CN2926939Y - Energy-saving controlling system of efficient air cooler - Google Patents
Energy-saving controlling system of efficient air cooler Download PDFInfo
- Publication number
- CN2926939Y CN2926939Y CN 200620059662 CN200620059662U CN2926939Y CN 2926939 Y CN2926939 Y CN 2926939Y CN 200620059662 CN200620059662 CN 200620059662 CN 200620059662 U CN200620059662 U CN 200620059662U CN 2926939 Y CN2926939 Y CN 2926939Y
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- cold air
- fan
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- facility
- compressor
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- Air Conditioning Control Device (AREA)
Abstract
The utility model discloses a high-efficiency air conditioning providing energy-saving and electricity-controlled system, which is composed of an air conditioning implement, a fan, a controller. The air conditioning implement provides a compressor transmitting cool air; the fan is positioned at the place near humans or object; the controller provides a timing device; fitted with the timing device, the controller can control the motion state of the compressor provided by the air conditioning and the rotation speed of the fan, in this way, the utility model can save the energy, improve the comfort and increase the service life of the compressor.
Description
Technical field
The utility model relates to a kind of cold air control system, refers to a kind of efficient cold air facility energy saving control system especially.
Background technology
For building indoor cool and comfortable environment, the standing at present air conditioner of putting reduces indoor temperature to make hot cold switching motion by air conditioner, and general system cooperates the interior space to select the air conditioner of suitable power output when settling air conditioner, makes each indoor corner all can have nice and cool effect.
At air conditioner, main tool compressor, condenser, evaporimeter, wind drum, refrigerant pipeline, temperature sensing device, controller, go into wind apparatus, go out element such as wind apparatus, and compressor action can make the refrigerant action of refrigerant pipeline, and make condenser produce exothermic reaction, evaporimeter produces endothermic reaction with tool freeze cycle effect, and makes cold air send by going out wind apparatus by the wind drum.
And the user is when operating air conditioner, set the temperature of air conditioner earlier, and make compressor action produce cold air, when the cold degree of temperature sensing device sensing of air conditioner reaches design temperature, the controller of air conditioner is controlled compressor again and is stopped action, and makes air conditioner keep ventilation state, and after a period of time, when the indoor cold degree of temperature sensing device sensing surpassed design temperature, the controller of air conditioner was controlled compressor action again and is produced cold air to keep the cold degree of setting in the control room.
Yet aforementioned known air conditioner setting and occupation mode still have following disappearance:
1, when human body only is positioned at indoor a certain fixed position (as sofa, desk, computer desk etc.) time, only need the cold air of this position tool design temperature can have the cool and comfortable effect, but because of the compressor action generation cold air system of air conditioner is evenly distributed to indoor each corner, and the cold degree of temperature sensing device sensing for the treatment of air conditioner is when reaching design temperature, the controller of air conditioner is just controlled compressor and is stopped action, cause compressor to need long period running action just can make the impression of human body position set cold degree, though and the air conditioner position has the cold degree of setting, but this human body is not had a function at the cold degree of position, cause compressor long period running make human body not the large space in the position have the cold degree of setting and form obvious waste, and about 6~8A is flowed in power consumption during compressor operation, the only about 0.5A of power consumption stream when compressor does not turn round, in energy shortage, the modern times that electricity price is surging, compressor needs long period running power consumption real in wasting and do not meet economic benefit, and the interior space is bigger, the air conditioner power output is bigger, and its waste is more obvious.
2, the compressor of air conditioner needs long period running action just can make indoor each corner and makes the impression of human body position set cold degree simultaneously, when causing indoor sultry temperature too high, starting air conditioner still must need the wait long period just can make the human feeling set comfortable cold degree, causes long-time sultry uncomfortable disappearance.
3, indoor, outdoor only tool one wall every, but aforementioned cold air is full of and indoorly will causes indoor, outdoor excessive temperature differentials, and causes compressor to increase just to overcome the outdoor high temperature heat absorption duration of runs, and cold-room can be had set cold degree, form the power consumption waste.
4, compressor needs long period running action will reduce compressor service life.
In addition as No. 398610 patent of TaiWan, China patent announcement, its design lies in indoor diverse location and lays temperature sensor and control the wind-guiding direction, yet previous designs still can not be avoided indoor, outdoor excessive temperature differentials and human body not to have the cold degree of setting in the position and form obvious waste situation, still has aforementioned disappearance.
