JP2007192525A - Outdoor unit of air-conditioner - Google Patents

Outdoor unit of air-conditioner Download PDF

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JP2007192525A
JP2007192525A JP2006013481A JP2006013481A JP2007192525A JP 2007192525 A JP2007192525 A JP 2007192525A JP 2006013481 A JP2006013481 A JP 2006013481A JP 2006013481 A JP2006013481 A JP 2006013481A JP 2007192525 A JP2007192525 A JP 2007192525A
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propeller fan
wind
outdoor unit
wind direction
air conditioner
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JP4775893B2 (en
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Hiroki Ota
裕樹 太田
Ryoji Sato
良次 佐藤
Tetsushi Kishitani
哲志 岸谷
Katsuaki Nagahashi
克章 長橋
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Hitachi Ltd
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Hitachi Ltd
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Abstract

<P>PROBLEM TO BE SOLVED: To provide an outdoor unit of an air-conditioner for minimizing the influences of exhaust heat wind on surrounding environment while suppressing an increase of ventilating resistance, an increase of noises and a reduction of air volume due to a wind direction changing grill. <P>SOLUTION: The outdoor unit 101 of the air-conditioner comprises a propeller fan 103 to be driven by a motor 102, a heat exchanger 104 to be ventilated by a the propeller fan 103, a casing 107 storing the propeller fan 103 and the heat exchanger 104, and the wind direction changing grill 1 having a plurality of wind direction changing plates 2 for changing the direction of exhaust heat wind 105 blown out of the propeller fan 103. The wind direction changing plates 2 are arranged radially at spaces in the rotating direction of the propeller fan 103 and each have a sectionally circular shape for changing the direction of the exhaust heat wind 105 consisting of an axial component and a rotary component, to be blown out of the propeller fan 103, so that the rotary component is greater. <P>COPYRIGHT: (C)2007,JPO&INPIT

Description

本発明は、空気調和機の室外機に係り、特にプロペラファンから吹出される排熱風の向きを変更する風向変更グリルを備えた空気調和機の室外機に好適なものである。   The present invention relates to an outdoor unit of an air conditioner, and is particularly suitable for an outdoor unit of an air conditioner including a wind direction changing grill that changes the direction of exhaust heat air blown from a propeller fan.

風向変更グリルを備えた空気調和機の室外機としては、特開平11−201542号公報(特許文献1)に示されたものがある。この空気調和機の室外機では、吹出部から熱交換器を通過した空気が排熱風として吹出され、この排熱風の流れを整えるために吹出部に標準グリルと呼ばれる整流板が取り付けられている。そして、吹出部からの排気の放出先に障害物や人の通路などがある場合は、さらに標準グリルの外側に風向調整板が取り付けられる。この風向調整板は、所定間隔をあけて上下に並列状態に配設された複数の細板状の羽根を有し、この羽根の傾斜によって吹出部からの排熱風の向きを一方向(上方向)へ集中させて変更するようになっている。   As an outdoor unit of an air conditioner provided with a wind direction changing grill, there is one disclosed in Japanese Patent Laid-Open No. 11-201542 (Patent Document 1). In the outdoor unit of this air conditioner, the air that has passed through the heat exchanger is blown out as exhaust hot air from the blow-out unit, and a rectifying plate called a standard grill is attached to the blow-out unit in order to regulate the flow of the exhaust hot air. When there is an obstacle or a human passage at the discharge destination of the exhaust from the blowout part, a wind direction adjusting plate is further attached to the outside of the standard grill. This wind direction adjusting plate has a plurality of thin plate-like blades arranged in parallel in the vertical direction with a predetermined interval, and the direction of the exhaust heat air from the blowout portion is set in one direction (upward direction) by the inclination of the blades. ) And change it.

特開平11−201542号公報Japanese Patent Laid-Open No. 11-201542

しかし、空気調和機の室外機のプロペラファンから吹出される排熱風は、当該プロペラファンの回転に伴い強い旋回流れとなっているため、上下に並列状態に配設された複数の細板状の羽根にさまざまな角度成分を持って入射することとなる。このため、風向調整板が排熱風に対して大きな通風抵抗となり、騒音の増大や風量低下を招いていた。   However, since the exhaust hot air blown from the propeller fan of the outdoor unit of the air conditioner has a strong swirl flow with the rotation of the propeller fan, a plurality of thin plate-like shapes arranged in parallel in the vertical direction The light enters the blade with various angle components. For this reason, the wind direction adjusting plate has a large ventilation resistance with respect to the exhaust heat wind, which causes an increase in noise and a decrease in the air volume.

