CN202485094U - Energy-saving and environment-friendly automatic boiling water continuous supply device - Google Patents
Energy-saving and environment-friendly automatic boiling water continuous supply device Download PDFInfo
- Publication number
- CN202485094U CN202485094U CN2012200221477U CN201220022147U CN202485094U CN 202485094 U CN202485094 U CN 202485094U CN 2012200221477 U CN2012200221477 U CN 2012200221477U CN 201220022147 U CN201220022147 U CN 201220022147U CN 202485094 U CN202485094 U CN 202485094U
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- boiler
- heat pump
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Abstract
The utility model relates to the field of environmental protection and energy conservation, in particular to an energy-saving and environment-friendly automatic boiling water continuous supply device. A tap water connecting pipe is sequentially connected with a service valve, a filter and an automatic regulation electric valve, wherein the service valve leads to an instant heating type high-temperature air source heat pump, a water outlet of the instant heating type high-temperature air source heat pump is connected with the service valve through a connecting pipe, an initial heating water supply pipeline leads to a boiling water furnace, the water outlet of the boiling water furnace is sequentially connected with the service valve and an automatic temperature control valve through the connecting pipe, the service valve is connected to an interface of a water tank liquid level float valve of a heat insulation water tank through a secondary heating water supply pipeline, and the water outlet of the heat insulation water tank is sequentially connected with the service valve, a water supply pipeline and a user-end water supply device through the connecting pipe; and an automatic control cabinet of the device is respectively connected with the automatic temperature control valve, a temperature sensor of the heat pump, the temperature sensor of the boiling water furnace, the boiling water furnace and the automatic regulation electric valve through a control connecting wire of the temperature control valve, the control connecting wire of the sensor of the heat pump, the control connecting wire of the sensor of the boiling water furnace, the control connecting wire of the boiling water furnace and the control connecting wire of the regulation valve.
Description
Technical field
The utility model relates to the environmental protection and energy saving field, concretely, relates to a kind of energy saving and environment friendly automatic boiling water device without interruption.
Background technology
Now fuel oil, gas boiler operating cost are big, and exist part to pollute, and use in public places such as schools and to have certain potential safety hazard; Electric water boiler operating cost is too high.And original boiling water system generally all is after emitting a certain amount of boiling water, suspends the supply boiling water, waits for that boiling water device starts working, the heating boiling water, and need wait for a period of time and could decontrol water again this moment, if number of users is too much continuously, can cause inconveniences such as queuing.
Summary of the invention
To above-mentioned technical problem; The purpose of the utility model is to provide a kind of energy saving and environment friendly automatic boiling water device without interruption; Running water pipe connects Instant heating type temperature air-source heat pump through automatic adjusting motor-driven valve, and outlet connects boiler, is connected to attemperater through autoamtic temperature controlling valve; After realizing that running water gets into Instant heating type temperature air-source heat pump; By the energy-conservation temperature (80 ℃) that is heated to setting, get into boiler after, heating promptly reaches the boiling water temperature to import attemperater automatically for use slightly.
The utility model is by filter; Automatically regulate motor-driven valve; Instant heating type temperature air-source heat pump; First heated feed water pipeline; Boiler; Autoamtic temperature controlling valve; The post bake feedwater piping; Attemperater; Water supply line; The user side water-feed; The high water tank ball-cock assembly; Temperature-sensing valve control line; The boiler temperature sensor; Boiler sensor control line; Boiler control line; Automatic control cabinet; Heat pump sensor control line; Control valve control line; Heat pump temperature sensor and a plurality of service valve constitute; The running water connecting leg connects service valve, filter successively, regulates motor-driven valve, service valve to Instant heating type temperature air-source heat pump automatically; Instant heating type temperature air-source heat pump delivery port connecting leg connects service valve, first heated feed water pipeline to boiler; Boiler delivery port connecting leg successively connects service valve, autoamtic temperature controlling valve, service valve and is connected to the high water tank ball-cock assembly interface of attemperater through the post bake feedwater piping, and attemperater delivery port connecting leg successively connects service valve, water supply line, user side water-feed; The device automatic control cabinet is connected autoamtic temperature controlling valve, heat pump temperature sensor, boiler temperature sensor, boiler and regulates motor-driven valve automatically through temperature-sensing valve control line, heat pump sensor control line, boiler sensor control line, boiler control line and control valve control line respectively.
