CN203595334U - Novel defrosting system - Google Patents

Novel defrosting system Download PDF

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Publication number
CN203595334U
CN203595334U CN201320595114.6U CN201320595114U CN203595334U CN 203595334 U CN203595334 U CN 203595334U CN 201320595114 U CN201320595114 U CN 201320595114U CN 203595334 U CN203595334 U CN 203595334U
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CN
China
Prior art keywords
magnetic valve
compressor
valve
heat exchanger
frost
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Expired - Fee Related
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CN201320595114.6U
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Chinese (zh)
Inventor
杨勇
应必业
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Aux Air Conditioning Co Ltd
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Ningbo Aux Group Co Ltd
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Priority to CN201320595114.6U priority Critical patent/CN203595334U/en
Application granted granted Critical
Publication of CN203595334U publication Critical patent/CN203595334U/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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Abstract

The utility model discloses a novel defrosting system including a compressor, a four-way reversing valve, an outdoor heat exchanger, an electronic expansion valve and an indoor heat exchanger, an exhaust port and an air inlet of the compressor are connected via a second air return pipeline which is taken as an auxiliary pipeline, and a solenoid valve device is arranged on the second air return pipeline. The novel defrosting system can automatically distinguish light frost and heavy frost and adopts different defrosting modes based on the light frost and the heavy frost, so that the indoor temperature is stable; and moreover, the defrosting effect is good, and clients' waiting time can be shortened.

