JP2010169292A - Method of controlling air conditioner, and air conditioner - Google Patents

Method of controlling air conditioner, and air conditioner Download PDF

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JP2010169292A
JP2010169292A JP2009010675A JP2009010675A JP2010169292A JP 2010169292 A JP2010169292 A JP 2010169292A JP 2009010675 A JP2009010675 A JP 2009010675A JP 2009010675 A JP2009010675 A JP 2009010675A JP 2010169292 A JP2010169292 A JP 2010169292A
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wind
heat exchanger
outdoor heat
air
air conditioner
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Ryuji Momose
隆二 百瀬
Masahiko Iwata
征彦 岩田
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Mitsubishi Electric Corp
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Mitsubishi Electric Corp
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<P>PROBLEM TO BE SOLVED: To provide a method of controlling an air conditioner, and the air conditioner capable of efficiently defrosting an outdoor heat exchanger by reducing an influence of outside air applied to the outdoor heat exchanger during defrosting. <P>SOLUTION: The air conditioner includes the outdoor heat exchanger 2, an outdoor fan 3 for distributing air to the outdoor heat exchanger 2, a magnetic sensor 41 detecting a magnetic pole of a rotor disposed on a fan motor 4 for driving the outdoor fan 3, a wind direction/wind velocity operating means 10 for calculating the wind direction and the wind velocity of outside air on the basis of a result of the detection by the magnetic sensor 41, and a fan motor control means 11 for controlling an operation of the fan motor 4, and the fan motor 4 is driven to offset the outside air applied to the outdoor heat exchanger 2 on the basis of the wind direction and the wind velocity of the outside air in a defrosting operation. <P>COPYRIGHT: (C)2010,JPO&INPIT

Description

本発明は、暖房機能を有する空気調和機の制御方法及び暖房機能を有する空気調和機に関する。   The present invention relates to an air conditioner control method having a heating function and an air conditioner having a heating function.

空気調和機が暖房機能を発揮する場合には、室内機側の熱交換器が凝縮器、室外機側の熱交換器が蒸発器となり、冬期間においては室外機側の熱交換器に着霜することがある。熱交換器に付着した霜を除去する除霜運転においては、「除霜開始時に、前記電磁弁を開状態とするとともに前記室外ファンを逆回転状態に制御し、除霜終了時に、前記電磁弁を閉状態とするとともに、前記室外ファンを正回転状態に戻すように制御してなる」ものが提案されている(例えば、特許文献1参照)。   When the air conditioner performs a heating function, the heat exchanger on the indoor unit side becomes a condenser and the heat exchanger on the outdoor unit side becomes an evaporator, and in the winter period, frost is formed on the heat exchanger on the outdoor unit side. There are things to do. In the defrosting operation for removing frost adhering to the heat exchanger, “at the start of defrosting, the electromagnetic valve is opened and the outdoor fan is controlled to rotate in reverse. Has been proposed to control the outdoor fan to return to the normal rotation state (see, for example, Patent Document 1).

また、「暖房における除霜運転で、除霜運転中は送風用電動機4を停止し、除霜を効果的に行ない、除霜終了後は、送風用電動機4を一定時間逆回転させ、破線で示す矢印のごとく風の流れを変え、室外熱交換器2に残存する水滴を吹きとばす」ものが提案されている(例えば、特許文献2参照)。   In addition, “in the defrosting operation in heating, the blowing motor 4 is stopped during the defrosting operation, the defrosting is effectively performed, and after the defrosting is completed, the blowing motor 4 is reversely rotated for a certain period of time, The flow of the wind is changed as indicated by the arrows shown, and the water droplets remaining in the outdoor heat exchanger 2 are blown away "(for example, see Patent Document 2).

特開平11−304223号公報(第3頁、第4頁)JP-A-11-304223 (pages 3 and 4) 特開昭63−183335号公報(第2頁、第1図)JP-A-63-183335 (2nd page, FIG. 1)

従来の除霜運転においては、除霜中に温められている室外熱交換器への外風の影響が考慮されていなかった。したがって、室外熱交換器に外風が当たることにより室外熱交換器が冷やされて、除霜を効率的に行うことができなかった。また、除霜終了後は、室外熱交換器に付着した融解水を吹き飛ばす目的で室外ファンを逆回転させていたが、外風の影響により、室外ファンにより一定の風圧の風を室外熱交換器に当てることができず、融解水を効率的に吹き飛ばすことができなかった。   In the conventional defrosting operation, the influence of the outside wind on the outdoor heat exchanger heated during the defrosting has not been considered. Therefore, the outdoor heat exchanger is cooled by the outdoor wind hitting the outdoor heat exchanger, and defrosting cannot be performed efficiently. In addition, after the defrosting was completed, the outdoor fan was rotated in reverse for the purpose of blowing off the molten water adhering to the outdoor heat exchanger. The molten water could not be blown off efficiently.

