CN204043214U - Health energy-saving boiler - Google Patents
Health energy-saving boiler Download PDFInfo
- Publication number
- CN204043214U CN204043214U CN201420519720.4U CN201420519720U CN204043214U CN 204043214 U CN204043214 U CN 204043214U CN 201420519720 U CN201420519720 U CN 201420519720U CN 204043214 U CN204043214 U CN 204043214U
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- heat preservation
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- thermal treatment
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Abstract
A kind of health energy-saving boiler, boiler comprises the thermal treatment zone, heat preservation zone and cooling zone, the switch of electric heater and control electric heater break-make is provided with in the thermal treatment zone, heat preservation zone is the body structure that heat-barrier material is made, heat preservation zone is communicated with bottom the thermal treatment zone by the first magnetic valve, the bottom of heat preservation zone is connected with boiling water discharge pipe, cooling zone is installed on the bottom of heat preservation zone, heat-exchange tube is provided with in cooling zone, the upper end of heat-exchange tube is connected to the bottom of heat preservation zone, the lower end of heat-exchange tube is provided with warm water outlet, the bottom of cooling zone is connected with running water inlet, the top of cooling zone is connected with running water outlet pipe, the upper end of running water outlet pipe is connected to the thermal treatment zone, the upper end of running water outlet pipe is provided with the second magnetic valve.
Description
Technical field
The utility model relates to boiler, particularly relates to a kind of health energy-saving boiler.
Background technology
At present, connoisseur advises that ordinary populace getting up early every day will be drunk water, and every day, amount of drinking water was no less than 2500ml, but due to the quickening of present rhythm of life, not many times that we do not go to drink water, but busy go to drink, because the just boiled water temperature of water dispenser is very high, must etc. wait about upper five minute its cooling just can drink, and it is unhealthy directly to drink the water do not heated, and hot and cold water is direct drinking mixed all the more so.And the people focusing on health can only wait boiling water to cool, and open water-cooled process at distribute heat, cause the loss of energy, a lot of people narrowly misses with healthy habits and customs thus, regrettable.
Along with improving constantly of level of office automation, rapidly, boiler becomes the requisite service class equipment in modern public place gradually in public drinking system development.But, most product hot water or cold water spacer assemblys of current use, cause first half to be in actual use boiling water, latter half is automatic watering due to water shortage in boiler, what people drank is no longer boiling water, but " mixing water " or " thousand boiling water " that repeatedly heats.Sanitationist is pointed out: after unboiled water and boiling water mixing, if do not have boiledly just to drink, the materials such as harmful bacterium likely can cause intestines problem; Drink for a long time " thousand boiling water ", too the person is done harm rather than good.In addition, the boiled rear temperature of water is very high, and people can not drink immediately, and scattered and disappeared in temperature-fall period heat, causes unnecessary energy loss.
Utility model content
The utility model will solve above-mentioned prior art Problems existing, provides that a kind of health is quick, the boiler of energy-conserving and environment-protective, reasonable in design, can Quick for warm water.
The utility model solves the technical scheme that its technical problem adopts: this health energy-saving boiler comprises the thermal treatment zone, heat preservation zone and cooling zone, the switch of electric heater and control electric heater break-make is provided with in the thermal treatment zone, heat preservation zone is the body structure that heat-barrier material is made, heat preservation zone is communicated with bottom the thermal treatment zone by the first magnetic valve, the bottom of heat preservation zone is connected with boiling water discharge pipe, cooling zone is installed on the bottom of heat preservation zone, heat-exchange tube is provided with in cooling zone, the upper end of heat-exchange tube is connected to the bottom of heat preservation zone, the lower end of heat-exchange tube is provided with warm water outlet, the bottom of cooling zone is connected with running water inlet, the top of cooling zone is connected with running water outlet pipe, the upper end of running water outlet pipe is connected to the thermal treatment zone, the upper end of running water outlet pipe is provided with the second magnetic valve.Boiling water burned in the thermal treatment zone flows in boiling water storage bin, and when needing warm water, only need boiling water be passed in heat-exchange tube, cold water in heat-exchange tube and cooling zone carries out heat exchange, the boiling water in heat-exchange tube is made to cool and become warm water fast, decrease out the water-cooled time, and running water in cooling zone can pass in the thermal treatment zone after heating up, reduce boiler and to boil water required energy.
In order to perfect further, heat-exchange tube is that helicoidal structure spirals in cooling zone.The contact area of the water in such increase heat-exchange tube and cooling zone, speeds cooling velocity.
Perfect further, the sidewall of the thermal treatment zone is provided with upper sensor and lower sensor.Upper sensor and lower sensor are the break-makes controlling the second magnetic valve according to the water level of the thermal treatment zone.
Perfect further, the sidewall of heat preservation zone is provided with level sensor and lower level sensor.Upper level sensor and lower level sensor are the break-makes controlling the first magnetic valve according to the water level in heat preservation zone.