Description

Novel defrost system
Technical field
The utility model belongs to field of air conditioning, relates in particular to a kind of novel defrost system.
Background technology
In the winter time or ambient temperature is low or the season that humidity is high, because air-conditioning evaporating temperature is lower than air-conditioning dew point, therefore can be outside air-conditioning side condenser condensation Cheng Shui, affected heat exchanger heat exchange efficiency because evaporating temperature is low, its evaporating temperature is lower, and reaching subzero will be even icing in outside frosting.And existing heat pump air conditioner has defrost function, in heating process, running refrigerating defrosts exactly, and by refrigerating operaton, outside heat exchanger is condenser, and its condensation temperature is greater than zero degree, and frost will be melted, thereby reaches defrosting object.But our existing Defrost method, all can allow compressor shutdown, then switches cross valve and converts refrigerating operaton to, and indoor fan shuts down simultaneously, will cause like this indoor temperature unstable.In addition, some air-conditioning, due to the problem of defrosting program, can cause the sordid phenomenon of defrosting, and such words is easily frequent defrosting just, and indoor temperature change generated in case allows people have uncomfortable sensation greatly.
Summary of the invention
The utility model is mainly to provide a kind of novel defrost system, the energy thin frost of automatic distinguishing and thick frost, and take different defrosting modes for thin, thick frost, and make indoor temperature more stable, and defrosting effect is good, shorten the time that client waits for.
Above-mentioned technical problem of the present utility model is mainly solved by following technical proposals: it comprises compressor, four-way change-over valve, outdoor heat exchanger, electric expansion valve and indoor heat exchanger, the exhaust outlet of described compressor is connected by the second return line as auxiliary piping with air inlet, in described the second return line, is provided with the electromagnetic valve device that the second return line is carried out to discontinuity break-make.The utility model in the degree of superheat while that guarantees compressor return air mouth cold-producing medium, utilizes again electromagnetic valve device the discontinuity break-make of the second return line to be prevented to the direct circulation of compressor air-discharging and return-air by the second return line.
As preferably, described electromagnetic valve device comprises at least one magnetic valve.
As preferably, described magnetic valve is provided with three, comprises the first magnetic valve, the second magnetic valve and the 3rd magnetic valve, described the first magnetic valve, described the second magnetic valve and described the 3rd magnetic valve three series connection.Guarantee so on the one hand the degree of superheat of compressor return air mouth cold-producing medium, avoided on the other hand a magnetic valve frequently to open, extended magnetic valve service life, has used three valves, extended, the reliability of enhancing system the intermittent time.
The beneficial effect that the utility model brings is, the thin frost of the utility model energy automatic distinguishing and thick frost, and take different defrosting modes for thin, thick frost, and make indoor temperature more stable, and defrosting effect is good, shorten the time that client waits for; And in guaranteeing the degree of superheat of compressor return air mouth cold-producing medium, avoided the direct circulation of compressor air-discharging and return-air, and system stability is reliable.
Accompanying drawing explanation
Accompanying drawing 1 is a kind of structural representation of the present utility model;
Accompanying drawing 2 is a kind of structural representations that the utility model removes thin when frost;
Accompanying drawing 3 is a kind of structural representations that the utility model removes thick when frost;
Accompanying drawing 4 is a kind of workflow schematic diagrames of the present utility model;
A kind of break-make control schematic diagram of electromagnetic valve device of the present utility model when accompanying drawing 5.
Label declaration: 1, compressor; 2, four-way change-over valve; 3, outdoor heat exchanger; 4, electric expansion valve; 5, indoor heat exchanger; 6, the first magnetic valve; 7, the second magnetic valve; 8, the 3rd magnetic valve.
The specific embodiment
Below by embodiment, and by reference to the accompanying drawings, the technical solution of the utility model is described in further detail.
Embodiment: the novel defrost system of the present embodiment as shown in Figure 1, comprise compressor 1, four-way change-over valve 2, outdoor heat exchanger 3, electric expansion valve 4 and indoor heat exchanger 5, between the exhaust outlet of compressor 1 and air inlet, increase auxiliary piping, this auxiliary piping is the second return line, the exhaust outlet of compressor 1 is connected by the second return line with air inlet, in the second return line, be provided with the electromagnetic valve device of the discontinuity break-make to the second return line, electromagnetic valve device comprises the first magnetic valve 6, the second magnetic valve 7 and the 3rd magnetic valve 8, the first magnetic valve 6, the second magnetic valve 7 and the 3rd magnetic valve 8 three's series connection.
In the situation that having Bao Shuan defrosting, as shown in Figure 2, the flow direction of cold-producing medium is: the gas returning port of exhaust outlet → four-way change-over valve 2 → indoor heat exchanger 5 → electric expansion valve 4 → outdoor heat exchanger 3 → four-way change-over valve 2 → compressor 1 of compressor 1, at this, except in the time of thin frost, in the second return line, flow of refrigerant direction is: the gas returning port of compressor 1 exhaust outlet → electromagnetic valve device → compressor 1.For user's comfortableness, now inner blower wind speed is reduced to one grade, if single grade or minimum wind is constant.
When in the situation that having thick frost defrosting, as shown in Figure 3, the flow direction of cold-producing medium is: the gas returning port of exhaust outlet → four-way change-over valve 2 → outdoor heat exchanger 3 → electric expansion valve 4 → indoor heat exchanger 5 → four-way change-over valve 2 → compressor 1 of compressor 1.Now, for user's comfortableness, during defrosting, compressor 1 is shut down, and inner blower stops, in case there is cold wind to blow out, when cross valve switches back, compressor 1 is started working, and now inner blower judges whether to open inner blower according to coil pipe point temperature.
The novel Defrost method of a kind of air-conditioner of the present embodiment, air-conditioner comprises the second return line of the exhaust outlet and the air inlet that are communicated with compressor 1, this method as shown in Figure 4, comprises the following steps:
1, Bao Shuan, thick frost detect determination step:
A, external the make an inventory monitoring step of temperature difference: from air-conditioning heating operation 20min, start the outer temperature of making an inventory of record, in the front 10min of the outer temperature of making an inventory of record, whether the temperature difference of making an inventory outside detection is less than or equal to 2 ℃;
B, Bao Shuan and thick white determination step:
(b-1), in the time making an inventory temperature difference≤2 ℃ outward, be judged to be Bao Shuan;
(b-2), when making an inventory 2 ℃ of temperature difference > and while making an inventory 0 ℃ of temperature > outward outward, be judged to be Bao Shuan;
(b-3), in the time making an inventory 0 ℃ of temperature < outward, be judged to be thick frost.
2, defrosting step:
A, in the time being judged to be Bao Shuan and make an inventory temperature difference=2 ℃ outward, adopt except thin white pattern:
(a-1), do not shut down defrosting step: keep heating mode, cross valve does not commutate, and compressor 1 is not shut down, as shown in Figure 2, defrosting continues 1 minute to refrigerant flow direction, and in this minute defrosting time, electric expansion valve 4 valve steps are controlled as maximal valve step.
That is to say and in the middle of indoor and outdoors heat exchanger 3, do not carry out throttling, indoor heat exchanger 5 inner refrigerant temperature are higher, directly flow to outdoor heat exchanger 3, thereby thin frost is melted, while is for user's comfortableness, the rotating speed of indoor fan is fallen to one grade and maintain the constant of leaving air temp, or minimum wind speed is constant.
(a-2), anti-degree of superheat step: in except 1 minute between thin frost season, the second return line is carried out to the pipeline control step of discontinuity break-make.
B, in the time being judged to be thick frost and make an inventory temperature difference=7 ℃ outward, adopt except thick white pattern: compressor 1 is shut down, then switch cross valve and convert refrigerating operaton to, indoor fan shuts down simultaneously.
3, defrosting end step:
When defrosting continues after 1min, finish except thin white pattern, system heats by designated mode operation again.
In the time making an inventory 12 ℃ of temperature > outward, finish except thick white pattern, system heats by designated mode operation again.
The switch that needs to use electromagnetic valve device in not shutting down defrosting step guarantees the degree of superheat of compressor 1 air entry; prevent that compressor 1 from carrying out Wet Compression; damage compressor 1; reduce the service life of compressor 1; that is to say, in the time of normal refrigeration and normal heating operation, identical with conventional machine; now electromagnetic valve device is closed condition, and electromagnetic valve device only just works in Bao Shuan defrosting situation.
In the time starting except thin frost, the control action of electromagnetic valve device as shown in Figure 5:
First the first magnetic valve 6 cuts out 2s, and the second magnetic valve 7, the 3rd magnetic valve 8 are opened, then close through the second magnetic valve 7 after 4s, then after 2s, open, then pass through 4s, the 3rd magnetic valve 8 cuts out, then after 2s, open, then after 4s, the first magnetic valve 6 cuts out, and then 2s opens, successively sequence switch magnetic valve.
All magnetic valve actions are all that 4s unlatching 2s closes, and action is all according to order, the first magnetic valve 6 before this, then the second magnetic valve 7, then the 3rd magnetic valve 8, in having a magnetic valve action, other magnetic valves are all openings, have so just avoided a magnetic valve frequently to open, extend magnetic valve service life, and use three valves, and make the intermittent time rise to 16s by 4s, strengthen the reliability of system.Must be noted that in the time that within one minute, defrosting finishes, no matter magnetic valve in which kind of state, is all forced to control for closed electromagnetic valve.
Removing between thin frost season, by controlling the break-make of magnetic valve, change the superheat state of cold-producing medium, because remove in thin white process at this, electric expansion valve 4 is valve step maximum rating, cold-producing medium does not have throttling action, in outdoor heat exchanger, cold-producing medium is HTHP damp steam state, utilize this heat to defrost, general frosting place temperature is 0 ℃ of left and right, use this method defrosting, cold-producing medium and the frosting place temperature difference are larger, be easy to frost to remove, because whole system does not have throttling process, the main pressure loss is the on-way resistance of pipeline, the state that cold-producing medium is crossed after heat exchanger is damp steam state, and compressor 1 can not carry out Wet Compression, therefore introduce high-temperature high-pressure overheat steam gas mixing therewith from exhaust outlet, can greatly increase the heat exchanger degree of superheat of gas afterwards, thereby guarantee the degree of superheat of compressor 1 air entry, in order to prevent compressor 1 exhaust and return-air direct circulation, the utility model utilizes discontinuous method to avoid this direct circulation, close the method for 2s by opening 4s, guarantee the high temperature of cold-producing medium in outdoor heat exchanger, thereby defrost sooner.
Below be only described with regard to the utility model preferred embodiment, but can not be interpreted as it is the restriction to the utility model protection domain.The utility model is not only confined to above embodiment, and its concrete structure or shape allow to change.In a word, protection domain of the present utility model should comprise those apparent conversion or alternative and remodeling to those skilled in the art.