また、近年の空気調和機の小型化かつ空調能力の大容量化に伴ってプロペラファンの送風量が増大している。特許文献1のように排熱風を一方向にのみ風向変更すると、その排熱風が集中して強大なものとなるため、この強大な排熱風による周囲環境への配慮が新たに必要となり、特許文献1の風向調整板を標準装備することの制約となっていた。   In addition, the amount of air blown by the propeller fan has increased with the recent reduction in size of air conditioners and the increase in air conditioning capacity. If the direction of the exhaust heat wind is changed only in one direction as in Patent Document 1, the exhaust heat wind concentrates and becomes strong, and therefore, consideration for the surrounding environment due to this powerful exhaust heat wind is newly required. It was a restriction of the standard installation of the wind direction adjusting plate No. 1.

さらには、標準グリルに追加して風向調整板を別途用意することでコストの増加、美観の低下などの不具合が生じていた。   Furthermore, in addition to the standard grille, a separate wind direction adjusting plate was prepared, resulting in problems such as an increase in cost and a decrease in aesthetics.

本発明の目的は、風向変更グリルによる通風抵抗の増加、騒音増大及び風量低下を抑制しつつ、排熱風による周囲環境への影響を最小限にできる空気調和機の室外機を得ることにある。   The objective of this invention is obtaining the outdoor unit of the air conditioner which can minimize the influence on the surrounding environment by exhaust heat wind, suppressing the increase in ventilation resistance by a wind direction change grille, noise increase, and a wind volume fall.

前述の目的を達成するために、本発明は、電動機により駆動されるプロペラファンと、前記プロペラファンにより通風される熱交換器と、前記プロペラファン及び前記熱交換器を収容した筐体と、前記プロペラファンから吹出された排熱風の向きを変更する複数の風向変更板を有する風向変更グリルと、を備えた空気調和機の室外機において、前記風向変更板は、前記プロペラファンの回転方向に間隔をあけて放射状に配置されると共に、前記プロペラファンから吹出される軸方向成分及び旋回方向成分を持った排熱風を旋回方向成分が大きくなるように風向変更する円弧断面形状を有している構成にしたことにある。   To achieve the above object, the present invention provides a propeller fan driven by an electric motor, a heat exchanger ventilated by the propeller fan, a housing containing the propeller fan and the heat exchanger, An air conditioner outdoor unit having a plurality of wind direction change plates for changing the direction of exhaust heat wind blown from a propeller fan, wherein the wind direction change plate is spaced in the rotation direction of the propeller fan A configuration having an arc cross-sectional shape that is arranged radially with a gap and changes the direction of the exhaust heat air having an axial component and a swirl direction component blown from the propeller fan so that the swirl direction component becomes larger It is in that.

係る本発明のより好ましい具体的な構成例は次の通りである。
(1)前記風向変更板は前記プロペラファンの風速分布に合わせて半径方向の外周側が幅広となっていること。
(2)前記風向変更板は半径方向に同一幅の円弧断面形状を有していること。
(3)前記風向変更グリルは前記各風向変更板を周方向に繋いだ支持部材を備えた網状グリルで構成されていること。
(4)前記風向変更グリルは前記風向変更板と前記支持部材とを樹脂で一体に形成した網状グリルで構成されており、前記支持部材は前記プロペラファンの軸方向を長手方向とする楕円断面形状に形成されていること。
A more preferable specific configuration example of the present invention is as follows.
(1) The wind direction changing plate is wide on the outer peripheral side in the radial direction in accordance with the wind speed distribution of the propeller fan.
(2) The wind direction changing plate has an arc cross-sectional shape having the same width in the radial direction.
(3) The said wind direction change grill is comprised with the mesh-like grill provided with the supporting member which connected each said wind direction change board to the circumferential direction.
(4) The wind direction changing grill is configured by a mesh grille in which the wind direction changing plate and the supporting member are integrally formed of resin, and the supporting member has an elliptical cross-sectional shape with the axial direction of the propeller fan as a longitudinal direction. Be formed in.