本発明は、上記のような課題を解決するためになされたもので、除霜中の室外熱交換器に当たる外風の影響を少なくすることにより、効率的に室外熱交換器を除霜することのできる空気調和機の制御方法及び空気調和機を提供するものである。   The present invention has been made to solve the above-described problems, and efficiently defrosts an outdoor heat exchanger by reducing the influence of outside air hitting the outdoor heat exchanger during defrosting. Provided is an air conditioner control method and an air conditioner that can be used.

本発明は、室外熱交換器を備えた空気調和機の制御方法であって、外風の風向を検知する工程と、外風の風速を検知する工程と、前記室外熱交換器の除霜中に、検知した外風の風向と風速に基づいて、前記室外熱交換器に当たる外風を相殺するように送風する工程とを有するものである。   The present invention is a method for controlling an air conditioner including an outdoor heat exchanger, the step of detecting the direction of the outside wind, the step of detecting the wind speed of the outside wind, and the defrosting of the outdoor heat exchanger And a step of blowing air so as to cancel out the outside wind hitting the outdoor heat exchanger based on the detected wind direction and wind speed of the outside wind.

本発明に係る空気調和機の制御方法は、外風の風向と風速を検知し検知した結果に基づいて室外熱交換器に当たる外風を相殺するようにしたので、外風により室外熱交換器が冷やされるのを防ぎ、効率的な除霜運転を行うことができる。   In the control method of the air conditioner according to the present invention, the outdoor wind hitting the outdoor heat exchanger is canceled based on the result of detecting and detecting the wind direction and the wind speed of the external wind. It is possible to prevent cooling and perform an efficient defrosting operation.

本発明の実施の形態1に係る空気調和機100の要部構成図である。It is a principal part block diagram of the air conditioner 100 which concerns on Embodiment 1 of this invention. 本発明の実施の形態1に係る空気調和機100の除霜運転を示すフローチャートである。It is a flowchart which shows the defrost driving | operation of the air conditioner 100 which concerns on Embodiment 1 of this invention. 本発明の実施の形態2に係る空気調和機200の要部構成図である。It is a principal part block diagram of the air conditioner 200 which concerns on Embodiment 2 of this invention.

実施の形態1.
図1は本発明の実施の形態1に係る空気調和機の要部構成図である。本実施の形態1では、室外機と室内機を有し、冷媒を循環させる冷凍サイクルを利用して冷房運転及び暖房運転を行う空気調和機を例に説明する。また、本発明及び以降の説明において、外風とは、室外機の設置箇所もしくはその周辺部の風のことをいうものとする。
Embodiment 1 FIG.
FIG. 1 is a main part configuration diagram of an air conditioner according to Embodiment 1 of the present invention. In the first embodiment, an air conditioner that has an outdoor unit and an indoor unit and performs a cooling operation and a heating operation using a refrigeration cycle that circulates refrigerant will be described as an example. Moreover, in this invention and subsequent description, an external wind shall mean the wind of the installation location of an outdoor unit, or its peripheral part.

図1において、空気調和機100は、室外熱交換器2、ファンモーター4によって駆動される室外ファン3、及び圧縮機(図示せず)を備えた室外機1と、室内熱交換器7を備えた室内機6を有し、室外機1と室内機6は冷媒ガス循環用の接続配管である冷媒配管5を介して接続されている。   In FIG. 1, an air conditioner 100 includes an outdoor heat exchanger 2, an outdoor fan 3 driven by a fan motor 4, an outdoor unit 1 including a compressor (not shown), and an indoor heat exchanger 7. The outdoor unit 1 and the indoor unit 6 are connected via a refrigerant pipe 5 which is a connection pipe for circulating the refrigerant gas.