Claims (3)

1. a novel defrost system, it is characterized in that, comprise compressor, four-way change-over valve, outdoor heat exchanger, electric expansion valve and indoor heat exchanger, the exhaust outlet of described compressor is connected by the second return line as auxiliary piping with air inlet, in described the second return line, is provided with the electromagnetic valve device that the second return line is carried out to discontinuity break-make.
2. the novel defrost system of one according to claim 1, is characterized in that, described electromagnetic valve device comprises at least one magnetic valve.
3. the novel defrost system of one according to claim 2, it is characterized in that, described magnetic valve is provided with three, comprises the first magnetic valve, the second magnetic valve and the 3rd magnetic valve, described the first magnetic valve, described the second magnetic valve and described the 3rd magnetic valve three series connection.
CN201320595114.6U 2013-09-26 2013-09-26 Novel defrosting system Expired - Fee Related CN203595334U (en)

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Application Number Priority Date Filing Date Title
CN201320595114.6U CN203595334U (en) 2013-09-26 2013-09-26 Novel defrosting system

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Application Number Priority Date Filing Date Title
CN201320595114.6U CN203595334U (en) 2013-09-26 2013-09-26 Novel defrosting system

Publications (1)

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CN203595334U true CN203595334U (en) 2014-05-14

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103712388A (en) * 2013-09-26 2014-04-09 宁波奥克斯空调有限公司 Novel defrosting system and control method thereof

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103712388A (en) * 2013-09-26 2014-04-09 宁波奥克斯空调有限公司 Novel defrosting system and control method thereof
CN103712388B (en) * 2013-09-26 2016-12-07 宁波奥克斯空调有限公司 A kind of defrosting system and control method thereof

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Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
TR01 Transfer of patent right
TR01 Transfer of patent right

Effective date of registration: 20170522

Address after: 315191 Yinzhou District Province, Ningbo City, Jiang Shan town on the village of summer ho

Patentee after: AUX AIR CONDITIONING LIMITED BY SHARE Ltd.

Address before: 315191 Zhejiang city of Ningbo province Jiangshan town Yinzhou District Mingguang Road No. 1166

Patentee before: NINGBO AUX AIR-CONDITION Co.,Ltd.

CF01 Termination of patent right due to non-payment of annual fee
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20140514

Termination date: 20210926