CN203771631U - Air-conditioning system - Google Patents

Air-conditioning system Download PDF

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Publication number
CN203771631U
CN203771631U CN201420074125.4U CN201420074125U CN203771631U CN 203771631 U CN203771631 U CN 203771631U CN 201420074125 U CN201420074125 U CN 201420074125U CN 203771631 U CN203771631 U CN 203771631U
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China
Prior art keywords
pressure fan
air
running
temperature
temperature difference
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CN201420074125.4U
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Chinese (zh)
Inventor
金谷修
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Mitsubishi Electric Corp
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Mitsubishi Electric Corp
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Abstract

The utility model provides an air-conditioning system of which the structure is simple, the comfortability is improved, and the energy-saving effect is worth expecting. A control unit (10) conducts the following control: when an 'air conditioner plus fan' select switch (6d) is to be switched on, after the air conditioner is in refrigeration operation, the detected temperatures of a floor temperature sensor and a room temperature sensor are read and the temperature difference is calculated, if the temperature difference is the upper limit value of a predefined temperature range, a first air blower (4) is enabled to operate, and if the temperature difference is the lower limit value of the temperature range, the operation of the first air blower (4) is stopped; after the air conditioner is in heating operation, if the temperature difference is the upper limit value, a second air blower (5) is enabled to operate, and if the temperature difference is the lower limit value, the operation of the second air blower (5) is stopped.

Description

Air-conditioning system
Technical field
The utility model relates to by air conditioner and the air-conditioning system forming to the pressure fan of indoor delivery air.
Background technology
In air conditioner in the past, during refrigeration, cold air declines, and while heating, warm air rises.Therefore, have the situation in indoor generation temperature inequality.For example, when when h.d. freezes, people's activity makes to be difficult at indoor generation air-flow less, so cold air is stuck in Near Ground, exists and causes user to feel cold situation.In this case, user can only stop the running of air conditioner, thereby occurs just again to start to feel situation hot and infringement comfortableness soon.
In the past, in order to solve above-mentioned problem, there is following way: the indoor unit of air conditioner and circulator are configured in indoor, at these equipment, carry respectively remote controller, and utilize the controller of sum up control to the control (for example, with reference to patent documentation 1) that links of air conditioner and circulator
And, there is following way: except air conditioner, circulator etc., additionally be provided near the indoor environment sensor of the temperature of the each several parts such as temperature in perception indoor temperature or floor, thereby the action of these equipment is controlled to (for example,, with reference to patent documentation 2)
Patent documentation 1: TOHKEMY 2012-202631 communique (Fig. 1)
Patent documentation 2: TOHKEMY 2012-172910 communique (Fig. 3)
The air-conditioning system of recording for above-mentioned patent documentation 1, carries respectively remote controller at air conditioner, circulator, in addition, also need them to sum up the controller of controlling, so system becomes complicated, and price is very expensive.
And, the system of recording for patent documentation 2, as mentioned above, owing to also additionally using indoor environment sensor except air conditioner, circulator etc., therefore need to expend the labour that indoor environment sensor is set, need to study place and method to set up etc. are set, have the problem expending time in expense.
Summary of the invention
The utility model completes in order to solve above-mentioned problem, and its object is to obtain that a kind of system architecture is simple, comfortableness improves and the air-conditioning system of energy-saving effect Worth Expecting.
The related air-conditioning system of the technical solution of the utility model 1 possesses: have the air conditioner that is arranged at indoor indoor unit; Make the pressure fan of indoor air circulation; Near the first temperature sensor of the temperature ceiling in sensing chamber; Near the second temperature sensor of the temperature floor in sensing chamber; There is the remote controller that makes the first switch that pressure fan and air conditioner together move; And when the first switch is carried out to making operation, after the running of either party in air conditioner being freezed or heat, read in the detected temperatures of the first temperature sensor and detected temperatures the accounting temperature of the second temperature sensor are poor, when higher limit that temperature difference is predetermined temperature range, make pressure fan running, the control part of the running of out-of-blast machine when lower limit that temperature difference is temperature range.
