CN205261923U - Air can positive displacement hot -water heating system - Google Patents

Air can positive displacement hot -water heating system Download PDF

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Publication number
CN205261923U
CN205261923U CN201521103526.9U CN201521103526U CN205261923U CN 205261923 U CN205261923 U CN 205261923U CN 201521103526 U CN201521103526 U CN 201521103526U CN 205261923 U CN205261923 U CN 205261923U
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air energy
positive displacement
heat exchange
storage tank
hot water
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CN201521103526.9U
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Chinese (zh)
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何子重
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Zhejiang Lide Energy Conservation Technology Co Ltd
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Zhejiang Lide Energy Conservation Technology Co Ltd
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Abstract

The utility model relates to an air can positive displacement hot -water heating system. Mainly solved current boiler hot water system energy consumption big, have potential safety hazard and a high problem of running cost. Air can positive displacement hot -water heating system, it includes air ability heating device, positive displacement heat transfer storage tank, positive displacement gas heating device, hot water water supply pipe, hot water return water pipe, temperature automatic control device and cold water water supply pipe, the air can be provided with air -source heat pump, air ability heat supply export pipeline, air ability heat supply backflow pipeline, expansion drum by heating device, positive displacement heat transfer storage tank passes through positive displacement heat transfer tank outlet pipe connection positive displacement gas heating device, positive displacement gas heating device is connected with hot water water supply pipe, hot water return water pipe is connected with cold water water supply pipe. This air can positive displacement hot -water heating system compact structure, degree of automation is high, and green, running cost hang down.