Perfect further, hand-operated forced heater is installed in heat preservation zone.After such boiling water cools in heat preservation zone, can manually force heater to the boiling water heating of cooling.
Perfect further, heat preservation zone outer surface is provided with thermometer.
This energy-saving water boiler is made up of electrical heating district, heat preservation zone, three, cooling zone part, water tank, heating tube is provided with in electrical heating district, thermal treatment zone water tank is communicated with by magnetic valve with heat preservation zone water tank, water inlet is had above this water tank, by the ON/OFF of the control water inlet of the liquid level sensor in water tank and magnetic valve, the generation of " mixing water " or " thousand boiling water " can be prevented.
Heat preservation zone is positioned at below electrical heating district, and for storing boiling water, the bottom of heat preservation zone water tank is provided with hand-operated forced heater, can heat according to actual needs to attemperater.
Cooling zone is below heat preservation zone, by condenser pipe, the boiling water of heat preservation zone is directed through cooling zone storage tank, distribute heat to when boiling water flows through in cold water, cooled boiling water just can be drunk at once, cold water in storage tank absorbs heat, temperature can uprise, then add to after heating water tank can Fast Heating, thus saves electric energy.
The effect that the utility model is useful is: the utility model reasonable in design, boiled water fast by boiler, pass in boiling water storage bin after boiling water is burned, solve thousand and roll water problem, and boiling water storage bin is communicated with heat-exchange tube and storage tank, split water for cooling fast, therefore can fast fetching warm water, save the stand-by period, and the heat that boiling water distributes is passed in the water in storage tank, and the water in storage tank can pass in boiler, save the energy that boiler boils water, and play energy-conservation effect.
Accompanying drawing explanation
Fig. 1 is structural representation of the present utility model.
Description of reference numerals: the thermal treatment zone 1, electric heater 2, the first magnetic valve 3, heat preservation zone 4, hand-operated forced heater 5, cooling zone 6, boiling water discharge pipe 7, warm water outlet 8, running water inlet 9, lower level sensor 10, upper level sensor 11, running water outlet pipe 12, thermometer 13, lower sensor 14, upper sensor 15, second magnetic valve 16, heat-exchange tube 17.
Detailed description of the invention
Below in conjunction with accompanying drawing, the utility model is described in further detail:
With reference to accompanying drawing: the functional energy-saving boiler in the present embodiment, boiler comprises the thermal treatment zone 1, heat preservation zone 4 and cooling zone 6, the switch of electric heater 2 and control electric heater 2 break-make is provided with in the thermal treatment zone 1, the body structure that heat preservation zone 4 is made for heat-barrier material, heat preservation zone 4 is communicated with bottom the thermal treatment zone 1 by the first magnetic valve 3, the bottom of heat preservation zone 4 is connected with boiling water discharge pipe 7, cooling zone 6 is installed on the bottom of heat preservation zone 4, heat-exchange tube 17 is provided with in cooling zone 6, the upper end of heat-exchange tube 17 is connected to the bottom of heat preservation zone 4, the lower end of heat-exchange tube 17 is provided with warm water outlet 8, the bottom of cooling zone 6 is connected with running water inlet 9, the top of cooling zone 6 is connected with running water outlet pipe 12, the upper end of running water outlet pipe 12 is connected to the thermal treatment zone 1, the upper end of running water outlet pipe 12 is provided with the second magnetic valve 16.
Heat-exchange tube 17 spirals in cooling zone 6 for helicoidal structure.The bottom of heat preservation zone 4 sidewall is provided with the 3rd magnetic valve 5.The sidewall of the thermal treatment zone 1 is provided with upper sensor 15 and lower sensor 14.The sidewall of heat preservation zone 4 is provided with level sensor 11 and lower level sensor 10.Hand-operated forced heater 5 is installed in heat preservation zone 4.Heat preservation zone 4 outer surface is provided with thermometer 13.
The running water outlet pipe 12 of electrical heating district 1 water tank is equipped with the second magnetic valve 16, the action of the second magnetic valve 16 controls by upper sensor 15 and lower sensor 14, the side in electrical heating district 1 is provided with electric heater 2, have the first magnetic valve 3 bottom electrical heating district 1 to be communicated with heat preservation zone 4 water tank, utilize the first magnetic valve 3 to control.When the liquid-level switch in electrical heating district 1 arrives lower sensor 14, the second magnetic valve 16 is opened, and electrical heating district 1 starts moisturizing, until water level reaches upper sensor 15, the second magnetic valve 16 cuts out, and moisturizing terminates.The ON/OFF of electric heater 2 is controlled by the upper level sensor 11 of heat preservation zone 4 and lower level sensor 10, when heat preservation zone 4 liquid-level switch indicating value is to upper level sensor 11, electric heater 2 is opened, red led on boiler front is lighted and is represented that electrical heating district heats, after water is heated to boiling, temperature sensor collects signal and controls to disconnect electrical heating power supply, and electrical heating is complete, and green indicating lamp is lighted.