And, the related air-conditioning system of the technical solution of the utility model 2 is characterised in that, in the air-conditioning system described in technical scheme 1, above-mentioned control part is configured to: in the refrigeration of above-mentioned air conditioner or while heating running, when said temperature poor when lower and higher than above-mentioned lower limit than above-mentioned higher limit so that the air quantity of above-mentioned pressure fan is controlled the running of above-mentioned pressure fan than the few mode of air quantity of the poor above-mentioned pressure fan during for above-mentioned higher limit of said temperature.
And, the related air-conditioning system of the technical solution of the utility model 3 is characterised in that, in the air-conditioning system described in technical scheme 1 or 2, above-mentioned control part is configured to: in the refrigeration of above-mentioned air conditioner or while heating running, when said temperature is poor while surpassing above-mentioned higher limit, so that the air quantity of above-mentioned pressure fan is controlled the running of above-mentioned pressure fan than the many modes of air quantity of the poor above-mentioned pressure fan during for above-mentioned higher limit of said temperature.
And, the related air-conditioning system of the technical solution of the utility model 4 is characterised in that, in the air-conditioning system described in technical scheme 1 or 2, at above-mentioned remote controller, be provided with the 3rd switch that only makes the second switch of above-mentioned air-conditioner operation and only make above-mentioned pressure fan running, above-mentioned control part is configured to: when above-mentioned second switch has been carried out to making operation, only make above-mentioned air-conditioner operation, when above-mentioned the 3rd switch has been carried out to making operation, only make above-mentioned pressure fan running.
And the related air-conditioning system of the technical solution of the utility model 5 possesses: have the air conditioner that is arranged at indoor indoor unit, make near the first pressure fan of the Air Flow in floor, make near the second pressure fan of the Air Flow of ceiling, near the first temperature sensor of the temperature ceiling in sensing chamber, near the second temperature sensor of the temperature floor in sensing chamber, there is the remote controller that makes the first switch that the above-mentioned first and second pressure fan and above-mentioned air conditioner together move, and when above-mentioned the first switch is carried out to making operation, at above-mentioned air conditioner, carry out after cooling operation, read in the detected temperatures of above-mentioned the first temperature sensor and detected temperatures the accounting temperature of above-mentioned the second temperature sensor are poor, when the poor higher limit for predetermined temperature range of said temperature, make above-mentioned the first pressure fan running, when the poor lower limit for said temperature scope of said temperature, stop the running of above-mentioned the first pressure fan, and, at above-mentioned air conditioner, heat after running, when said temperature is poor, make above-mentioned the second pressure fan running when the above-mentioned higher limit, when the poor control part that stops the running of above-mentioned the second pressure fan when the above-mentioned lower limit of said temperature.
And, the related air-conditioning system of the technical solution of the utility model 6 is characterised in that, in the air-conditioning system described in technical scheme 5, above-mentioned control part is configured to: when the cooling operation of above-mentioned air conditioner, when said temperature poor when lower and higher than above-mentioned lower limit than above-mentioned higher limit, so that the air quantity of above-mentioned the first pressure fan is controlled the running of above-mentioned the first pressure fan than the few mode of air quantity of poor above-mentioned the first pressure fan when the above-mentioned higher limit of said temperature, and, when heating of above-mentioned air conditioner turned round, when said temperature poor when lower and higher than above-mentioned lower limit than above-mentioned higher limit, so that the air quantity of above-mentioned the second pressure fan is controlled the running of above-mentioned the second pressure fan than the few mode of air quantity of poor above-mentioned the second pressure fan when the above-mentioned higher limit of said temperature.