本発明によれば、風向変更グリルによる通風抵抗の増加、騒音増大及び風量低下を抑制しつつ、排熱風による周囲環境への影響を最小限にできる空気調和機の室外機が得られる。   ADVANTAGE OF THE INVENTION According to this invention, the outdoor unit of the air conditioner which can minimize the influence on the surrounding environment by exhaust heat wind is obtained, suppressing the increase in ventilation resistance by a wind direction change grill, noise increase, and a wind volume fall.

以下、本発明の一実施形態の空気調和機の室外機について、図1〜図4を用いて説明する。   Hereinafter, the outdoor unit of the air conditioner of one Embodiment of this invention is demonstrated using FIGS. 1-4.

まず、本実施形態の空気調和機の室外機の全体構成及び動作に関して図1及び図2を参照しながら説明する。図1は本発明の第1実施形態の空気調和機の室外機の斜視模式図、図2は図1の室外機の正面図である。なお、図1では支持部材3(図2参照)を省略して示してある。   First, the overall configuration and operation of the outdoor unit of the air conditioner according to the present embodiment will be described with reference to FIGS. 1 and 2. FIG. 1 is a schematic perspective view of an outdoor unit of an air conditioner according to a first embodiment of the present invention, and FIG. 2 is a front view of the outdoor unit of FIG. In FIG. 1, the support member 3 (see FIG. 2) is omitted.

空気調和機の室外機101は、電動機102と、この電動機102により駆動されるプロペラファン103と、プロペラファン103により通風される熱交換器104と、電動機102、プロペラファン103及び熱交換器104を収容した筐体107と、筐体107の吹出部に配置されてプロペラファン103から吹出される排熱風105の向きを変更する風向変更グリル1とを備えている。   The outdoor unit 101 of the air conditioner includes an electric motor 102, a propeller fan 103 driven by the electric motor 102, a heat exchanger 104 ventilated by the propeller fan 103, an electric motor 102, a propeller fan 103, and a heat exchanger 104. The housing 107 that is housed, and the wind direction changing grill 1 that is arranged in the blowing portion of the housing 107 and changes the direction of the exhaust heat air 105 blown out from the propeller fan 103 are provided.

なお、図中では省略したが、室外機101には圧縮機やアキュムレータ等の機械部品や制御装置等の電気部品も備えられている。また、室外機101は、室内機と組み合わされ、圧縮機や熱交換器などからなる冷凍サイクルを備えている。   Although not shown in the drawing, the outdoor unit 101 is also provided with mechanical parts such as a compressor and an accumulator and electrical parts such as a control device. The outdoor unit 101 is combined with an indoor unit and includes a refrigeration cycle including a compressor and a heat exchanger.

かかる空気調和機の運転スイッチをオンすることにより、圧縮機及びプロペラファン103が駆動される。圧縮機の駆動により、冷凍サイクルが動作して、熱交換器104が凝縮器(冷房運転時)または蒸発器(暖房運転時)として作用し、室外空気へ放熱または室外空気から吸熱する。一方、プロペラファン103の駆動により、室外空気は、筐体107の背面吸込み部から筐体107内に吸込まれて熱交換器104と熱交換して加熱または冷却された後、電動機102の周囲を通ってプロペラファン103に吸込まれ、プロペラファン10から筐体107の風向変更グリル1を通して排熱風105として吹出される。この排熱風105には、加熱されて高温となった排熱風、冷却されて低温になった排熱風の場合が含まれる。   The compressor and propeller fan 103 are driven by turning on the operation switch of the air conditioner. By driving the compressor, the refrigeration cycle is operated, and the heat exchanger 104 acts as a condenser (during cooling operation) or an evaporator (during heating operation) to radiate heat to the outdoor air or absorb heat from the outdoor air. On the other hand, the driving of the propeller fan 103 causes outdoor air to be sucked into the housing 107 from the back suction portion of the housing 107 and exchanged heat with the heat exchanger 104 to be heated or cooled, and then around the electric motor 102. Then, the air is sucked into the propeller fan 103 and blown out from the propeller fan 10 through the wind direction changing grill 1 of the casing 107 as exhaust heat air 105. The exhaust hot air 105 includes exhaust heat air that has been heated to a high temperature and exhaust heat air that has been cooled to a low temperature.

次に、風向変更グリル1の構成の詳細を図1及び図2を参照しながら説明する。   Next, details of the configuration of the wind direction changing grill 1 will be described with reference to FIGS. 1 and 2.

