connected the drive water pump motion with the water pump, and the one end of vacuum bucket is passed through inlet tube and pond intercommunication, and the other end of vacuum bucket is passed through the water pump and is inhaled the entry intercommunication of pipe and water pump, and the export of water pump is equipped with the delivery pipe and is used for supplying water for the system.
Furthermore, the water station water intaking mechanism still includes the wet return, and the one end and the delivery pipe intercommunication of wet return, the other end and the pond intercommunication of wet return are equipped with the gate valve that is used for controlling the wet return break-make on the wet return.
Furthermore, the pond is located subaerial, and motor, water pump, vacuum bucket fixed mounting are subaerial, have the difference in height between the horizontal plane in pond and the water pump, and the vacuum bucket sets up between pond and water pump.
Further, the volume of the vacuum barrel is five times of that of the water inlet pipe.
Furthermore, the top of the vacuum barrel is provided with a water injection pipe for injecting water into the vacuum barrel, the water injection pipe is communicated with the inside of the vacuum barrel, and the water injection pipe is provided with a water injection ball valve for controlling the on-off of the water injection pipe.
Furthermore, a water inlet pipe is arranged at an opening 10-15 cm below the upper plane of the vacuum barrel, and a water pump suction pipe is arranged at an opening 10-15 cm away from the lower end of the vacuum barrel on the vacuum barrel.
Furthermore, a check valve and an outlet gate valve are arranged on the water supply pipe, when the vacuum barrel water injection device is used, the outlet gate valve is closed, a water injection ball valve of the water injection pipe on the vacuum barrel is opened, and water is injected into the vacuum barrel.
Furthermore, the height of the water in the vacuum bucket is greater than that of the water suction pipe of the water pump on the vacuum bucket and less than that of the water inlet pipe on the vacuum bucket, and the height of the water in the vacuum bucket is greater than half of that of the vacuum bucket.
Adopt the utility model discloses technical scheme's advantage does:
1. the utility model discloses a water station water intaking mechanism simple structure, convenient to use adopt the vacuum barrel to replace non-blocking from inhaling the formula pump, not only the cost is reduced has reduced area moreover, more makes things convenient for the overall arrangement of pipeline.
2. The utility model discloses utilize the inside water source of vacuum bucket, rotatory through the water pump impeller, make vacuum bucket produce negative pressure (vacuum) back, because atmospheric effect, water in the cistern passes through the inlet tube and gets into vacuum bucket, through the water pump pipe that absorbs water reachs the water pump, carries out continuous water supply
Drawings
The invention will be described in further detail with reference to the following drawings and detailed description:
fig. 1 is a schematic view of the structure of the ton bag breaking device of the present invention.
The labels in the above figures are: 1. a motor; 2. a water pump; 3. a vacuum barrel; 31. a water injection pipe; 32. a water injection ball valve; 4. a water pool; 5. a water inlet pipe; 6. a water suction pipe of the water pump; 7. a water supply pipe; 71. a one-way valve; 72. an outlet gate valve; 8. a water return pipe.
Detailed Description
In the present invention, it is to be understood that the term "length"; "Width"; "Up"; "Down"; "front"; "Back"; "left"; "Right"; "vertical"; "horizontal"; "Top"; "bottom" "inner"; "outer"; "clockwise"; "counterclockwise"; "axial"; "planar direction"; the directional or positional relationship indicated as "circumferential" or the like is based on the directional or positional relationship shown in the drawings, and is only for convenience of description and simplified description, and does not indicate or imply that the device or element referred to must have a particular orientation; constructed and operative in a particular orientation and therefore should not be construed as limiting the invention.