ファンモーター4は、ローターとステーター(ともに図示せず)を備えたモーターである。ステーターには、ローターのN極あるいはS極の磁極を検知可能なホール素子などを用いた磁気センサー41a、41b、41c(以下、総称して磁気センサー41と称する場合がある)を備えている。磁気センサー41の検知結果は風向風速演算手段10に出力される。   The fan motor 4 is a motor provided with a rotor and a stator (both not shown). The stator includes magnetic sensors 41a, 41b, and 41c (hereinafter, collectively referred to as the magnetic sensor 41) using Hall elements that can detect the magnetic poles of the N pole or S pole of the rotor. The detection result of the magnetic sensor 41 is output to the wind direction / wind speed calculation means 10.

風向風速演算手段10は、磁気センサー41の検知結果に基づいて、後述する方法により外風の風速及び方向を検出する。風向風速演算手段10の検出結果はファンモーター制御手段11に出力される。ファンモーター制御手段11は、風向風速演算手段10の検出結果に基づいて、インバーター制御によりファンモーター4の回転数及び回転方向を制御する。風向風速演算手段10及びファンモーター制御手段11は、マイコンなどにより構成される。なお、本発明の風速風向検知手段は、本実施の形態1では磁気センサー41と風速風向演算手段10に相当する。   The wind direction and wind speed calculation means 10 detects the wind speed and direction of the outside wind based on the detection result of the magnetic sensor 41 by a method described later. The detection result of the wind direction / wind speed calculation means 10 is output to the fan motor control means 11. The fan motor control means 11 controls the rotation speed and the rotation direction of the fan motor 4 by inverter control based on the detection result of the wind direction / wind speed calculation means 10. The wind direction and wind speed calculation means 10 and the fan motor control means 11 are configured by a microcomputer or the like. The wind speed / wind direction detecting means of the present invention corresponds to the magnetic sensor 41 and the wind speed / wind direction calculating means 10 in the first embodiment.

次に、風向風速演算手段10による外風の風速及び方向の検出方法を説明する。
室外機1が外風にさらされている状態において、ファンモーター4を駆動していない場合には、外風により室外ファン3が回転させられる。この室外ファン3の回転に伴ってファンモーター4のローターが回転すると、ローターのN極あるいはS極を、磁気センサー41a、41b、41cがそれぞれ検知する。風向風速演算手段10は、磁気センサー41a、41b、41cが磁極を検出する順番に基づいて、室外ファン3の回転方向を判断することができる。例えば、磁気センサー41a、41b、41cの順番で磁極が検知された場合には順方向での回転、磁気センサー41c、41b、41aの順番で磁極が検知された場合には逆方向での回転、と判断することができる。
また、磁気センサー41がローターのN極あるいはS極を検出する周期(検出時間間隔)は室外ファン3の回転数に反比例し、室外ファン3の回転数は外風の風速に比例する。したがって、検出時間間隔を測定し、この値に基づいて外風の風速を判断することができる。
Next, a method for detecting the wind speed and direction of the outside wind by the wind direction and wind speed calculation means 10 will be described.
When the outdoor motor 1 is exposed to the external wind and the fan motor 4 is not driven, the outdoor fan 3 is rotated by the external wind. When the rotor of the fan motor 4 rotates with the rotation of the outdoor fan 3, the magnetic sensors 41a, 41b, 41c detect the N pole or S pole of the rotor, respectively. The wind direction and wind speed calculation means 10 can determine the rotation direction of the outdoor fan 3 based on the order in which the magnetic sensors 41a, 41b, and 41c detect the magnetic poles. For example, when the magnetic poles are detected in the order of the magnetic sensors 41a, 41b, 41c, rotation in the forward direction, and when the magnetic poles are detected in the order of the magnetic sensors 41c, 41b, 41a, rotation in the reverse direction, It can be judged.
The period (detection time interval) at which the magnetic sensor 41 detects the N pole or S pole of the rotor is inversely proportional to the rotational speed of the outdoor fan 3, and the rotational speed of the outdoor fan 3 is proportional to the wind speed of the outdoor wind. Therefore, the detection time interval is measured, and the wind speed of the outside wind can be determined based on this value.