TaiWan, China patent of invention I244541 patent again, its design cording air conditioner, fan, the running of this air conditioner is when setting dwell time, automatically control fan running again to reach the power saving effect, and room temperature is crossed cold discomfort can avoid sleeping the time, yet previous designs still can not be avoided indoor, outdoor excessive temperature differentials and human body not to have the cold degree of setting in the position and form obvious waste situation, and its power saving effect is still desirable not to the utmost.
The cold degree that known in addition refrigerator, reach in freezer, the refrigerating chamber to the object cooling also has aforementioned object position is controlled by the bad attemperating unit of temperature-sensitive, and waste electric power is to huge.
The utility model content
The purpose of this utility model is to provide a kind of efficient cold air facility energy saving control system, and its cocoa provides suitable cold air and effectively energy saving.
For achieving the above object, technical solution of the present utility model is: a kind of efficient cold air facility energy saving control system, and it comprises cold air facility, fan and controller, and these cold air facility have the compressor of the exportable cold air in action back; This controller has timing means, and this controller cooperates compressor action state and the rotation speed of the fan of timing means setting-up time with control cold air facility.
Described fan is located near human body or object appropriate location.
Described controller connects cold air facility and fan respectively by lead.
Described controller is by wireless mode control cold air facility and fan.
When the compressor action of described controller control cold air facility is exported cold air, control fan simultaneously, and make fan flow suitable rotating speed action with guiding cold air; The compressor of controller control cold air facility stops action output cold air behind one section setting-up time of action again, and the control fan changes the rotating speeds action in the aforementioned different time-histories that stop to move behind the output cold air; The compressor that other controls the cold air facility restarts the action of output circulating cold air again after setting stops to move a period of time.
Described cold air facility are air conditioner, automobile air system, refrigerator, reach in freezer, refrigerating chamber.
After adopting such scheme, controller of the present utility model can cooperate compressor action state and the rotation speed of the fan of timing means setting-up time with control cold air facility, control fan simultaneously when borrowing it compressor action output cold air that makes controller control cold air facility, and make fan flow suitable rotating speed action with guiding cold air; The compressor of controller control cold air facility stops action output cold air behind one section setting-up time of action again, and the control fan changes the rotating speeds action in the aforementioned different time-histories that stop to move behind the output cold air; The compressor that other controls the cold air facility restarts the action of output circulating cold air again after setting stops to move a period of time, thus the utility model can be had imitate energy-conservation, promote comfortableness, increase compressor effect in service life.
Description of drawings
Fig. 1 is an embodiment element block schematic diagram of the present utility model;
Fig. 2 is an embodiment configuration schematic diagram of the present utility model;
Fig. 3 is an embodiment motion flow schematic diagram of the present utility model.
The main element symbol description
1 cold air facility, 11 compressors, 2 fans
21 motors, 3 controllers, 31 timing means
The specific embodiment
See also Fig. 1, embodiment of the present utility model comprises cold air facility 1, fan 2, controller 3, these cold air facility 1 have compressor 11, the exportable cold air of these compressor 11 actions, and these cold air facility 1 can be air conditioner, automobile air system, refrigerator, reach in freezer, refrigerating chamber or the like.
See also Fig. 2, present embodiment system is an example with the air conditioner, wherein human body is positioned at indoor a certain position (as sofa, desk, computer desk etc.), and cold air facility 1 are located at an indoor side, near position of human body two fans 2 (also can be other quantity) are being set, controller 3 is located at cold air facility 1 one sides again, and connects cold air facility 1 and fan 2 (also can control cold air facility 1 and fan 2 by wireless mode) respectively by lead.
See also Fig. 2,3, when wherein the utility model is implemented, the user is in timing means 31 setting-up times of controller 3, and this time set can comprise motor 21 rotating speeds of variant time-histories compressor 11 operating states and fan 2, the power switch of first time-histories cold air facility 1 shown in Figure 3 and controller 3 is opened, and the compressor 11 action output cold air of controller 3 control cold air facility 1, control motor 21 rotating speeds of fan 2 simultaneously, and make fan 2 flow work to user's blowing cooling air with about 70% rotating speed guiding cold air, and aforementioned fan 2 guiding cold air circulation quick-action is done to make the user experience cold air fast, must wait for when avoiding indoor sultry temperature too high that the long period can make that just the user experiences the cold air situation, and as shown in Figure 2, but this cold air major part concentrates on around the human body and position, indoor part (as dotted line A), and the temperature difference of indoor other (as indicating B) position and outdoor (as indicating C) position is dwindled, the outdoor high temperature endothermic effect can be overcome, and the energy can be saved.
