CN101638906A - Energy-saving water supply equipment - Google Patents
Energy-saving water supply equipment Download PDFInfo
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- CN101638906A CN101638906A CN200810041278A CN200810041278A CN101638906A CN 101638906 A CN101638906 A CN 101638906A CN 200810041278 A CN200810041278 A CN 200810041278A CN 200810041278 A CN200810041278 A CN 200810041278A CN 101638906 A CN101638906 A CN 101638906A
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Abstract
The invention discloses energy-saving water supply equipment, which consists of an underground pressurizing system, a water storage system, a liquid level control system and a valve pipeline; a waterinlet and a water outlet are reserved in the underground pressurizing system, the water inlet is connected with a water source, and the water outlet is connected with a distribution main through a pipeline; the distribution main is provided with interfaces respectively connected with a higher area water storage system, an intermediate area water storage system and a lower area water storage system; each of the interfaces is connected with a corresponding water storage tank after passing through a depressurizing device, a valve set and a connecting pipe; the higher area water storage system isnot provided with the depressurizing device; the connecting pipe is also provided with an interface connected with a user official website; and simultaneously, the connecting pipe is also provided with a liquid level controller.
Description
One: technical field
The present invention relates to a kind of pressurizing feedwater equipment that in domestic water supplying system, uses, particularly a kind of energy-conservation, water supply facilities of exempting to clean that in highrise building, uses.
Two: background technology
Life pressurization supply equipment in the prior art, highrise building water supply system particularly, generally all adopt underground pressurized equipment and high level cistern (pond), or directly adopt underground pressurized equipment water rationing, if adopt this pattern of underground pressurized equipment and high level cistern (pond) to supply water, it is to save a large amount of electricity charge, but because high level cistern (pond) can not be isolated fully with medium such as outside air, dust and toy enter easily, thereby make water electrode be vulnerable to secondary pollution, in the process of using, must carry out regularly water tank (pond) being cleaned, so just cause the consumption of lot of manpower and material resources, in the process of cleaning, also must cut off the water 1-2 days simultaneously, influence people's normal life order; If adopt underground pressurized equipment water rationing, this mode generally all highrise building is divided into height, in low three districts, each district's configuration one cover pressurized equipment, the general mode that adopts frequency-changing pressure stabilizing, because the pressure in the frequency-changing pressure stabilizing feedwater mode user pipe network must be kept by pump, even its regulating power of configuration air pressure tank is also very limited, so just causes water pump to work long hours, the electricity charge that consumed are very many, and the first investment of equipment is huge simultaneously.
Three: summary of the invention
The objective of the invention is to: design a kind of complete supply equipment, make that it was not only energy-conservation, non-secondary pollution, but also exempt to clean and install simple, invest little.
The present invention adopts following structure to realize above-mentioned purpose, energy-saving water supply equipment comprises: underground compression system, water storage system, tank level control system, valve pipeline is formed, in underground compression system, leave water inlet and delivery port, water inlet is connected with the water source, delivery port is connected with the distribution main by pipeline, on the distribution main, have and connect height, in, the interface of low district water storage system, this interface is by decompressor and valve sets, be connected with water tank behind the tube connector, wherein connect high district water storage system and be unworthy of decompressor, on tube connector, also have the mouth of pipe that is connected with the user official website, liquid level sensor also is installed on tube connector simultaneously.
Adopt as above structure, underground pressurized equipment is transported to water high-order water tank earlier and stores, user's water satisfies pressure demand by the natural drop of water tank, thereby system need not come steady pressure by pump operation, reduce the number of starts and the running time of water pump with this, save a large amount of operation electricity charge; Because water pocket has been installed in water tank, water directly enters in the water pocket, thereby water is in the environment of totally-enclosed to be moved, like this water just and medium such as outside air isolate fully, thoroughly having stopped dust and other impurities enters in the water, cause pollution, avoided the timing that water tank carries out being cleaned because of the influence that guarantee that water quality is not contaminated, foreign material etc. enters to water quality; Owing to can give highly different water tank moisturizings simultaneously once the underground compression system of cover, can reduce the first investment of equipment like this.