このように構成された空気調和機100は、図示しないリモコンなどの設定に従って冷房運転や暖房運転を行う。暖房運転時には、室外熱交換器2は蒸発器として機能し、室外ファン3から供給される空気と冷媒との間で熱交換を行う。ここで、蒸発器として機能している室外熱交換器2は温度が低下するので、霜が付着しやすい。室外熱交換器2に霜が付着した状態で運転を続けると、熱交換効率が低下して空気調和機100の能力が低下してしまう。そこで、空気調和機100は、所定タイミングで除霜運転を行う。   The air conditioner 100 configured as described above performs a cooling operation or a heating operation according to settings of a remote controller (not shown). During the heating operation, the outdoor heat exchanger 2 functions as an evaporator, and performs heat exchange between the air supplied from the outdoor fan 3 and the refrigerant. Here, since the temperature of the outdoor heat exchanger 2 functioning as an evaporator decreases, frost tends to adhere to the outdoor heat exchanger 2. If the operation is continued in a state where frost is attached to the outdoor heat exchanger 2, the heat exchange efficiency is lowered and the performance of the air conditioner 100 is lowered. Therefore, the air conditioner 100 performs a defrosting operation at a predetermined timing.

図2は、除霜運転の動作を示すフローチャートである。
除霜運転を開始すると、ファンモーター4を停止して(S101)、室外ファン3の回転を停止させる。そして、上述のようにして外風の風速及び方向を検出する(S102)。続けて、室外熱交換器2に高温のガス冷媒を流入させ、除霜を開始する(S103)。室外熱交換器2に高温のガス冷媒が流入すると、その熱により室外熱交換器2に付着した霜が融解する。
FIG. 2 is a flowchart showing the operation of the defrosting operation.
When the defrosting operation is started, the fan motor 4 is stopped (S101), and the rotation of the outdoor fan 3 is stopped. Then, the wind speed and direction of the outside wind are detected as described above (S102). Subsequently, a high-temperature gas refrigerant is caused to flow into the outdoor heat exchanger 2 to start defrosting (S103). When a high-temperature gas refrigerant flows into the outdoor heat exchanger 2, the frost attached to the outdoor heat exchanger 2 is melted by the heat.

そして、除霜中は、ステップS102で検出した外風の風速及び方向に基づいて、この外風を相殺するようにファンモーター4の回転数と回転方向を制御する(S104)。ファンモーター制御手段11はインバーター制御を行うので、ファンモーター4の回転数を連続的に切り替え、精度の高い制御を行うことができる。そして、室外ファン3が発生させる風により外風を相殺することで、除霜中の室外熱交換器2にはほとんど風が当たらない状態となる。このように、室外熱交換器2への外風の影響を除去することで、効果的に除霜を行うことができる。例えば、従来であれば、外風が強い場合にはその影響で室外熱交換器2が冷やされて高温のガス冷媒による除霜効果を低下させていたが、本実施の形態1に係る空気調和機100によればそのようなこともない。なお、外風が無く無風状態である場合には、ファンモーター4を動作させなくてよい。   During defrosting, the rotational speed and direction of rotation of the fan motor 4 are controlled based on the wind speed and direction of the outside wind detected in step S102 so as to cancel out the outside wind (S104). Since the fan motor control means 11 performs inverter control, the rotational speed of the fan motor 4 can be continuously switched to perform highly accurate control. Then, by canceling the outside wind with the wind generated by the outdoor fan 3, the outdoor heat exchanger 2 being defrosted is hardly hit by the wind. Thus, defrosting can be effectively performed by removing the influence of the external wind on the outdoor heat exchanger 2. For example, conventionally, when the outside wind is strong, the outdoor heat exchanger 2 is cooled by the influence and the defrosting effect by the high-temperature gas refrigerant is reduced. However, the air conditioning according to the first embodiment is performed. According to the machine 100, this is not the case. Note that the fan motor 4 does not have to be operated when there is no outside wind and no wind.