Description

Air energy volume type heating water system
Technical field
The utility model relates to fluid heating technical field, is specifically related to a kind of air energy volume type heating water system.
Background technology
At present, most units meet hot water and heating demand with boiler, and steam generator system not only energy consumption is large and have potential safety hazard, and boiler attendance and cost of labor increase year after year, causes multiple pressure to applying unit, and boiler improvement has been trend of the times. Therefore, find a kind of environmental protection, hot-water heating system that operating cost is low is necessary.
Utility model content
In order to overcome the deficiency of background technology, the utility model provides a kind of air energy volume type heating water system, mainly solved existing boiler hot-water system energy consumption large, have potential safety hazard and a high problem of operating cost, this air energy volume type heating water system compact conformation, automaticity is high, adopts air to heat, heat hydraulic pressure, temperature are easy to control, simple to operation, improve operating efficiency and security, environmental protection, operating cost are low.
The technical scheme that the utility model adopts is: a kind of air energy volume type heating water system, and it comprises air energy heater, positive displacement heat exchange storage tank, volumetric gas heater, hot water feeding pipe road, hot water backwater's pipeline, automatic temperature control and cold water water supply line; Described air energy heater is provided with air energy heat pump, air energy heat supply outlet conduit, air energy heat supply reflux line, expansion drum; Described air energy heat pump is connected described positive displacement heat exchange storage tank by air energy heat supply outlet conduit with air energy heat supply reflux line; Described positive displacement heat exchange tank inside is provided with heat exchange coil; Described positive displacement heat exchange storage tank is provided with positive displacement heat exchange storage tank outlet conduit; Described positive displacement heat exchange storage tank connects volumetric gas heater by positive displacement heat exchange storage tank outlet conduit; Described volumetric gas heater is connected with hot water feeding pipe road; Described hot water backwater's pipeline is connected with cold water water supply line; Described hot water backwater's pipeline connects positive displacement heat exchange storage tank; Described automatic temperature control comprises that switch board, air energy heat pump start controller, air energy circulating pump, air energy heat supplying pipeline temp probe, positive displacement heat exchange tank temperature probe, tank level probe, storage tank export pipeline temp probe, volumetric gas heater startup controller, hot water for water-circulating pump, hot water backwater's pipeline temp probe, hot water backwater's pipeline electromagnetic valve and cold water supply channel magnetic valve; Described air energy heat pump is directly-heated type air energy heat pump; Described expansion drum is connected on air energy heat supply reflux line; In described air energy heater, circulation has air energy heat transferring medium; Described heat exchange coil internal circulation has air energy heat transferring medium; Described positive displacement heat exchange storage tank outer surface is provided with heat-insulation layer; Described positive displacement heat exchange storage tank is also provided with positive displacement heat exchange storage tank sewage draining exit and Pressure gauge; Described positive displacement heat exchange storage tank sewage draining exit is positioned at positive displacement heat exchange storage tank bottom; Described volumetric gas heater is volumetric gas water heater; Described volumetric gas heater is provided with gas inlet pipe, volumetric gas heater sewage draining exit; Described air energy heat supply outlet conduit, air energy heat supply reflux line, expansion drum, positive displacement heat exchange storage tank outlet conduit, hot water feeding pipe road and hot water backwater's pipeline are provided with heat-insulation layer; Described switch board is connected with air energy heat pump and starts controller, air energy circulating pump, air energy heat supplying pipeline temp probe, positive displacement heat exchange tank temperature probe, tank level probe, storage tank export pipeline temp probe, volumetric gas heater startup controller, hot water for water-circulating pump, hot water backwater's pipeline temp probe, hot water backwater's pipeline electromagnetic valve and cold water supply channel magnetic valve; Described air energy heat pump starts controller and is located on air energy heat pump; Described air energy circulating pump is located on air energy heat supply reflux line; Described air energy heat supplying pipeline temp probe is located on air energy heat supply outlet conduit; Described positive displacement heat exchange tank temperature probe is located at positive displacement heat exchange storage tank, and described positive displacement heat exchange tank temperature probe one end is connected on temperature automatic control cabinet, and the other end stretches in positive displacement heat exchange storage tank; Described tank level probe is located at positive displacement heat exchange storage tank, and described tank level probe one end is connected on temperature automatic control cabinet, and the other end stretches in positive displacement heat exchange storage tank; Described storage tank export pipeline temp probe is located on positive displacement heat exchange storage tank outlet conduit; Described volumetric gas heater starts controller and is located on volumetric gas heater; Described hot water is located on hot water feeding pipe road for water-circulating pump; Described hot water backwater's pipeline temp probe is located on hot water backwater's pipeline; Described hot water backwater's pipeline electromagnetic valve is located on hot water backwater's pipeline; Described cold water supply channel magnetic valve is located on cold water water supply line; On described cold water water supply line, be also provided with filter.
The beneficial effects of the utility model are: owing to taking technique scheme, this air energy volume type heating water system compact conformation, automaticity is high, adopt air to heat, heat hydraulic pressure, temperature are easy to control, simple to operation, improve operating efficiency and security, environmental protection, operating cost are low.
Brief description of the drawings
Fig. 1 is structural representation of the present utility model.
In figure 100, air energy heater; 110, air energy heat pump; 120, air energy heat supply outlet conduit; 130, air energy heat supply reflux line; 140, expansion drum; 200, positive displacement heat exchange storage tank; 210, positive displacement heat exchange storage tank outlet conduit; 300, volumetric gas heater; 400, hot water feeding pipe road; 500, hot water backwater's pipeline; 600, automatic temperature control; 601, switch board; 602, air energy heat pump starts controller; 603, air energy circulating pump; 604, air energy heat supplying pipeline temp probe; 605, positive displacement heat exchange tank temperature probe; 606, tank level probe; 607, storage tank export pipeline temp probe; 608, volumetric gas heater starts controller; 609, hot water is for water-circulating pump; 610, hot water backwater's pipeline temp probe; 611, hot water backwater's pipeline electromagnetic valve; 612, cold water supply channel magnetic valve; 700, cold water water supply line.