And, the related air-conditioning system of the technical solution of the utility model 7 is characterised in that, in the air-conditioning system described in technical scheme 5 or 6, above-mentioned control part is configured to: in the refrigeration of above-mentioned air conditioner or while heating running, when said temperature is poor while surpassing above-mentioned higher limit, make above-mentioned the first pressure fan and above-mentioned the second pressure fan running.
And, the related air-conditioning system of the technical solution of the utility model 8 is characterised in that, in the air-conditioning system described in technical scheme 5 or 6, at above-mentioned remote controller, be provided with the 3rd switch that only makes the second switch of above-mentioned air-conditioner operation and make the above-mentioned first and second pressure fan both sides running, above-mentioned control part is configured to: when only above-mentioned second switch having been carried out to making operation, only make above-mentioned air-conditioner operation, when above-mentioned the 3rd switch has been carried out to making operation, make the above-mentioned first and second pressure fan both sides running.
And the related air-conditioning system of the technical solution of the utility model 9 is characterised in that, in the air-conditioning system in technical scheme 1,2,5,6 described in any one, above-mentioned the second temperature sensor uses infrared ray sensor.
According to the utility model, when the first switch of remote controller is carried out to making operation, pressure fan and air conditioner are used in the lump, after the running (freeze or heat) of air conditioner, when higher limit that near the temperature difference of temperature near temperature ceiling and floor is predetermined temperature range, make pressure fan running, the running of out-of-blast machine during the lower limit that is temperature range in temperature difference.Like this, system architecture is simple, therefore can provide at an easy rate, and, due to according to the interlock of temperature official post pressure fan, therefore can make indoor air themperature homogenising, comfortableness improves, and energy-saving effect Worth Expecting.
Accompanying drawing explanation
Fig. 1 illustrates the stereogram that the related air-conditioning system of embodiment of the present utility model is applied to indoor situation.
Fig. 2 is the block diagram that the brief configuration of the related air-conditioning system of embodiment of the present utility model is shown.
Fig. 3 is the figure being illustrated in the air-conditioning system of Fig. 2 with the control characteristic curve of the running of the first and second pressure fan of indoor unit interlock/stop.
Label declaration
1: indoor unit; 1a: attract mouth; 1b: blow-off outlet; 2: indoor temperature transmitter; 3: floor temperature sensor; 4: the first pressure fans; 5: the second pressure fans; 6: remote controller; 6a: display part; 6b " air conditioner " selector switch; 6c: " fan " selector switch; 6d: " air-conditioning+fan " selector switch; 7,8,9: control line; 10: control part.
The specific embodiment
Fig. 1 illustrates the stereogram that the related air-conditioning system of embodiment of the present utility model is applied to indoor situation, and Fig. 2 is the block diagram that the brief configuration of the related air-conditioning system of embodiment of the present utility model is shown.
As shown in Figure 1, be provided with the indoor unit 1 of air conditioner at indoor ceiling, be provided with the first pressure fan 4 on indoor floor, near the wall indoor ceiling is provided with the second pressure fan 5, in addition, at indoor wall, remote controller 6 is installed.In addition, although the second pressure fan 5 is arranged near the wall indoor ceiling, replace this wall, also the second pressure fan 5 can be arranged to ceiling.
At indoor unit 1, be provided with indoor temperature transmitter 2(the first temperature sensor) and floor temperature sensor 3(the second temperature sensor).And, at indoor unit 1, via control line 9, be connected with the first pressure fan 4, via control line 8, be connected with the second pressure fan 5, via control line 7, be connected with remote controller 6.
The inside of indoor unit 1 possesses pressure fan, heat exchanger, control part 10(with reference to Fig. 2) etc., be provided with an attraction mouthful 1a with the opposed face in ground, attracting the surrounding of mouthful 1a to be provided with blow-off outlet 1b.Above-mentioned heat exchanger is connected with the outdoor unit of air conditioner via refrigerant piping, when heating running, as condenser, plays a role, and when cooling operation, as evaporimeter, plays a role.