室外熱交換器2の除霜が終了すると(S105)、ステップS102で検出した外風の風速及び方向に基づいて、室外熱交換器2に所定の風圧を与えるようにファンモーター4を動作させ、室外ファン3を回転させる(S106)。除霜後の室外熱交換器2には融解水が付着しているので、外風と室外ファン3が発生させる風によって所定の風圧を与えることで、室外熱交換器2に付着した融解水を吹き飛ばす。例えば、室外ファン3から室外熱交換器2の方向に融解水を吹き飛ばしたい場合において、外風が室外熱交換器2から室外ファン3の方向に吹いているときには、外風を相殺し、さらに、室外熱交換器2に所定の風圧を与えることができるようにファンモーター4の動作を制御する。反対に、外風が室外ファン3から室外熱交換器2の方向に吹いているときには、室外熱交換器2に所定の風圧を与えることができるよう、外風を補うようにファンモーター4の動作を制御する。このようにすることで、室外熱交換器2に付着した融解水を効果的に吹き飛ばすことができる。なお、外風が所定の風圧を有している場合には、外風により融解水を吹き飛ばすことができるので、ファンモーター4を動作させなくてよい。   When the defrosting of the outdoor heat exchanger 2 is completed (S105), the fan motor 4 is operated to give a predetermined wind pressure to the outdoor heat exchanger 2 based on the wind speed and direction of the external wind detected in step S102, The outdoor fan 3 is rotated (S106). Since the melted water adheres to the outdoor heat exchanger 2 after defrosting, the melted water adhering to the outdoor heat exchanger 2 is obtained by applying a predetermined wind pressure by the external wind and the wind generated by the outdoor fan 3. Blow away. For example, when it is desired to blow molten water from the outdoor fan 3 in the direction of the outdoor heat exchanger 2, when the external wind is blowing from the outdoor heat exchanger 2 in the direction of the outdoor fan 3, the external wind is offset, The operation of the fan motor 4 is controlled so that a predetermined wind pressure can be applied to the outdoor heat exchanger 2. On the contrary, when the outdoor wind is blowing from the outdoor fan 3 toward the outdoor heat exchanger 2, the operation of the fan motor 4 is performed so as to supplement the outdoor wind so that a predetermined wind pressure can be applied to the outdoor heat exchanger 2. To control. By doing in this way, the molten water adhering to the outdoor heat exchanger 2 can be blown off effectively. When the outside wind has a predetermined wind pressure, the melt water can be blown off by the outside wind, so that the fan motor 4 need not be operated.

以上のように本実施の形態1に係る空気調和機100によれば、除霜中には、外風の風速及び方向を検知した結果に基づいて、室外ファン3を動作させて外風を相殺するようにした。このため、除霜中に室外熱交換器2が外風によって冷やされるのを防ぎ、効率的に除霜を行うことができる。したがって、従来よりも省エネルギー運転を行うことができる。
また、除霜後には、外風の風速及び方向を検知した結果に基づいて、室外熱交換器2に所定の風圧が与えられるように室外ファン3を動作させるようにした。このため、除霜後に室外熱交換器2に付着した融解水を効果的に吹き飛ばすことができる。したがって、融解水が室外熱交換器2に再凍結するのを防ぐことができ、暖房運転時の暖房能力を向上させることができる。
また、外風の風向及び風速の検出は、既存の室外ファン3とその駆動源であるファンモーター4を利用して行うことができるので、安価に構成することができる。
As described above, according to the air conditioner 100 according to the first embodiment, during the defrosting, the outdoor fan 3 is operated based on the result of detecting the wind speed and direction of the outside wind to cancel the outside wind. I tried to do it. For this reason, it is possible to prevent the outdoor heat exchanger 2 from being cooled by the outside air during defrosting, and to perform defrosting efficiently. Therefore, the energy saving operation can be performed as compared with the conventional case.
Further, after the defrosting, the outdoor fan 3 is operated so that a predetermined wind pressure is applied to the outdoor heat exchanger 2 based on the result of detecting the wind speed and direction of the outside wind. For this reason, the molten water adhering to the outdoor heat exchanger 2 after defrosting can be blown off effectively. Therefore, it is possible to prevent the molten water from refreezing in the outdoor heat exchanger 2, and to improve the heating capacity during the heating operation.
Moreover, since the detection of the wind direction and wind speed of an external wind can be performed using the existing outdoor fan 3 and the fan motor 4 which is the drive source, it can be comprised at low cost.

なお、本実施の形態1では、高温のガス冷媒により除霜を行う例を説明したが、ヒーターによる除霜を行う空気調和機に本発明を適用することもでき、同様の効果を得ることができる。   In addition, in this Embodiment 1, although the example which performs defrosting with a high temperature gas refrigerant was demonstrated, this invention can also be applied to the air conditioner which performs defrosting with a heater, and the same effect can be acquired. it can.