Detailed description of the invention
Below in conjunction with accompanying drawing, the utility model embodiment is described further.
As shown in Figure 1, a kind of air energy volume type heating water system, it comprises air energy heater 100, positive displacement heat exchange storage tank 200, volumetric gas heater 300, hot water feeding pipe road 400, hot water backwater's pipeline 500, automatic temperature control 600 and cold water water supply line 700;
Described air energy heater 100 is provided with air energy heat pump 110, air energy heat supply outlet conduit 120, air energy heat supply reflux line 130, expansion drum 140;
Described air energy heat pump 110 is directly-heated type air energy heat pump;
Described air energy heat pump 110 is connected described positive displacement heat exchange storage tank 200 by air energy heat supply outlet conduit 120 with air energy heat supply reflux line 130;
Described expansion drum 140 is connected on air energy heat supply reflux line 130;
In described air energy heater 100, circulation has air energy heat transferring medium;
Described positive displacement heat exchange storage tank 200 inside are provided with heat exchange coil, and described heat exchange coil internal circulation has air energy heat transferring medium;
Described positive displacement heat exchange storage tank 200 outer surfaces are provided with heat-insulation layer;
Described positive displacement heat exchange storage tank 200 is provided with positive displacement heat exchange storage tank outlet conduit 210, positive displacement heat exchange storage tank sewage draining exit and Pressure gauge;
Described positive displacement heat exchange storage tank sewage draining exit is positioned at positive displacement heat exchange storage tank 200 bottoms;
Described positive displacement heat exchange storage tank 200 connects volumetric gas heater 300 by positive displacement heat exchange storage tank outlet conduit 210;
Described volumetric gas heater 300 is volumetric gas water heater;
Described volumetric gas heater 300 is provided with gas inlet pipe, volumetric gas heater sewage draining exit;
Described volumetric gas heater 300 is connected with hot water feeding pipe road 400;
Described hot water backwater's pipeline 500 is connected with cold water water supply line 700;
Described hot water backwater's pipeline 500 connects positive displacement heat exchange storage tank 200;
Described automatic temperature control 600 comprises that switch board 601, air energy heat pump start controller 602, air energy circulating pump 603, air energy heat supplying pipeline temp probe 604, positive displacement heat exchange tank temperature probe 605, tank level probe 606, storage tank export pipeline temp probe 607, volumetric gas heater startup controller 608, hot water for water-circulating pump 609, hot water backwater's pipeline temp probe 610, hot water backwater's pipeline electromagnetic valve 611 and cold water supply channel magnetic valve 612;
Described switch board 601 is connected with air energy heat pump and starts controller 602, air energy circulating pump 603, air energy heat supplying pipeline temp probe 604, positive displacement heat exchange tank temperature probe 605, tank level probe 606, storage tank export pipeline temp probe 607, volumetric gas heater startup controller 608, hot water for water-circulating pump 609, hot water backwater's pipeline temp probe 610, hot water backwater's pipeline electromagnetic valve 611 and cold water supply channel magnetic valve 612;
Described air energy heat pump starts controller 602 and is located on air energy heat pump 110;
Described air energy circulating pump 603 is located on air energy heat supply reflux line 130;
Described air energy heat supplying pipeline temp probe 604 is located on air energy heat supply outlet conduit 120;
Described positive displacement heat exchange tank temperature probe 605 is located at positive displacement heat exchange storage tank 200, and described positive displacement heat exchange tank temperature 605 one end of popping one's head in are connected on temperature automatic control cabinet 601, and the other end stretches in positive displacement heat exchange storage tank 200;
Described tank level probe 606 is located at positive displacement heat exchange storage tank 200, and described tank level 606 one end of popping one's head in are connected on temperature automatic control cabinet, and the other end stretches in positive displacement heat exchange storage tank 200;
Described storage tank export pipeline temp probe 607 is located on positive displacement heat exchange storage tank outlet conduit 210;
Described volumetric gas heater starts controller 608 and is located on volumetric gas heater 300;
Described hot water is located on hot water feeding pipe road 400 for water-circulating pump 609;
Described hot water backwater's pipeline temp probe 610 is located on hot water backwater's pipeline 500;
Described hot water backwater's pipeline electromagnetic valve 611 is located on hot water backwater's pipeline 500;
Described cold water supply channel magnetic valve 612 is located on cold water water supply line 700;
On described cold water water supply line 700, be also provided with filter;
Described air energy heat supply outlet conduit 120, air energy heat supply reflux line 130, expansion drum 140, positive displacement heat exchange storage tank outlet conduit 210, hot water feeding pipe road 400 and hot water backwater's pipeline 500 are provided with heat-insulation layer.
Its course of work is as described below: when positive displacement heat exchange tank temperature is popped one's head in 605 temperature during lower than a certain setting value, air energy heat pump starts controller 602 and air energy circulating pump 603 starts, air energy heater 100 is worked, by the water heating in positive displacement heat exchange storage tank 200; Pop one's head in the difference of 605 temperature while being less than a certain setting value when air energy heat supplying pipeline temp probe 604 temperature and positive displacement heat exchange tank temperature, and air energy heater 100 quits work.
When hot water backwater's pipeline temp probe 610 temperature are during lower than a certain design temperature, hot water starts for water-circulating pump 609, and pipeline low-temperature hydraulic pressure is entered to heating in positive displacement heat exchange storage tank 200.
In the time that storage tank export pipeline temp probe 607 temperature are less than a certain setting value, volumetric gas heater starts controller 608 and starts, and volumetric gas heater 300 heats; In the time that storage tank export pipeline temp probe 607 temperature are greater than a certain setting value, volumetric gas heater 300 is without startup, and hot water is directly for to water end (W.E.).
Every technical staff's notice: although the utility model describes according to above-mentioned detailed description of the invention; but invention thought of the present utility model is not limited in this utility model; the repacking of any utilization inventive concept, all will include in this patent scope of patent protection.