Second time-histories lay in the action of first time-histories after several minutes, the compressor 11 of controller 3 control cold air facility 1 stops action output cold air, and cold air facility 1 are ventilation state, and will send by residual flow cold air, and controller 3 control fans 2 move to user's blowing cooling air with about 60% rotating speed, and (as dotted line A) position has had enough cold degree around this moment human body, thereby can make the user experience nice and cool cold air by fan 2 blowing cooling airs.
The 3rd time-histories lie in second time-histories action after tens of seconds the cold air because of (as dotted line A) position around the human body do not disappear as yet, this moment, controller 3 control fans 2 increased with about 70% rotating speed action user's blowing cooling air, made the user still can experience nice and cool cold air.
The 4th time-histories lie in the 3rd time-histories action after tens of seconds cold air facility 1 be ventilation state, this moment, controller 3 control fans 2 increased with about 85% rotating speed action, make fan 2 wind-force strengthen capable of circulation around cold air, make the user still can experience cool breeze.
The 5th time-histories lie in the 4th time-histories action after tens of seconds cold air facility 1 be ventilation state, and controller 3 control fans 2 increase with about 100% rotating speed action, make fan 2 can collect residual cold air and act on fully, and the user can not experience sultry.
The action of the 5th time-histories utilized fully because of cold air after tens of seconds, controller 3 is controlled the compressor 11 action output cold air of cold air facility 1 again, make the user can experience nice and cool cold air, and repeat aforementioned time-histories and move, make that the compressor 11 of cold air facility 1 only must can make the user can experience nice and cool cold air the action part time in each actuation cycle, thereby can significantly reduce compressor 11 power consumptions, and the power consumption of this compressor 11 is much larger than the wind drum of cold air facility and motor 21 power consumption of fan 2, thereby can significantly reduce whole power consumption, and can be effectively energy-conservation.
The future example is to set forth the utility model as illustration, is not that the utility model can change in the scope that is no more than above-mentioned explanation the utility model notion or revise in order to restriction the utility model claim.
Claims (6)
1, a kind of efficient cold air facility energy saving control system is characterized in that it comprises cold air facility, fan and controller, and wherein: these cold air facility have the compressor of the exportable cold air in action back; This controller has timing means, and this controller cooperates compressor action state and the rotation speed of the fan of timing means setting-up time with control cold air facility.
2, efficient cold air facility energy saving control system as claimed in claim 1 is characterized in that: described fan is located near human body or object appropriate location.
3, efficient cold air facility energy saving control system as claimed in claim 1, it is characterized in that: described controller connects cold air facility and fan respectively by lead.
4, efficient cold air facility energy saving control system as claimed in claim 1 is characterized in that: described controller is by wireless mode control cold air facility and fan.
5, efficient cold air facility energy saving control system as claimed in claim 1 is characterized in that: when the compressor action of described controller control cold air facility is exported cold air, control fan simultaneously, and make fan flow suitable rotating speed action with guiding cold air; The compressor of controller control cold air facility stops action output cold air behind one section setting-up time of action again, and the control fan changes the rotating speeds action in the aforementioned different time-histories that stop to move behind the output cold air; The compressor that other controls the cold air facility restarts the action of output circulating cold air again after setting stops to move a period of time.
6, efficient cold air facility energy saving control system as claimed in claim 1, it is characterized in that: described cold air facility are air conditioner, automobile air system, refrigerator, reach in freezer, refrigerating chamber.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN 200620059662 CN2926939Y (en) | 2006-05-26 | 2006-05-26 | Energy-saving controlling system of efficient air cooler |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN 200620059662 CN2926939Y (en) | 2006-05-26 | 2006-05-26 | Energy-saving controlling system of efficient air cooler |
Publications (1)
Publication Number | Publication Date |
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CN2926939Y true CN2926939Y (en) | 2007-07-25 |
Family
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Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN 200620059662 Expired - Fee Related CN2926939Y (en) | 2006-05-26 | 2006-05-26 | Energy-saving controlling system of efficient air cooler |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN108019992A (en) * | 2016-11-04 | 2018-05-11 | 顺富科技实业有限公司 | The special refrigeration control device of cold air |
-
2006
- 2006-05-26 CN CN 200620059662 patent/CN2926939Y/en not_active Expired - Fee Related
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN108019992A (en) * | 2016-11-04 | 2018-05-11 | 顺富科技实业有限公司 | The special refrigeration control device of cold air |
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Legal Events
Date | Code | Title | Description |
---|---|---|---|
C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
C17 | Cessation of patent right | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20070725 Termination date: 20120526 |