As shown in figure 1, a water station water intaking mechanism, includes motor 1, water pump 2, vacuum bucket 3 and pond 4, the output shaft of motor 1 is connected with water pump 2 and is driven the water pump motion, and the one end of vacuum bucket 3 is passed through inlet tube 5 and is linked together with pond 4, and the other end of vacuum bucket 3 passes through water pump suction pipe 6 and water pump 2's entry intercommunication, and the export of water pump 2 is equipped with delivery pipe 7 and is used for supplying water for the system. The water taking mechanism can realize water supply to the system without using a non-blocking self-suction pump, thereby reducing the cost and the occupied area.
In order to facilitate the adjustment of the water pressure of the water supply system, when the water pressure is too high, the pressure relief is realized, the water station water taking mechanism further comprises a water return pipe 8, one end of the water return pipe 8 is communicated with a water supply pipe 7, the other end of the water return pipe 8 is communicated with a water pool 4, and a gate valve used for controlling the on-off of the water return pipe 8 is arranged on the water return pipe 8. When the water pressure is too high, the gate valve on the water return pipe 8 is opened, and the water in the water supply pipe 7 returns to the water tank 4 through the water return pipe 8, so that the pressure relief is realized.
The water tank 4 is located below the ground, the motor 1, the water pump 2 and the vacuum barrel 3 are fixedly installed on the ground, a height difference exists between the horizontal plane of the water tank 4 and the water pump 2, and the vacuum barrel 3 is arranged between the water tank 4 and the water pump 2.
The volume of the vacuum barrel 3 is five times of that of the water inlet pipe 5. The top of vacuum bucket 3 is equipped with water injection pipe 31 that is used for to the vacuum bucket water injection, and water injection pipe 31 communicates with the inside of vacuum bucket 3, is equipped with the water injection ball valve 32 that is used for controlling the water injection pipe break-make on water injection pipe 31. An opening 10-15 cm below the upper plane of the vacuum barrel 3 is provided with a water inlet pipe 5, and an opening 10-15 cm away from the lower end of the vacuum barrel 3 on the vacuum barrel 3 is provided with a water pump suction pipe 6, so that the water pump suction pipe 6 is flush with the inlet of the water pump 2, and the water pump is ensured to be installed horizontally and vertically.
The water supply pipe 7 is provided with a check valve 71 and an outlet gate valve 72, and when in use, the outlet gate valve 72 is closed, and the water injection ball valve 32 of the water injection pipe 31 on the vacuum bucket is opened to inject water into the vacuum bucket. The height of the water in the vacuum barrel 3 is larger than that of the water suction pipe 6 of the water pump on the vacuum barrel 3 and is smaller than that of the water inlet pipe 5 on the vacuum barrel 3; preferably, the height of the water in the vacuum bucket 3 is greater than one-half of the height of the vacuum bucket 3.
Specifically, the volume is calculated according to the height diameter of the water inlet pipe 5, and the volume of the vacuum barrel 3 which is manufactured is five times of the volume of the water inlet pipe 5; the water inlet pipe 5 is arranged at the position where the upper plane of the vacuum barrel descends by about 10 cm, and the upper plane of the vacuum barrel is provided with a water injection ball valve; the water suction pipe 6 of the water pump is connected with the opening with the height of 10 cm at the lower end of the vacuum barrel, so that the sewage pump is ensured to be installed horizontally and vertically. A check valve and an outlet gate valve are installed on the water supply pipe 7 to ensure that the water pressure does not flow backwards.
When the vacuum water pump is used, a power supply of the motor is connected, the positive and negative rotation is debugged, the outlet valve on the water supply pipe 7 of the water pump is closed, the water injection ball valve is opened on the vacuum barrel, water is injected into the vacuum barrel, the water level is about the lower plane of the inlet pipeline of the vacuum barrel, and the water injection ball valve is closed; after starting up for 10 seconds, an outlet valve on a water supply pipe 7 of the water pump is opened. After the vacuum barrel generates negative pressure (vacuum) by utilizing the water source in the vacuum barrel and rotating through the impeller of the water pump, water in the water storage tank enters the vacuum barrel through the water inlet pipe 5 under the action of the atmosphere and reaches the water pump through the water suction pipe 6 of the water pump to supply water continuously.