The advantage of the utility model is: this device is to the supply channel of boiler, to install energy-conservation tangible Instant heating type temperature air-source heat pump device at running water additional, and the thermal efficiency is more than 400%, and the instant heating leaving water temperature is more than 80 ℃; Disposed some automatic control devices and heater interlock control simultaneously, simple in structure, environmental protection and energy saving; Efficient quick, consumption reduction is obvious, and this heat pump apparatus of air source can directly be heated to water temperature more than 80 ℃; Shorten the electrical heating time greatly, save electric energy, both solved continuously the purpose of supply boiling water automatically; Reach energy-saving effect again, the less manpower that saves time is on duty, concerning concentrating the water user side, need not wait in line to fetch boiling water; This device need not to use water pump simultaneously, saves the pump consuming electric power; There are not any pollution and potential safety hazard.
Description of drawings
Fig. 1 is the structural representation of the utility model.
Reference numeral shown in Figure 1 is following: service valve a1; Filter 2; Automatically regulate motor-driven valve 3; Service valve b4; Instant heating type temperature air-source heat pump 5; Service valve c6; First heated feed water pipeline 7; Boiler 8; Autoamtic temperature controlling valve 9; Post bake feedwater piping 10; Attemperater 11; Service valve d12; Water supply line 13; User side water-feed 14; High water tank ball-cock assembly 15; Service valve e16; Service valve f17; Temperature-sensing valve control line 18; Boiler temperature sensor 19; Boiler sensor control line 20; Boiler control line 21; Automatic control cabinet 22; Heat pump sensor control line 23; Control valve control line 24; Heat pump temperature sensor 25.
The specific embodiment
Energy saving and environment friendly automatic boiling water device without interruption; Comprise by the running water connecting leg and connect service valve a1, filter 2 successively, regulate motor-driven valve 3, service valve b4 to Instant heating type temperature air-source heat pump 5 automatically; Instant heating type temperature air-source heat pump 5 delivery port connecting legs connect service valve c6, first heated feed water pipeline 7 to boiler 8; Boiler 8 delivery ports connecting leg successively connect service valve f17, autoamtic temperature controlling valve 9, service valve e16 and are connected to high water tank ball-cock assembly 15 interfaces of attemperater 11 through post bake feedwater piping 10, and attemperater 11 delivery ports connecting leg successively connect service valve d12, water supply line 13, user side water-feed 14; Device automatic control cabinet 22 connects autoamtic temperature controlling valves 9, heat pump temperature sensor 25, boiler temperature sensor 19, boiler 8, regulates motor-driven valve 3 automatically through temperature-sensing valve control line 18, heat pump sensor control line 23, boiler sensor control line 20, boiler control line 21, control valve control line 24 respectively.
Running water pipe connects Instant heating type temperature air-source heat pump 5 through regulating motor-driven valve 3 automatically; Outlet connects boiler 8; Be connected to attemperater 11 through autoamtic temperature controlling valve 9, after the realization running water gets into Instant heating type temperature air-source heat pump 1, by the energy-conservation temperature (80 ℃) that is heated to setting; After getting into boiler 8, heating promptly reaches the boiling water temperature to import attemperater 11 automatically for use slightly.
(thermal efficiency is 400% at first to make running water pass through Instant heating type temperature air-source heat pump 5; Leaving water temperature is the energy saver more than 80 ℃) heat; Running water gets into before the Instant heating type temperature air-source heat pump 5; Automatic control cabinet 22 is through the temperature signal of heat pump temperature sensor 25 feedbacks, and the flow of motor-driven valve 3 adjustment couplings is regulated in instruction automatically, guarantees that Instant heating type temperature air-source heat pump 5 moves under the condition that goes out water termostat (80 ℃);
After getting into boilers 8 by the hot water (80 ℃) of this power save mode heating through first heated feed water pipeline 7; Boiler 8 only consumes a little electric energy and just is heated to be boiling water; Automatic control cabinet 22 is through the temperature signal of boiler temperature sensor 19 feedbacks, and instruction autoamtic temperature controlling valve 9 moves, and boiling water flows into attemperater 11 through heated feed water pipeline 10; A high water tank ball-cock assembly 15 is installed in attemperater 11 upper ends; After topped up with water in the attemperater 11, high water tank ball-cock assembly 15 can be closed water inlet automatically, makes and no longer includes the hot water injection in the attemperater 11; Attemperater 11 hot water outlets connect water supply line 13, and end is connected to user side water-feed 14, and the user can directly use boiling water.