Indoor temperature transmitter 2 is attracted near the air ceiling that attracts mouthful 1a temperature by detection is that for example thermistor of the temperature of room air forms.Floor temperature sensor 3 consists of for example infrared ray sensor of near the temperature floor in sensing chamber (hereinafter referred to as " plate temperature ").
The first control of pressure fan 4 based on from control part 10 changes air quantity, makes near Air Flow floor and makes indoor air circulation.The same control based on from control part 10 of the second pressure fan 5 and the first pressure fan 4 changes air quantity, makes near Air Flow ceiling and makes indoor air circulation.
Remote controller 6 possesses display part 6a, " air conditioner " selector switch 6b(second switch that shows operating condition and indoor target temperature etc.), " fan " selector switch 6c(the 3rd switch), " air-conditioning+fan " selector switch 6d(the first switch), " refrigeration " selector switch, " heating " selector switch etc.
" air conditioner " selector switch 6b is for only making the selector switch of air conditioner (indoor unit 1) running, not carrying out the running of the first and second pressure fan 4,5." fan " selector switch 6c is for only making the selector switch of the first and second pressure fan 4,5 runnings, not carrying out the running of air conditioner." air-conditioning+fan " selector switch 6d is the selector switch for making air-conditioner operation and according to the running of air conditioner (freeze or heat), the either party of the first and second pressure fan 4,5 being turned round.
The control part 10 of indoor unit 1 is implemented according to the control signal from remote controller 6: only make air conditioner (indoor unit 1) running; Only make the first and second pressure fan 4,5 runnings; Or make air-conditioner operation and make the either party's running in the first and second pressure fan 4,5 according to the running of air conditioner (freeze or heat).
This control part 10 in the situation that make air-conditioner operation and makes the either party's running in the first and second pressure fan 4,5, first, preferentially makes air conditioner (indoor unit 1) running.And then after predetermined setting-up time (until cooling operation or heat the stable time of running), control part 10 makes the either party's running in the first and second pressure fan 4,5 according to the running of air conditioner (freeze or heat).The running of the first and second pressure fan 4,5 in this situation is controlled and will be narrated in the back.
Next, use Fig. 1~Fig. 3 to describe the action of the air-conditioning system forming in the above described manner.Fig. 3 is the figure being illustrated in the air-conditioning system of Fig. 2 with the control characteristic curve of the running of the first and second pressure fan of indoor unit interlock/stop.
For example, after " air conditioner " selector switch 6b of remote controller 6 connects, if connect " refrigeration " selector switch, the control part from remote controller 6 towards indoor unit 1 10 sends the control signal that only makes air-conditioner operation.On the other hand, if the control part 10 of indoor unit 1 receives this control signal, start the running of the pressure fan in indoor unit 1, and send and make it carry out the control signal of cooling operation towards outdoor unit.Now, the heat exchanger of outdoor unit plays a role as condenser, and the heat exchanger of indoor unit 1 plays a role as evaporimeter, from the blow-off outlet 1b of indoor unit 1, blows out cold air.And, after connecting " air conditioner " selector switch 6b, in the situation that having connected " heating " selector switch, the heat exchanger of indoor unit 1 plays a role as condenser, the heat exchanger of outdoor unit plays a role as evaporimeter, from the blow-off outlet 1b of indoor unit 1, blows out heating installation.The action of above-mentioned air conditioner is being moved so that become the mode of the indoor target temperature that utilizes remote controller 6 settings in running conventionally.
When having connected " fan " selector switch 6c of remote controller 6, the control part 10 from remote controller 6 towards indoor unit 1 sends the control signal that only makes the first and second pressure fan 4,5 runnings.On the other hand, if the control part 10 of indoor unit 1 receives this control signal, start the running of the first and second pressure fan 4,5.In this case, by the running of the first pressure fan 4, near the Air Flow indoor floor, by the running of the second pressure fan 5, near the Air Flow indoor ceiling, thus air is in indoor circulation.