The utility model discloses a water station water intaking mechanism simple structure, operation are succinct, convenient to use, maintain simple, with low costs, and area is little, is favorable to the overall arrangement of pipeline.
The present invention has been described above with reference to the accompanying drawings, and it is obvious that the present invention is not limited by the above-mentioned manner, and various insubstantial improvements can be made without the technical solutions of the present invention, or the present invention can be directly applied to other occasions without the improvements, and all are within the protection scope of the present invention.
Claims (8)
1. The utility model provides a water station water intaking mechanism which characterized in that: including motor (1), water pump (2), vacuum bucket (3) and pond (4), the output shaft and the water pump (2) of motor (1) are connected the motion of drive water pump, and inlet tube (5) and pond (4) intercommunication are passed through to the one end of vacuum bucket (3), and the other end of vacuum bucket (3) is passed through the water pump and is absorbed water the entry intercommunication of pipe (6) and water pump (2), and the export of water pump (2) is equipped with delivery pipe (7) and is used for supplying water for the system.
2. The water station intaking mechanism according to claim 1, wherein: the water station water taking mechanism further comprises a water return pipe (8), one end of the water return pipe (8) is communicated with the water supply pipe (7), the other end of the water return pipe (8) is communicated with the water pool (4), and a gate valve used for controlling the on-off of the water return pipe (8) is arranged on the water return pipe (8).
3. A water station intaking mechanism according to claim 1 or 2, wherein: the water tank (4) is located below the ground, the motor (1), the water pump (2) and the vacuum barrel (3) are fixedly installed on the ground, a height difference exists between the horizontal plane of the water tank (4) and the water pump (2), and the vacuum barrel (3) is arranged between the water tank (4) and the water pump (2).
4. A water station extraction mechanism as claimed in claim 3, wherein: the volume of the vacuum barrel (3) is five times of that of the water inlet pipe (5).
5. The water station intaking mechanism according to claim 4, wherein: the top of vacuum bucket (3) is equipped with water injection pipe (31) that are used for to the vacuum bucket water injection, and water injection pipe (31) and the inside intercommunication of vacuum bucket (3) are equipped with water injection ball valve (32) that are used for controlling the water injection pipe break-make on water injection pipe (31).
6. The water station intaking mechanism according to claim 5, wherein: an opening 10-15 cm below the upper plane of the vacuum barrel (3) is provided with a water inlet pipe (5), and an opening 10-15 cm away from the lower end of the vacuum barrel (3) on the vacuum barrel (3) is provided with a water pump suction pipe (6).
7. The water station intaking mechanism according to claim 6, wherein: the water supply pipe (7) is provided with a one-way valve (71) and an outlet gate valve (72), when in use, the outlet gate valve (72) is closed, a water injection ball valve (32) of a water injection pipe (31) on the vacuum barrel is opened, and water is injected into the vacuum barrel.
8. The water station intaking mechanism of claim 7, wherein: the height of the water in the vacuum barrel (3) is greater than that of the water pump water suction pipe (6) on the vacuum barrel (3) and less than that of the water inlet pipe (5) on the vacuum barrel (3), and the height of the water in the vacuum barrel (3) is greater than half of the height of the vacuum barrel (3).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202222969389.3U CN218598385U (en) | 2022-11-08 | 2022-11-08 | Water station water intaking mechanism |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN202222969389.3U CN218598385U (en) | 2022-11-08 | 2022-11-08 | Water station water intaking mechanism |
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CN218598385U true CN218598385U (en) | 2023-03-10 |
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CN202222969389.3U Active CN218598385U (en) | 2022-11-08 | 2022-11-08 | Water station water intaking mechanism |
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2022
- 2022-11-08 CN CN202222969389.3U patent/CN218598385U/en active Active
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