Claims (7)

1. an air energy volume type heating water system, comprise air energy heater, positive displacement heat exchange storage tank, volumetric gas heater, hot water feeding pipe road, hot water backwater's pipeline, automatic temperature control and cold water water supply line, it is characterized in that: described air energy heater is provided with air energy heat pump, air energy heat supply outlet conduit, air energy heat supply reflux line, expansion drum; Described air energy heat pump is connected described positive displacement heat exchange storage tank by air energy heat supply outlet conduit with air energy heat supply reflux line; Described positive displacement heat exchange tank inside is provided with heat exchange coil; Described positive displacement heat exchange storage tank is provided with positive displacement heat exchange storage tank outlet conduit; Described positive displacement heat exchange storage tank connects volumetric gas heater by positive displacement heat exchange storage tank outlet conduit; Described volumetric gas heater is connected with hot water feeding pipe road; Described hot water backwater's pipeline is connected with cold water water supply line; Described hot water backwater's pipeline connects positive displacement heat exchange storage tank; Described automatic temperature control comprises that switch board, air energy heat pump start controller, air energy circulating pump, air energy heat supplying pipeline temp probe, positive displacement heat exchange tank temperature probe, tank level probe, storage tank export pipeline temp probe, volumetric gas heater startup controller, hot water for water-circulating pump, hot water backwater's pipeline temp probe, hot water backwater's pipeline electromagnetic valve and cold water supply channel magnetic valve.
2. air energy volume type heating water system according to claim 1, is characterized in that: described air energy heat pump is directly-heated type air energy heat pump; Described expansion drum is connected on air energy heat supply reflux line; In described air energy heater, circulation has air energy heat transferring medium.
3. air energy volume type heating water system according to claim 1, is characterized in that: described heat exchange coil internal circulation has air energy heat transferring medium; Described positive displacement heat exchange storage tank outer surface is provided with heat-insulation layer; Described positive displacement heat exchange storage tank is also provided with positive displacement heat exchange storage tank sewage draining exit and Pressure gauge; Described positive displacement heat exchange storage tank sewage draining exit is positioned at positive displacement heat exchange storage tank bottom.
4. air energy volume type heating water system according to claim 1, is characterized in that: described volumetric gas heater is volumetric gas water heater; Described volumetric gas heater is provided with gas inlet pipe, volumetric gas heater sewage draining exit.
5. air energy volume type heating water system according to claim 1, is characterized in that: described air energy heat supply outlet conduit, air energy heat supply reflux line, expansion drum, positive displacement heat exchange storage tank outlet conduit, hot water feeding pipe road and hot water backwater's pipeline are provided with heat-insulation layer.
6. air energy volume type heating water system according to claim 1, is characterized in that: described switch board is connected with air energy heat pump and starts controller, air energy circulating pump, air energy heat supplying pipeline temp probe, positive displacement heat exchange tank temperature probe, tank level probe, storage tank export pipeline temp probe, volumetric gas heater startup controller, hot water for water-circulating pump, hot water backwater's pipeline temp probe, hot water backwater's pipeline electromagnetic valve and cold water supply channel magnetic valve; Described air energy heat pump starts controller and is located on air energy heat pump; Described air energy circulating pump is located on air energy heat supply reflux line; Described air energy heat supplying pipeline temp probe is located on air energy heat supply outlet conduit; Described positive displacement heat exchange tank temperature probe is located at positive displacement heat exchange storage tank, and described positive displacement heat exchange tank temperature probe one end is connected on temperature automatic control cabinet, and the other end stretches in positive displacement heat exchange storage tank; Described tank level probe is located at positive displacement heat exchange storage tank, and described tank level probe one end is connected on temperature automatic control cabinet, and the other end stretches in positive displacement heat exchange storage tank; Described storage tank export pipeline temp probe is located on positive displacement heat exchange storage tank outlet conduit; Described volumetric gas heater starts controller and is located on volumetric gas heater; Described hot water is located on hot water feeding pipe road for water-circulating pump; Described hot water backwater's pipeline temp probe is located on hot water backwater's pipeline; Described hot water backwater's pipeline electromagnetic valve is located on hot water backwater's pipeline; Described cold water supply channel magnetic valve is located on cold water water supply line.
7. air energy volume type heating water system according to claim 1, is characterized in that: on described cold water water supply line, be also provided with filter.
CN201521103526.9U 2015-12-25 2015-12-25 Air can positive displacement hot -water heating system Active CN205261923U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201521103526.9U CN205261923U (en) 2015-12-25 2015-12-25 Air can positive displacement hot -water heating system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201521103526.9U CN205261923U (en) 2015-12-25 2015-12-25 Air can positive displacement hot -water heating system

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CN205261923U true CN205261923U (en) 2016-05-25

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107062589A (en) * 2017-03-29 2017-08-18 广州鼎富电子科技有限公司 A kind of air energy heat pump and gas furnace combined heated system and method
CN107192120A (en) * 2017-07-10 2017-09-22 珠海格力电器股份有限公司 Water Heater

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107062589A (en) * 2017-03-29 2017-08-18 广州鼎富电子科技有限公司 A kind of air energy heat pump and gas furnace combined heated system and method
CN107192120A (en) * 2017-07-10 2017-09-22 珠海格力电器股份有限公司 Water Heater

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