また、室外熱交換器2の付近の外気温を検出する温度検出手段を別途設け、検出結果をファンモーター制御手段11に出力するようにしてもよい。そして、ファンモーター制御手段11は、外風の風向、風速に加え、外気温を考慮して除霜中及び除霜後のファンモーター4の運転を制御するようにする。このようにすることで、さらに効率的な除霜運転を行うことができる。   Further, a temperature detection unit that detects an outside air temperature in the vicinity of the outdoor heat exchanger 2 may be provided separately, and the detection result may be output to the fan motor control unit 11. The fan motor control means 11 controls the operation of the fan motor 4 during and after the defrosting in consideration of the outside air temperature and the wind speed in addition to the outside air temperature. By doing in this way, a more efficient defrosting operation can be performed.

実施の形態2.
前述の実施の形態1では、室外ファン3のファンモーター4に設けた磁気センサー41の出力によって外風の風速と風向を検出する例を示した。本実施の形態2では、外風の風向と風速を検出する風向風速センサーを別途設ける場合の構成例について説明する。
Embodiment 2. FIG.
In the first embodiment described above, an example in which the wind speed and direction of the outside wind is detected based on the output of the magnetic sensor 41 provided in the fan motor 4 of the outdoor fan 3 has been described. In the second embodiment, a configuration example in the case where a wind direction and wind speed sensor that detects the wind direction and the wind speed of the outside wind is separately provided will be described.

図3は、本発明の実施の形態2に係る空気調和機200の要部構成図である。図3において、前述の実施の形態1と同様または相当する構成要素には、同一の符号を付している。
図3において、空気調和機200は、風向風速センサー12を備える。風向風速センサー12は、室外熱交換器2に当たる外風の風向と風速とを検出し、これに応じた信号をファンモーター制御手段11に出力する。
FIG. 3 is a main part configuration diagram of an air conditioner 200 according to Embodiment 2 of the present invention. In FIG. 3, constituent elements that are the same as or correspond to those in the first embodiment are given the same reference numerals.
In FIG. 3, the air conditioner 200 includes a wind direction / wind speed sensor 12. The wind direction and wind speed sensor 12 detects the wind direction and the wind speed of the outside wind that hits the outdoor heat exchanger 2, and outputs a signal corresponding to this to the fan motor control means 11.

風向風速センサー12としては、例えば、胴体に垂直尾翼とプロペラを備え、外風により回転する胴体の向きにより風向を検出し、プロペラの回転数により風速を検出する既知の回転型の風向風速センサーを用いることができる。
また、例えば、超音波の発信器・受信器を備え、外風によって変化する超音波の到達時間差に基づいて風向と風速を検出する既知の超音波型の風向風速センサーを用いてもよい。
As the wind direction and wind speed sensor 12, for example, a known rotating type wind direction and wind speed sensor that includes a vertical tail and a propeller on a fuselage, detects the wind direction based on the direction of the fuselage rotated by external wind, and detects the wind speed based on the rotation speed of the propeller. Can be used.
Further, for example, a known ultrasonic type wind direction and wind speed sensor that includes an ultrasonic transmitter / receiver and detects a wind direction and a wind speed based on an arrival time difference of an ultrasonic wave that changes due to an external wind may be used.

以上のように構成された空気調和機200は、前述の実施の形態1で述べた図2のフローチャートに従って除霜運転を行う。このように、室外熱交換器2に当たる外風の風向と風速を検出する風向風速センサー12を設けても、前述の実施の形態1と同様に、除霜を効率的に行うことができるとともに、除霜後は室外熱交換器2に付着した融解水を効果的に吹き飛ばすことができる。   The air conditioner 200 configured as described above performs the defrosting operation according to the flowchart of FIG. 2 described in the first embodiment. Thus, even if the wind direction and wind speed sensor 12 that detects the wind direction and the wind speed of the outside wind that hits the outdoor heat exchanger 2 can be provided, defrosting can be performed efficiently, as in the first embodiment. After defrosting, the molten water adhering to the outdoor heat exchanger 2 can be effectively blown off.