風向変更グリル1は、図1及び図2に示すように、プロペラファン103から吹出された排熱風105の向きを変更して周方向に拡散する風向変更板2と、この風向変更板支持部材3とを備え、筐体107に標準装備されている。この風向変更グリル1は、風向変更板2と支持部材3とを樹脂で一体に形成して網状グリルを構成し、外部から異物が侵入しプロペラファン103と接触することを防ぐようになっている。また、この風向変更グリル1は、プロペラファン103の排熱口の外径と同等もしくはこれよりも大きく覆うように設定されている。   As shown in FIGS. 1 and 2, the wind direction changing grill 1 includes a wind direction changing plate 2 that changes the direction of the exhaust heat air 105 blown from the propeller fan 103 and diffuses in the circumferential direction, and the wind direction changing plate support member 3. And is standard on the housing 107. The wind direction changing grill 1 is configured such that a wind direction changing plate 2 and a support member 3 are integrally formed of resin to form a mesh grill, and prevent foreign matter from entering from outside and coming into contact with the propeller fan 103. . In addition, the wind direction changing grill 1 is set to cover the outer diameter of the heat exhaust port of the propeller fan 103 or larger than this.

風向変更板2は、図2に示すように、プロペラファン103の回転方向に間隔をあけて放射状に配置された複数の風向変更板で構成されている。   As shown in FIG. 2, the wind direction changing plate 2 is composed of a plurality of wind direction changing plates that are radially arranged at intervals in the rotation direction of the propeller fan 103.

また、風向変更板2は、プロペラファン103から吹出される軸方向成分及び旋回方向成分を持った排熱風105を旋回方向成分が大きくなるように風向変更する円弧断面形状を有している(図4参照)。なお、本実施形態では、風向変更板2の断面形状はプロペラファン103の半径方向に対し同一となっているので、風向変更グリル1の成形型の製作が容易であるが、これを考慮しなくても良い場合には、半径方向に異なるものであってもよい。   Further, the wind direction changing plate 2 has an arc cross-sectional shape that changes the wind direction of the exhaust hot air 105 having the axial direction component and the swirl direction component blown from the propeller fan 103 so that the swirl direction component becomes larger (see FIG. 4). In the present embodiment, since the cross-sectional shape of the wind direction changing plate 2 is the same as the radial direction of the propeller fan 103, it is easy to manufacture the mold for forming the wind direction changing grill 1, but this is not considered. If it is acceptable, it may be different in the radial direction.

さらに、風向変更板2は、プロペラファン103の風速分布に合わせて半径方向の外周側が幅広となっている。なお、本実施形態では、プロペラファン103の風速分布にほぼ合致するように、排熱風105の流出側が半径方向に円弧状に形成しているが、成形型の製作を容易にするために、外周側が同一幅の直線状で内側が幅狭になる傾斜した直線状の組み合わせとしてもよい。   Further, the wind direction changing plate 2 is wide on the outer peripheral side in the radial direction in accordance with the wind speed distribution of the propeller fan 103. In the present embodiment, the outflow side of the exhaust hot air 105 is formed in an arc shape in the radial direction so as to substantially match the wind speed distribution of the propeller fan 103. However, in order to facilitate the production of the mold, It is good also as the linear combination which inclined the linear shape with the same width | variety and the inner side becomes narrow.

支持部材3は、各風向変更板2を周方向に繋ぐように全周方向に渡って設置され、プロペラファン103と同心に複数のリングで構成されている。各支持部材3はプロペラファン103の軸方向を長手方向とする楕円断面形状に形成されている。これによって、通風抵抗の増加を抑制しつつ、風向変更グリル1の全体強度を確保することができる。なお、支持部材3を円形断面形状としてもよい。   The support member 3 is installed over the entire circumferential direction so as to connect the respective wind direction changing plates 2 in the circumferential direction, and is configured by a plurality of rings concentrically with the propeller fan 103. Each support member 3 is formed in an elliptical cross-sectional shape whose longitudinal direction is the axial direction of the propeller fan 103. As a result, the overall strength of the wind direction changing grill 1 can be ensured while suppressing an increase in ventilation resistance. The support member 3 may have a circular cross-sectional shape.

次に、風向変更グリル1の機能に関して図1から図4を参照しながら説明する。   Next, the function of the wind direction changing grill 1 will be described with reference to FIGS.