After having connected " air-conditioning+fan " selector switch 6d of remote controller 6, if connect " refrigeration " selector switch, the control part from controller 6 towards indoor unit 1 10 sends the control signal that makes air conditioner and the first pressure fan 4 runnings.On the other hand, if the control part 10 of indoor unit 1 receives this control signal, start the running of the pressure fan in indoor unit 1, and send and make it carry out the control signal of cooling operation towards outdoor unit.Now, the heat exchanger of outdoor unit 1 plays a role as condenser, and the heat exchanger of indoor unit 1 plays a role as evaporimeter, from the blow-off outlet 1b of indoor unit 1, blows out cold air.
When from starting cooling operation through during setting-up time, control part 10 reads in the indoor temperature being detected by indoor temperature transmitter 2, and reads in the ground plate temperature being detected by floor temperature sensor 3, calculates the temperature difference Δ T of indoor temperature and ground plate temperature.For example, and then when the higher limit (6deg) of temperature range that calculated temperature difference Δ T is regulation, control part 10 starts the running (with reference to Fig. 3) of the first pressure fans 4, make near the Air Flow indoor floor.That is, when to indoor refrigeration, cold air is stuck near floor, and temperature difference Δ T reaches the situation of higher limit than near temperature ceiling is low near the temperature in floor.In this case, make the first pressure fan 4 running, make near cold air flow floor and circulate, make indoor temperature roughly even.
When the running due to the first pressure fan 4 and temperature difference Δ T while becoming for example, than the lower limit of said temperature scope (3deg) higher and lower than higher limit (with reference to Fig. 3), control part 10 is so that the air quantity few mode of the air quantity of the first pressure fan 4 while being higher limit than temperature difference Δ T controlled the running of the first pressure fan 4.For example,, when temperature difference Δ T becomes 5deg from higher limit 6deg, so that the air quantity few mode of the air quantity of the first pressure fan 4 while being higher limit than temperature difference Δ T controlled the running of the first pressure fan 4.And in the running control by this first pressure fan 4 and temperature difference Δ T while becoming the lower limit of said temperature scope, control part 10 stops the running of the first pressure fan 4.
And when the cooling operation of air conditioner, when temperature difference Δ T surpasses the higher limit of said temperature scope, control part 10 makes the first pressure fan 4 and the second pressure fan 5 runnings, thereby makes near circulating cold air floor.And in the running by the first pressure fan 4 and the second pressure fan 5 and temperature difference Δ T while dropping to the higher limit of said temperature scope, control part 10 stops the running of the second pressure fan 5, only the running by the first pressure fan 4 makes circulating cold air.
And after having connected " air-conditioning+fan " selector switch 6d of remote controller 6, if connect " heating " selector switch, the control part from remote controller 6 towards indoor unit 1 10 sends the control signal that makes air conditioner and the second pressure fan 5 runnings.On the other hand, if the control part 10 of indoor unit 1 receives this control signal, start the running of the pressure fan in indoor unit 1, and send and make it heat the control signal of running towards outdoor unit.Now, the heat exchanger of indoor unit 1 plays a role as condenser, and the heat exchanger of outdoor unit plays a role as evaporimeter, from the blow-off outlet 1b of indoor unit 1, blows out heating installation.
When from starting to heat running through during setting-up time, control part 10 reads in the indoor temperature being detected by indoor temperature transmitter 2, and reads in the ground plate temperature being detected by floor temperature sensor 3, calculates the temperature difference Δ T of indoor temperature and ground plate temperature.For example, and then when calculated temperature difference Δ T is the higher limit (6deg) of said temperature scope, control part 10 starts the running (with reference to Fig. 3) of the second pressure fan 5, makes near the Air Flow of indoor ceiling.That is, when to indoor heating, heating installation is stuck near ceiling, and temperature difference Δ T reaches the situation of higher limit than near temperature floor is high near the temperature of ceiling.In this case, make the second pressure fan 5 runnings, make near the heating installation of ceiling flow and produce circulation, make indoor temperature roughly even.