Four: description of drawings
Fig. 1 is enforcement state diagram of the present invention
Five: the specific embodiment
Energy-saving water supply equipment, comprise: underground compression system, water storage system, decompressor, one way valve, liquid is sensor etc., Fig. 1 is the invention process state diagram, underground pressurized equipment 1 has the interface 7 and the interface 8 that is connected water outlet that connects water inlet, interface 7 is connected with the water source, interface 8 is connected with distribution main 9, descend pressurized equipment just can distribution main 9 upwards carry water under high pressure in this wise, on distribution main 9, have the mouth of pipe 10 that connects high district water storage equipment, the mouth of pipe 11 of middle district water storage equipment, the mouth of pipe 12 of low district water storage equipment, the mouth of pipe 10, the mouth of pipe 11 and the mouth of pipe 12 respectively with electromagnetic valve 13, electromagnetic valve 14 is connected with electromagnetic valve 15, electromagnetic valve 14, electromagnetic valve 15 is connected with decompressor 17 with decompressor 16 respectively, the other end of decompressor 16 and decompressor 17 respectively with one way valve 18, one way valve 19 connects, the other end that one way valve 18 is connected with one way valve 19 respectively with three-limb tube 20, three-limb tube 21 connects, one end of three-limb tube 21 is connected with water tank 22, another port 23 is connected with low district user pipe network (not marking among the figure), one end of three-limb tube 20 is connected with water tank 24, another port 25 He Zhong district user pipe networks (not marking among the figure) connect, electromagnetic valve 13 is connected with one way valve 26, the other end of one way valve 26 is connected with three-limb tube 6, one end of three-limb tube 6 is connected with water tank 5, another port 4 He Gao district user pipe networks (not marking among the figure) connect, at three-limb tube 20, three-limb tube 21, the place of close user's connector of three-limb tube 6 is equipped with fluid level controller 3, fluid level controller 2, fluid level controller 27, the signal of fluid level controller imports switch board (not marking among the figure) into, control electromagnetic valve 13 after switch board detects low liquid level signal, electromagnetic valve 14, electromagnetic valve 15 is opened, water under high pressure after descending pressurized equipment to start in this wise just can be by flowing into water tank behind the electromagnetic valve, liquid level in all water tanks reaches high limit rear electromagnetic valve and closes into water, underground pressurized equipment is out of service, the user supplies water by water tank, natural drop height by water tank satisfies the requirement of user with water pressure, reduce starting mode of pump and running time, reach purpose of energy saving, because water pocket 28 is installed in water tank, avoided contacting of water and media such as outside air, it is airtight that whole water supply process is in fully, move in the free of contamination environment, avoided cleaning a large amount of manpowers that consumed because of water tank pollutes, the waste of material resources, the while has also guaranteed the safety of people's waters, clean, health.
Claims (4)
1. energy-saving water supply equipment, comprise: underground compression system, water storage system, tank level control system, valve pipeline is formed, it is characterized in that: in underground compression system, leave water inlet and delivery port, water inlet is connected with the water source, delivery port is connected with the distribution main by pipeline, on the distribution main, have and connect height, in, the interface of low district water storage system, this interface is by decompressor and valve sets, be connected with water tank behind the tube connector, wherein connect high district water storage system and be unworthy of decompressor, on tube connector, also have the mouth of pipe that is connected with the user official website, liquid level sensor also is installed on tube connector simultaneously
2. energy-saving water supply equipment according to claim 1 is characterized in that: water pocket is installed in the water tank.
3. energy-saving water supply equipment according to claim 1 is characterized in that: the control valve that is connected with the distribution main is an electromagnetic valve, also can be motor operated valve.
4. energy-saving water supply equipment according to claim 1 is characterized in that: the distribution main can supply water for a plurality of water tanks simultaneously.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN200810041278A CN101638906A (en) | 2008-08-01 | 2008-08-01 | Energy-saving water supply equipment |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN200810041278A CN101638906A (en) | 2008-08-01 | 2008-08-01 | Energy-saving water supply equipment |
Publications (1)
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CN101638906A true CN101638906A (en) | 2010-02-03 |
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Family Applications (1)
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CN200810041278A Pending CN101638906A (en) | 2008-08-01 | 2008-08-01 | Energy-saving water supply equipment |
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Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN104088330A (en) * | 2014-05-09 | 2014-10-08 | 吴昊 | Multi-section variable frequency water supply system |
CN105815811A (en) * | 2016-05-20 | 2016-08-03 | 江苏爱福特科技开发有限公司 | Automatic cigarette holder cleaning method |
CN105852213A (en) * | 2016-05-20 | 2016-08-17 | 江苏爱福特科技开发有限公司 | Intelligent multi-cigarette holder cleaning method |
-
2008
- 2008-08-01 CN CN200810041278A patent/CN101638906A/en active Pending
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN104088330A (en) * | 2014-05-09 | 2014-10-08 | 吴昊 | Multi-section variable frequency water supply system |
CN105815811A (en) * | 2016-05-20 | 2016-08-03 | 江苏爱福特科技开发有限公司 | Automatic cigarette holder cleaning method |
CN105852213A (en) * | 2016-05-20 | 2016-08-17 | 江苏爱福特科技开发有限公司 | Intelligent multi-cigarette holder cleaning method |
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Application publication date: 20100203 |