Heat pump temperature sensor 25 sends instruction through automatic control cabinet 22; Automatic control and adjustment motor-driven valve 3 makes running water get into Instant heating type temperature air-source heat pump 5 with the normal temperature state; The outlet instant heating, the temperature that gets into boiler 8 reaches more than 80 ℃, thereby the actual heating work time of boiler 8 is shortened greatly; So promptly guarantee the requirement of boiling water temperature, reach purpose of energy saving (the Instant heating type temperature air-source heat pump thermal efficiency is more than 400%) again.Control through the instruction of electrical autocontrol cabinet 22 and the coupling of autoamtic temperature controlling valve 9 through boiler temperature sensor 19; The water that reaches the boiling water temperature requirement can be transported in the attemperater 11 through boiler 8 automatically, reach and to use the boiling water requirement at any time continuously automatically.
This device is realized control automatically: heat pump temperature sensor 25 sends to automatic control cabinet 22 with hot water temperature's signal of Instant heating type temperature air-source heat pump 5; Automatic control cabinet 22 is according to the water temperature height; Control automatic adjusting motor-driven valve 3, regulate the water supply flow of running water.Boiler temperature sensor 19 sends to automatic control cabinet 22 with hot water temperature's signal of boiler 8, if water temperature reaches the boiling water standard, then automatic control cabinet 22 control autoamtic temperature controlling valves 9 are opened, and guarantee the boiling water temperature in the attemperater 11.
Claims (1)
1. energy saving and environment friendly automatic boiling water device without interruption is characterized in that: by filter, regulate that motor-driven valve, Instant heating type temperature air-source heat pump, first heated feed water pipeline, boiler, autoamtic temperature controlling valve, post bake feedwater piping, attemperater, water supply line, user side water-feed, high water tank ball-cock assembly, temperature-sensing valve control line, boiler temperature sensor, boiler sensor control line, boiler control line, automatic control cabinet, heat pump sensor control line, control valve control line, heat pump temperature sensor and a plurality of service valve constitute automatically; The running water connecting leg connects service valve, filter successively, regulates motor-driven valve, service valve to Instant heating type temperature air-source heat pump automatically; Instant heating type temperature air-source heat pump delivery port connecting leg connects service valve, first heated feed water pipeline to boiler; Boiler delivery port connecting leg successively connects service valve, autoamtic temperature controlling valve, service valve and is connected to the high water tank ball-cock assembly interface of attemperater through the post bake feedwater piping, and attemperater delivery port connecting leg successively connects service valve, water supply line, user side water-feed; The device automatic control cabinet is connected autoamtic temperature controlling valve, heat pump temperature sensor, boiler temperature sensor, boiler and regulates motor-driven valve automatically through temperature-sensing valve control line, heat pump sensor control line, boiler sensor control line, boiler control line and control valve control line respectively.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN2012200221477U CN202485094U (en) | 2012-01-18 | 2012-01-18 | Energy-saving and environment-friendly automatic boiling water continuous supply device |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN2012200221477U CN202485094U (en) | 2012-01-18 | 2012-01-18 | Energy-saving and environment-friendly automatic boiling water continuous supply device |
Publications (1)
Publication Number | Publication Date |
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CN202485094U true CN202485094U (en) | 2012-10-10 |
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Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN2012200221477U Expired - Fee Related CN202485094U (en) | 2012-01-18 | 2012-01-18 | Energy-saving and environment-friendly automatic boiling water continuous supply device |
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CN (1) | CN202485094U (en) |
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
WO2018213988A1 (en) * | 2017-05-22 | 2018-11-29 | 南通鑫金建设集团有限公司 | Integrally moving boiler room |
CN109532946A (en) * | 2018-11-28 | 2019-03-29 | 中车青岛四方机车车辆股份有限公司 | A kind of electric water boiler and electric water boiler group of rail vehicle |
-
2012
- 2012-01-18 CN CN2012200221477U patent/CN202485094U/en not_active Expired - Fee Related
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
WO2018213988A1 (en) * | 2017-05-22 | 2018-11-29 | 南通鑫金建设集团有限公司 | Integrally moving boiler room |
CN109532946A (en) * | 2018-11-28 | 2019-03-29 | 中车青岛四方机车车辆股份有限公司 | A kind of electric water boiler and electric water boiler group of rail vehicle |
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Legal Events
Date | Code | Title | Description |
---|---|---|---|
C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20121010 Termination date: 20150118 |
|
EXPY | Termination of patent right or utility model |