When the running due to the second pressure fan 5 and temperature difference Δ T while becoming for example, than the lower limit of said temperature scope (3deg) higher and lower than higher limit (with reference to Fig. 3), control part 10 is so that the air quantity few mode of the air quantity of the second pressure fan 5 while being higher limit than temperature difference Δ T controlled the running of the second pressure fan 5.For example,, when temperature difference Δ T becomes 5deg from higher limit 6deg, so that the air quantity few mode of the air quantity of the second pressure fan 5 while being higher limit than temperature difference Δ T controlled the running of the second pressure fan 5.And in the running control by this second pressure fan 5 and temperature difference Δ T becomes lower limit when following, control part 10 stops the running of the second pressure fan 5.
And when heating of air conditioner turned round, when temperature difference Δ T surpasses the higher limit of said temperature scope, control part 10 makes the first pressure fan 4 and the second pressure fan 5 runnings, thereby makes near heating circulating ceiling.And in the running by the first pressure fan 4 and the second pressure fan 5 and temperature difference Δ T while dropping to the higher limit of said temperature scope, control part 10 stops the running of the first pressure fan 4, only the running by the second pressure fan 5 makes heating circulating.
In embodiment as above, when " air-conditioning+fan " selector switch 6d to remote controller 6 has carried out making operation, preferentially make air conditioner (indoor unit 1) running, and then, after predetermined setting-up time, according to the running of air conditioner (freeze or heat), make the either party's running in the first and second pressure fan 4,5.Like this, system architecture is simple, therefore can provide at an easy rate, and, due to according to the either party's interlock in temperature official post the first pressure fan 4 or the second pressure fan 5, therefore can make indoor air themperature homogenising, comfortableness improves, and energy-saving effect Worth Expecting.
And, when " air conditioner " selector switch 6b has been carried out to making operation, only make air-conditioner operation, when " fan " selector switch has been carried out to making operation, make first and second pressure fan 4,5 both sides' runnings.Like this, can utilize a remote controller 6 to make air conditioner and the running individually respectively of the first and second pressure fan 4,5, user's convenience improves.
In addition, in the present embodiment, the wind direction of the first pressure fan 4 and the second pressure fan 5 is fixed, but also can be used the first pressure fan 4 and second pressure fan 5 that can make change of the wind.And, utilize floor temperature sensor 3(infrared ray sensor) and detect ground plate temperature, but also can also detect on this basis and be present in indoor human body.In this case, when the quantity of the human body being detected by floor temperature sensor 3 is many than usual, the cooling operation of control part 10 and air conditioner, heats running and independently make the first pressure fan 4 and second pressure fan 5 both sides' runnings.

Claims (9)

1. an air-conditioning system, is characterized in that,
Described air-conditioning system possesses:
There is the air conditioner that is arranged at indoor indoor unit;
Make the pressure fan of indoor air circulation;
Near the first temperature sensor of the temperature ceiling in sensing chamber;
Near the second temperature sensor of the temperature floor in sensing chamber;
There is the remote controller that makes the first switch that described pressure fan and described air conditioner together move; And
When described the first switch is carried out to making operation, after the running of either party in described air conditioner being freezed or heat, read in the detected temperatures of described the first temperature sensor and detected temperatures the accounting temperature of described the second temperature sensor are poor, when higher limit that described temperature difference is predetermined temperature range, make described pressure fan running, when lower limit that described temperature difference is described temperature range, stop the control part of the running of described pressure fan.
2. air-conditioning system according to claim 1, is characterized in that,
Described control part is configured to: in the refrigeration of described air conditioner or while heating running, when described temperature difference is lower and higher than described lower limit than described higher limit, so that the few mode of air quantity of the described pressure fan of the air quantity of described pressure fan while being described higher limit than described temperature difference is controlled the running of described pressure fan.