1 室外機、2 室外熱交換器、3 室外ファン、4 ファンモーター、5 冷媒配管、6 室内機、7 室内熱交換器、10 風向風速演算手段、11 ファンモーター制御手段、12 風向風速センサー、41 磁気センサー、41a 磁気センサー、41b 磁気センサー、41c 磁気センサー、100 空気調和機、200 空気調和機。   DESCRIPTION OF SYMBOLS 1 Outdoor unit, 2 Outdoor heat exchanger, 3 Outdoor fan, 4 Fan motor, 5 Refrigerant piping, 6 Indoor unit, 7 Indoor heat exchanger, 10 Wind direction wind speed calculating means, 11 Fan motor control means, 12 Wind direction wind speed sensor, 41 Magnetic sensor, 41a Magnetic sensor, 41b Magnetic sensor, 41c Magnetic sensor, 100 Air conditioner, 200 Air conditioner.

Claims (8)

室外熱交換器を備えた空気調和機の制御方法であって、
外風の風向を検知する工程と、
外風の風速を検知する工程と、
前記室外熱交換器の除霜中に、検知した外風の風向と風速に基づいて、前記室外熱交換器に当たる外風を相殺するように送風する工程とを有する
ことを特徴とする空気調和機の制御方法。
A control method for an air conditioner equipped with an outdoor heat exchanger,
Detecting the direction of the outside wind;
Detecting the wind speed of the outside wind;
An air conditioner having a step of blowing air so as to offset the outside air hitting the outdoor heat exchanger based on the detected direction and speed of the outside air during the defrosting of the outdoor heat exchanger Control method.
室外熱交換器を備えた空気調和機の制御方法であって、
外風の風向を検知する工程と、
外風の風速を検知する工程と、
前記室外熱交換器の除霜後に、検知した外風の風向と風速に基づいて、前記室外熱交換器に所定の風圧の風が当たるよう送風する工程とを有する
ことを特徴とする空気調和機の制御方法。
A control method for an air conditioner equipped with an outdoor heat exchanger,
Detecting the direction of the outside wind;
Detecting the wind speed of the outside wind;
And a step of blowing air so that a wind of a predetermined wind pressure hits the outdoor heat exchanger based on the detected wind direction and wind speed of the outdoor air after defrosting the outdoor heat exchanger. Control method.
室外熱交換器と、
前記室外熱交換器に送風可能な送風手段と、
前記室外熱交換器に当たる外風の風向と風速を検知する風向風速検知手段と、
前記送風手段の運転制御を行う送風運転制御手段とを備え、
前記送風運転制御手段は、前記室外熱交換器の除霜中に、前記風向風速検知手段の検知結果に基づいて、前記室外熱交換器に当たる外風を相殺するように前記送風手段を動作させる
ことを特徴とする空気調和機。
An outdoor heat exchanger,
A blowing means capable of blowing air to the outdoor heat exchanger;
Wind direction and wind speed detecting means for detecting the wind direction and wind speed of the outside wind hitting the outdoor heat exchanger;
A blow operation control means for controlling the operation of the blow means,
The air blowing operation control means operates the air blowing means so as to cancel out the external wind hitting the outdoor heat exchanger based on the detection result of the wind direction wind speed detecting means during the defrosting of the outdoor heat exchanger. Air conditioner characterized by.
室外熱交換器と、
前記室外熱交換器に送風可能な送風手段と、
前記室外熱交換器に当たる外風の風向と風速を検知する風向風速検知手段と、
前記送風手段の運転制御を行う送風運転制御手段とを備え、
前記送風運転制御手段は、前記室外熱交換器の除霜後に、前記風向風速検知手段の検知結果に基づいて、前記室外熱交換器に所定の風圧を与えるよう前記送風手段を動作させる
ことを特徴とする空気調和機。
An outdoor heat exchanger,
A blowing means capable of blowing air to the outdoor heat exchanger;
Wind direction and wind speed detecting means for detecting the wind direction and wind speed of the outside wind hitting the outdoor heat exchanger;
A blow operation control means for controlling the operation of the blow means,
The air blowing operation control means operates the air blowing means so as to give a predetermined wind pressure to the outdoor heat exchanger based on a detection result of the wind direction wind speed detecting means after defrosting the outdoor heat exchanger. Air conditioner.
前記送風手段は、前記室外熱交換器の前面に設けられたファンと、ローターを備え前記送風運転制御手段に制御されて前記ファンを駆動するファンモーターとを有し、
前記風向風速検知手段は、前記ローターの磁極を検知する少なくとも3個の磁気センサーと、前記磁気センサーの検知結果に基づいて外風の風向と風速を算出する風向風速演算部とを有する
ことを特徴とする請求項3または請求項4記載の空気調和機。
The air blowing means includes a fan provided on the front surface of the outdoor heat exchanger, and a fan motor that includes a rotor and is driven by the air blowing operation control means to drive the fan.
The wind direction and wind speed detection means includes at least three magnetic sensors that detect magnetic poles of the rotor, and a wind direction and wind speed calculation unit that calculates a wind direction and a wind speed of outside wind based on a detection result of the magnetic sensor. The air conditioner according to claim 3 or 4.
前記風向風速検知手段は、回転型風向風速センサーである
ことを特徴とする請求項3または請求項4記載の空気調和機。
The air conditioner according to claim 3 or 4, wherein the wind direction wind speed detecting means is a rotary wind direction wind speed sensor.
前記風向風速検知手段は、超音波式風向風速センサーである
ことを特徴とする請求項3または請求項4記載の空気調和機。
The air conditioner according to claim 3 or 4, wherein the wind direction and wind speed detecting means is an ultrasonic wind direction and wind speed sensor.
前記送風運転制御手段は、前記送風手段の運転制御をインバーター制御により行うことを特徴とする請求項3〜請求項7のいずれかに記載の空気調和機。   The air conditioner according to any one of claims 3 to 7, wherein the air blowing operation control means performs operation control of the air blowing means by inverter control.
JP2009010675A 2009-01-21 2009-01-21 Method of controlling air conditioner, and air conditioner Pending JP2010169292A (en)