図3は本実施形態におけるプロペラファン103の吹出し風速分布を示す図である。熱交換器104を通過した排熱空気は、プロペラファン103の前縁103aから流入され、プロペラファン103の翼面を沿って風速を増し、プロペラファン103の後縁103bから流出される。プロペラファン103の後縁103bより流出される排熱風105は、軸方向成分及び旋回方向成分を有して図3に示すように、プロペラファン103の半径方向にわたって吹出される。本実施形態では、上述したようにプロペラファン103の回転方向に間隔をあけて放射状に複数の風向変更板2を備えているので、プロペラファン103から吹出される排熱風105が各風向変更板2にほぼ同じ角度成分で入射することとなり、従来例に比較して通風抵抗が格段に低減でき、騒音の低減や風量増加を図ることができる。ここで、排熱風105を全周わたって旋回方向へ拡散するので、従来例のように一方向に集中させる場合と比較して、その速度を小さくでき、周囲環境への影響を低減することができる。   FIG. 3 is a diagram showing the blown air speed distribution of the propeller fan 103 in the present embodiment. The exhaust heat air that has passed through the heat exchanger 104 flows in from the front edge 103 a of the propeller fan 103, increases the wind speed along the blade surface of the propeller fan 103, and flows out from the rear edge 103 b of the propeller fan 103. The exhaust hot air 105 flowing out from the rear edge 103b of the propeller fan 103 has an axial component and a swirl component, and is blown out in the radial direction of the propeller fan 103 as shown in FIG. In the present embodiment, as described above, since the plurality of wind direction change plates 2 are provided radially at intervals in the rotation direction of the propeller fan 103, the exhaust heat wind 105 blown out from the propeller fan 103 is supplied to each wind direction change plate 2. Therefore, the ventilation resistance can be remarkably reduced as compared with the conventional example, and noise can be reduced and the air volume can be increased. Here, since the exhaust hot air 105 is diffused in the turning direction over the entire circumference, the speed can be reduced and the influence on the surrounding environment can be reduced as compared with the case of concentrating in one direction as in the conventional example. it can.

また、プロペラファン103の後縁103bより流出される排熱風105の風速分布は、プロペラファン103の各半径位置によって異なり、プロペラファン103の半径に0.7〜0.8を乗じた位置での風速が最も早くなる分布4に示すようになることが一般的に知られている。このプロペラファン103の後縁103bから流出する排熱風は、プロペラファン103の回転に伴って、風速分布4→5→6と推移し、強い旋回吹出し流れとなっている。本実施形態では、上述したようにプロペラファン103の風速分布に合わせて半径方向の外周側が幅広の風向変更板2を備えているので、排熱風105の旋回方向への拡散を半径方向にわたって確実に行うことができ、周囲環境への影響をより一層低減することができる。   Moreover, the wind speed distribution of the exhaust hot air 105 flowing out from the trailing edge 103b of the propeller fan 103 differs depending on each radial position of the propeller fan 103, and at a position obtained by multiplying the radius of the propeller fan 103 by 0.7 to 0.8. It is generally known that the wind speed is as shown in the distribution 4 that is the fastest. The exhaust heat air flowing out from the trailing edge 103b of the propeller fan 103 changes in the wind speed distribution 4 → 5 → 6 as the propeller fan 103 rotates, and is a strong swirling blow flow. In the present embodiment, as described above, since the radial direction outer peripheral side includes the wide wind direction changing plate 2 in accordance with the wind speed distribution of the propeller fan 103, the exhaust heat wind 105 is reliably diffused in the swirl direction over the radial direction. Can be performed, and the influence on the surrounding environment can be further reduced.

図4は本実施形態における風向変更板2とプロペラファン103周りの空気の流れ状態を模式的に示す拡大図であり、プロペラファン103の後縁103bと、風向変更グリル1の構成部材である風向変更板2の配置関係を示したものである。   FIG. 4 is an enlarged view schematically showing the air flow around the wind direction changing plate 2 and the propeller fan 103 in the present embodiment, and the wind direction which is a constituent member of the rear edge 103 b of the propeller fan 103 and the wind direction changing grill 1. The arrangement | positioning relationship of the change board 2 is shown.