3. air-conditioning system according to claim 1 and 2, is characterized in that,
Described control part is configured to: in the refrigeration of described air conditioner or while heating running, when described temperature difference surpasses described higher limit, so that the many modes of air quantity of the described pressure fan of the air quantity of described pressure fan while being described higher limit than described temperature difference are controlled the running of described pressure fan.
4. air-conditioning system according to claim 1 and 2, is characterized in that,
At described remote controller, be provided with the 3rd switch that only makes the second switch of described air-conditioner operation and only make described pressure fan running,
Described control part is configured to: when described second switch has been carried out to making operation, only make described air-conditioner operation, when described the 3rd switch has been carried out to making operation, only make described pressure fan running.
5. an air-conditioning system, is characterized in that,
Described air-conditioning system possesses:
There is the air conditioner that is arranged at indoor indoor unit;
Make near the first pressure fan of the Air Flow in floor;
Make near the second pressure fan of the Air Flow of ceiling;
Near the first temperature sensor of the temperature ceiling in sensing chamber;
Near the second temperature sensor of the temperature floor in sensing chamber;
There is the remote controller that makes the first switch that the described first and second pressure fan and described air conditioner together move; And
When described the first switch is carried out to making operation, at described air conditioner, carry out after cooling operation, read in the detected temperatures of described the first temperature sensor and detected temperatures the accounting temperature of described the second temperature sensor are poor, when higher limit that described temperature difference is predetermined temperature range, make described the first pressure fan running, when lower limit that described temperature difference is described temperature range, stop the running of described the first pressure fan, and, at described air conditioner, heat after running, when being described higher limit, described temperature difference makes described the second pressure fan running, when being described lower limit, described temperature difference stops the control part of the running of described the second pressure fan.
6. air-conditioning system according to claim 5, is characterized in that,
Described control part is configured to: when the cooling operation of described air conditioner, when described temperature difference is lower and higher than described lower limit than described higher limit, so that the few mode of air quantity of described first pressure fan of the air quantity of described the first pressure fan while being described higher limit than described temperature difference is controlled the running of described the first pressure fan, and, when heating of described air conditioner turned round, when described temperature difference is lower and higher than described lower limit than described higher limit, so that the few mode of air quantity of described second pressure fan of the air quantity of described the second pressure fan while being described higher limit than described temperature difference is controlled the running of described the second pressure fan.
7. according to the air-conditioning system described in claim 5 or 6, it is characterized in that,
Described control part is configured to: in the refrigeration of described air conditioner or while heating running, when described temperature difference surpasses described higher limit, make described the first pressure fan and described the second pressure fan running.
8. according to the air-conditioning system described in claim 5 or 6, it is characterized in that,
At described remote controller, be provided with the 3rd switch that only makes the second switch of described air-conditioner operation and make the described first and second pressure fan both sides running,
Described control part is configured to: when only described second switch having been carried out to making operation, only make described air-conditioner operation, when described the 3rd switch has been carried out to making operation, make the described first and second pressure fan both sides running.
9. according to the air-conditioning system described in any one in claim 1,2,5,6, it is characterized in that,
Described the second temperature sensor uses infrared ray sensor.
CN201420074125.4U 2013-02-20 2014-02-20 Air-conditioning system Expired - Fee Related CN203771631U (en)

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JP2013030609A JP6072561B2 (en) 2013-02-20 2013-02-20 Air conditioning system

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CN110953791A (en) * 2019-12-27 2020-04-03 浙江荣舟海洋产业股份有限公司 Rapid freezing device for tuna high protein and preparation method
CN113494765A (en) * 2020-03-19 2021-10-12 佛山市云米电器科技有限公司 Air supply control method, air supply device and system based on air conditioner and storage medium
CN113494761A (en) * 2020-03-19 2021-10-12 佛山市云米电器科技有限公司 Air blowing control method, air blowing device, air blowing system, and storage medium

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