Irrigating gate is opened at top, heat preservation zone 4, after loading onto the first magnetic valve 3, be connected with electrical heating district 11, the action of the first magnetic valve 3 controls by the liquid level sensor of heat preservation zone 4, have two irrigating gates bottom heat preservation zone 4, boiling water flows out from boiling water discharge pipe 7 through one of them irrigating gate.Liquid-level switch in heat preservation zone 4 establishes level sensor 11 and lower level sensor 10.When the liquid level in heat preservation zone 4 arrives upper level sensor 11, the electric heater 2 in electrical heating district 1 is opened, and starts to heat up water.When the liquid level in heat preservation zone 4 arrives lower level sensor 10 and tank wall switch indication light turns green, the boiling water that electrical heating district 1 opened by the first magnetic valve 3 starts to heat preservation zone 4 water tank moisturizing, until the thermal treatment zone 1 water tank empty van, the first magnetic valve 3 cuts out.
The utility model reasonable in design, boiled water fast by the thermal treatment zone 1, pass in boiling water heat preservation zone 4 after boiling water is burned, solve thousand and roll water problem, and heat preservation zone 4 is communicated with heat-exchange tube 17, and split water for cooling fast by cooling zone 6, and therefore can fast fetching warm water, save the stand-by period, and the heat that boiling water distributes is passed in the running water in cooling zone 6, and the running water in cooling zone 6 can pass in the thermal treatment zone 1, save the energy that the thermal treatment zone 1 boils water, and play energy-conservation effect.
Although the utility model has illustrated by reference to preferred embodiment and has described, those skilled in the art should understand, and in the scope of claims, can do the various change in form and details.
Claims (7)
1. a health energy-saving boiler, it is characterized in that: described boiler comprises the thermal treatment zone (1), heat preservation zone (4) and cooling zone (6), the switch of electric heater (2) and control electric heater (2) break-make is provided with in the thermal treatment zone (1), the body structure that heat preservation zone (4) is made for heat-barrier material, heat preservation zone (4) is communicated with the thermal treatment zone (1) bottom by the first magnetic valve (3), the bottom of heat preservation zone (4) is connected with boiling water discharge pipe (7), described cooling zone (6) is installed on the bottom of heat preservation zone (4), heat-exchange tube (17) is provided with in cooling zone (6), the upper end of heat-exchange tube (17) is connected to the bottom of heat preservation zone (4), the lower end of heat-exchange tube (17) is provided with warm water outlet (8), the bottom of described cooling zone (6) is connected with running water inlet (9), the top of described cooling zone (6) is connected with running water outlet pipe (12), the upper end of running water outlet pipe (12) is connected to the thermal treatment zone (1), the upper end of running water outlet pipe (12) is provided with the second magnetic valve (16).
2. health energy-saving boiler according to claim 1, is characterized in that: described heat-exchange tube (17) spirals in cooling zone (6) for helicoidal structure.
3. health energy-saving boiler according to claim 1, is characterized in that: the bottom of described heat preservation zone (4) sidewall is provided with the first magnetic valve (3).
4. health energy-saving boiler according to claim 1, is characterized in that: the sidewall of the described thermal treatment zone (1) is provided with upper sensor (15) and lower sensor (14).
5. health energy-saving boiler according to claim 1, is characterized in that: the sidewall of described heat preservation zone (4) is provided with level sensor (11) and lower level sensor (10).
6. health energy-saving boiler according to claim 1, is characterized in that: be provided with hand-operated forced heater (5) in described heat preservation zone (4).
7. health energy-saving boiler according to claim 1, is characterized in that: described heat preservation zone (4) outer surface is provided with thermometer (13).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201420519720.4U CN204043214U (en) | 2014-09-11 | 2014-09-11 | Health energy-saving boiler |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201420519720.4U CN204043214U (en) | 2014-09-11 | 2014-09-11 | Health energy-saving boiler |
Publications (1)
Publication Number | Publication Date |
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CN204043214U true CN204043214U (en) | 2014-12-24 |
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Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN201420519720.4U Expired - Fee Related CN204043214U (en) | 2014-09-11 | 2014-09-11 | Health energy-saving boiler |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105371477A (en) * | 2015-11-24 | 2016-03-02 | 余伯坚 | Efficient commercial electric heating water dispenser |
CN106940081A (en) * | 2017-04-26 | 2017-07-11 | 叶海青 | One kind drinks water heating system and its control method |
-
2014
- 2014-09-11 CN CN201420519720.4U patent/CN204043214U/en not_active Expired - Fee Related
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105371477A (en) * | 2015-11-24 | 2016-03-02 | 余伯坚 | Efficient commercial electric heating water dispenser |
CN106940081A (en) * | 2017-04-26 | 2017-07-11 | 叶海青 | One kind drinks water heating system and its control method |
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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: 20141224 Termination date: 20150911 |
|
EXPY | Termination of patent right or utility model |