プロペラファン103は、図4に示すように、回転周速度uで回転し、この回転速度uとプロペラファン103の後縁103bの形状とによって決まるファン回転軸方向絶対速度Cm2と、ファン回転周方向絶対速度Cu2と、の関係から吹出し速度Cが求められる。一般に、プロペラファン103の吹出し速度Cの向きはファン回転軸方向と一致せずにαなる角度となり、これが先に述べた排熱風105の旋回流の原因となる。 As shown in FIG. 4, the propeller fan 103 rotates at a rotational circumferential speed u, and the fan rotational axis direction absolute speed C m2 determined by the rotational speed u and the shape of the trailing edge 103b of the propeller fan 103, and the fan rotational circumference a direction absolute velocity C u2, the speed C 2 blown from the relationship obtained. Generally, blowing velocity C 2 direction of propeller fan 103 becomes an angle comprised α without coincident with the fan rotation axis direction, which causes the swirling flow of the exhaust hot air 105 previously described.

ここで、風向変更グリル1の構成部材である風向変更板2をプロペラファン103の半径方向に配置することで、上述したように、プロペラファン103の後縁103bから流出する排熱風105の向きと、風向変更板2の曲面形状の入口角度を常に一致させることができる。さらに、本実施形態では、風向変更板2は、プロペラファン103から吹出される軸方向成分及び旋回方向成分を持った排熱風105を旋回方向成分が大きくなるように風向変更する円弧断面形状を有しているので、従来例と比較して、通風抵抗を低減しつつ、排熱風105の向きを角度αよりも小さな角度βへと滑らかに変化させて排熱風105を周方向へ拡散することができる。特に、風向変更板2の角度βを45度より小さくすることにより、室外機101の前方における障害物や人の通路などの周囲環境に殆ど影響を与えることをなくすことができる。   Here, by arranging the wind direction changing plate 2 which is a constituent member of the wind direction changing grill 1 in the radial direction of the propeller fan 103, as described above, the direction of the exhaust heat wind 105 flowing out from the rear edge 103b of the propeller fan 103 and The entrance angle of the curved shape of the wind direction changing plate 2 can always be matched. Further, in the present embodiment, the wind direction changing plate 2 has an arc cross-sectional shape that changes the wind direction of the exhaust hot air 105 having the axial direction component and the swirl direction component blown from the propeller fan 103 so that the swirl direction component becomes larger. Therefore, compared with the conventional example, the exhaust hot air 105 can be diffused in the circumferential direction by smoothly changing the direction of the exhaust hot air 105 to an angle β smaller than the angle α while reducing the ventilation resistance. it can. In particular, by making the angle β of the wind direction changing plate 2 smaller than 45 degrees, it is possible to eliminate almost any influence on the surrounding environment such as obstacles and human passages in front of the outdoor unit 101.

本発明の第1実施形態の空気調和機の室外機の斜視模式図である。It is a perspective schematic diagram of the outdoor unit of the air conditioner of 1st Embodiment of this invention. 図1の室外機の正面図である。It is a front view of the outdoor unit of FIG. 本実施形態におけるプロペラファンの吹出し風速分布を示す図である。It is a figure which shows the blowing wind speed distribution of the propeller fan in this embodiment. 本実施形態における風向変更板とプロペラファン周りの空気の流れ状態を模式的に示す拡大図である。It is an enlarged view which shows typically the flow state of the air around the wind direction change board and propeller fan in this embodiment.

符号の説明Explanation of symbols

1…風向変更グリル、2…風向変更板、3…支持部材、4…風速分布、5…回転後の風速分布、6…回転後の風速分布、101…空気調和機の室外機、102…電動機、103…プロペラファン、103a…プロペラファン前縁、103b…プロペラファン後縁、104…熱交換器、105…排熱風、107…筐体。
DESCRIPTION OF SYMBOLS 1 ... Wind direction change grille, 2 ... Wind direction change board, 3 ... Support member, 4 ... Wind speed distribution, 5 ... Wind speed distribution after rotation, 6 ... Wind speed distribution after rotation, 101 ... Outdoor unit of air conditioner, 102 ... Electric motor DESCRIPTION OF SYMBOLS 103 ... Propeller fan 103a ... Propeller fan leading edge 103b ... Propeller fan trailing edge 104 ... Heat exchanger 105 ... Exhaust hot air 107 ... Housing.