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CN102997373A (en) * 2012-12-28 2013-03-27 海信(山东)空调有限公司 Method for controlling outdoor fan of air conditioner according to environmental wind direction
JP2015161435A (en) * 2014-02-27 2015-09-07 株式会社富士通ゼネラル air conditioner
WO2018037465A1 (en) * 2016-08-22 2018-03-01 三菱電機株式会社 Heat pump apparatus, air conditioner, and water heater
JPWO2017179165A1 (en) * 2016-04-14 2018-09-20 三菱電機株式会社 Refrigeration cycle equipment
CN109612028A (en) * 2018-12-29 2019-04-12 贵州大学 A kind of method that air-conditioner outdoor unit judges the on-line monitoring to defrost and control system
CN109855235A (en) * 2019-01-28 2019-06-07 四川长虹电器股份有限公司 A kind of air conditioner defrosting system and method
CN110454915A (en) * 2019-08-05 2019-11-15 广东美的制冷设备有限公司 Air-conditioning system and its control method
CN111412582A (en) * 2020-03-24 2020-07-14 宁波奥克斯电气股份有限公司 Air conditioner defrosting control method and system and air conditioner

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Cited By (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102997373A (en) * 2012-12-28 2013-03-27 海信(山东)空调有限公司 Method for controlling outdoor fan of air conditioner according to environmental wind direction
JP2015161435A (en) * 2014-02-27 2015-09-07 株式会社富士通ゼネラル air conditioner
JPWO2017179165A1 (en) * 2016-04-14 2018-09-20 三菱電機株式会社 Refrigeration cycle equipment
WO2018037465A1 (en) * 2016-08-22 2018-03-01 三菱電機株式会社 Heat pump apparatus, air conditioner, and water heater
JPWO2018037465A1 (en) * 2016-08-22 2019-06-20 三菱電機株式会社 Heat pump device, air conditioner, and water heater
CN109612028A (en) * 2018-12-29 2019-04-12 贵州大学 A kind of method that air-conditioner outdoor unit judges the on-line monitoring to defrost and control system
CN109855235A (en) * 2019-01-28 2019-06-07 四川长虹电器股份有限公司 A kind of air conditioner defrosting system and method
CN110454915A (en) * 2019-08-05 2019-11-15 广东美的制冷设备有限公司 Air-conditioning system and its control method
CN110454915B (en) * 2019-08-05 2021-07-20 广东美的制冷设备有限公司 Air conditioning system and control method thereof
CN111412582A (en) * 2020-03-24 2020-07-14 宁波奥克斯电气股份有限公司 Air conditioner defrosting control method and system and air conditioner

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