Claims (5)

電動機により駆動されるプロペラファンと、
前記プロペラファンにより通風される熱交換器と、
前記プロペラファン及び前記熱交換器を収容した筐体と、
前記プロペラファンから吹出された排熱風の向きを変更する複数の風向変更板を有する風向変更グリルと、を備えた空気調和機の室外機において、
前記風向変更板は、前記プロペラファンの回転方向に間隔をあけて放射状に配置されると共に、前記プロペラファンから吹出される軸方向成分及び旋回方向成分を持った排熱風を旋回方向成分が大きくなるように風向変更する円弧断面形状を有していること、
を特徴とする空気調和機の室外機。
A propeller fan driven by an electric motor;
A heat exchanger ventilated by the propeller fan;
A housing containing the propeller fan and the heat exchanger;
In an outdoor unit of an air conditioner comprising: a wind direction change grille having a plurality of wind direction change plates that change the direction of exhaust heat wind blown from the propeller fan,
The wind direction changing plate is radially arranged with a spacing in the rotation direction of the propeller fan, and the swirl direction component of exhaust heat wind having an axial direction component and a swirl direction component blown out from the propeller fan is increased. Have an arc cross-sectional shape to change the wind direction,
An air conditioner outdoor unit characterized by
請求項1に記載の空気調和機の室外機において、前記風向変更板は前記プロペラファンの風速分布に合わせて半径方向の外周側が幅広となっていること、を特徴とする空気調和機の室外機。   2. The outdoor unit for an air conditioner according to claim 1, wherein the wind direction changing plate has a wide outer peripheral side in a radial direction in accordance with a wind speed distribution of the propeller fan. . 請求項1に記載の空気調和機の室外機において、前記風向変更板は半径方向に同一幅の円弧断面形状を有していること、を特徴とする空気調和機の室外機。   The outdoor unit for an air conditioner according to claim 1, wherein the wind direction changing plate has an arc cross-sectional shape having the same width in the radial direction. 請求項1から3の何れかに記載の空気調和機の室外機において、前記風向変更グリルは前記各風向変更板を周方向に繋いだ支持部材を備えた網状グリルで構成されていること、を特徴とする空気調和機の室外機。   The outdoor unit of an air conditioner according to any one of claims 1 to 3, wherein the wind direction change grill is configured by a mesh grille provided with a support member that connects the wind direction change plates in the circumferential direction. A featured outdoor unit of an air conditioner. 請求項4に記載の空気調和機の室外機において、前記風向変更グリルは前記風向変更板と前記支持部材とを樹脂で一体に形成した網状グリルで構成されており、前記支持部材は前記プロペラファンの軸方向を長手方向とする楕円断面形状に形成されていること、を特徴とする空気調和機の室外機。
5. The outdoor unit for an air conditioner according to claim 4, wherein the wind direction change grill is configured by a mesh grille in which the wind direction change plate and the support member are integrally formed of resin, and the support member is the propeller fan. An outdoor unit for an air conditioner, characterized in that the outdoor unit of the air conditioner is formed in an elliptical cross-sectional shape with the axial direction of the
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR101520495B1 (en) * 2009-03-12 2015-05-14 엘지전자 주식회사 Outdoor unit for air conditioner

Citations (4)

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Publication number Priority date Publication date Assignee Title
JPH05264070A (en) * 1992-03-17 1993-10-12 Mitsubishi Electric Corp Outdoor apparatus of air conditioner
JP2000130799A (en) * 1998-10-26 2000-05-12 Hitachi Ltd Outdoor unit of air conditioner
JP2002349906A (en) * 2001-05-24 2002-12-04 Matsushita Electric Ind Co Ltd Outdoor unit for air-conditioning apparatus
JP2004156883A (en) * 2002-11-08 2004-06-03 Daikin Ind Ltd Fan guard for blower unit

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH05264070A (en) * 1992-03-17 1993-10-12 Mitsubishi Electric Corp Outdoor apparatus of air conditioner
JP2000130799A (en) * 1998-10-26 2000-05-12 Hitachi Ltd Outdoor unit of air conditioner
JP2002349906A (en) * 2001-05-24 2002-12-04 Matsushita Electric Ind Co Ltd Outdoor unit for air-conditioning apparatus
JP2004156883A (en) * 2002-11-08 2004-06-03 Daikin Ind Ltd Fan guard for blower unit

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR101520495B1 (en) * 2009-03-12 2015-05-14 엘지전자 주식회사 Outdoor unit for air conditioner

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