JP2015127624A - Outdoor unit - Google Patents

Outdoor unit Download PDF

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JP2015127624A
JP2015127624A JP2013273435A JP2013273435A JP2015127624A JP 2015127624 A JP2015127624 A JP 2015127624A JP 2013273435 A JP2013273435 A JP 2013273435A JP 2013273435 A JP2013273435 A JP 2013273435A JP 2015127624 A JP2015127624 A JP 2015127624A
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outdoor unit
separator
blower
heat exchanger
bell mouth
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JP6099558B2 (en
JP2015127624A5 (en
Inventor
和慶 一色
Kazunori Isshiki
和慶 一色
寛之 陣内
Hiroyuki Jinnai
寛之 陣内
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Mitsubishi Electric Corp
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Mitsubishi Electric Corp
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Priority to JP2013273435A priority Critical patent/JP6099558B2/en
Priority to CN201420813759.7U priority patent/CN204388253U/en
Publication of JP2015127624A publication Critical patent/JP2015127624A/en
Publication of JP2015127624A5 publication Critical patent/JP2015127624A5/ja
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Abstract

PROBLEM TO BE SOLVED: To secure a sufficient air amount necessary for heat exchange in an outdoor heat exchanger by smoothly flowing airflow flowing into a bell mouth of a blower from a wall surface of a separator of an outdoor unit.SOLUTION: An outdoor unit 100 includes: a machine chamber 100b for at least accommodating a compressor 9; a blower chamber 100a for at least having a heat exchanger and a bell mouth 1a of a blower 6 on two surfaces opposing to each other; and a separator 4 for partitioning between the machine chamber 100b and the blower chamber 100a. In the separator 4, one end is arranged on the heat exchanger side, and the other end is arranged on the bell mouth 1a side, and the separator is formed by three or more configuring surfaces having different angles between the one end and the other end.

Description

本発明は、送風機室と機械室とを分離するセパレータ(仕切り板)を備えた空気調和機の室外機に関するものである。   The present invention relates to an outdoor unit of an air conditioner including a separator (partition plate) that separates a blower chamber and a machine chamber.

空気調和機の室外機のセパレータの役割は、送風機室と機械室とを分離すると共に、室外熱交換器のセパレータ側から吸入された外気をセパレータの送風機室側の壁面に沿って送風機のベルマウス方向に流すことである。したがって、セパレータの壁面からベルマウス内に滑らかに気流を流すことで室外熱交換器の全面に十分な風量の外気を供給することが可能となる。   The role of the separator of the outdoor unit of the air conditioner is to separate the blower chamber from the machine room, and the outside air sucked from the separator side of the outdoor heat exchanger along the wall surface of the separator on the blower chamber side. To flow in the direction. Therefore, it is possible to supply a sufficient amount of outside air to the entire surface of the outdoor heat exchanger by flowing an air flow smoothly from the wall surface of the separator into the bell mouth.

従来の室外機のセパレータは、室外機の上面から見て、送風機のベルマウスが取り付けられた吹き出し側の前面パネルに対して傾斜した傾斜面と、この傾斜面から曲折線を経て前面体パネルに対して垂直に連続する垂直面とを有する2面の構成をしている(例えば、特許文献1、2を参照)。   The separator of the conventional outdoor unit is an inclined surface that is inclined with respect to the front panel on the blow-out side to which the bell mouth of the blower is attached as viewed from the upper surface of the outdoor unit, and a curved line from the inclined surface to the front body panel. On the other hand, it has the structure of 2 surfaces which have a perpendicular | vertical continuous vertical surface (for example, refer patent document 1, 2).

特開2013−224814号公報(図4のセパレータ14を参照)JP 2013-224814 A (refer to the separator 14 in FIG. 4) 特開2013−133972号公報(図3の仕切り板8を参照)JP 2013-133972 A (see the partition plate 8 in FIG. 3)

従来の室外機の構成(特許文献1を参照)では、セパレータの垂直面が送風機のベルマウスの流入面よりも気流の上流側まで延設されている。すると、ベルマウスとセパレータの垂直面との間に熱交換後の外気が流入しベルマウス内への滑らかな気流が阻害されると共に、折り曲げられた曲折部分で乱流が発生することで風量の低下や騒音が発生して、熱交換効率の低下が発生していた。
また、セパレータの垂直面を送風機のベルマウス側に近接させた室外機の構成(特許文献2を参照)では、比較的滑らかに気流がベルマウスに流入するが、送風機の羽根とセパレータの垂直面が接近することで、同様に乱流が発生し、風量の低下や騒音が発生していた。
In the configuration of the conventional outdoor unit (see Patent Document 1), the vertical surface of the separator extends to the upstream side of the airflow from the inflow surface of the bell mouth of the blower. Then, outside air after heat exchange flows between the bell mouth and the vertical surface of the separator, the smooth air flow into the bell mouth is obstructed, and turbulence is generated in the bent part, thereby reducing the air volume. Reduction and noise occurred, and the heat exchange efficiency was reduced.
Moreover, in the configuration of the outdoor unit in which the vertical surface of the separator is close to the bell mouth side of the blower (see Patent Document 2), the airflow flows into the bell mouth relatively smoothly. As a result, the turbulent flow was generated in the same manner, and the air volume was reduced and noise was generated.

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、室外機のセパレータの壁面から送風機のベルマウス内に流入する気流を滑らかに流し、室外熱交換器で熱交換に必要な風量を十分に確保することを目的とする。   The present invention has been made to solve the above-described problems, and smoothly flows airflow flowing from the wall surface of the separator of the outdoor unit into the bell mouth of the blower and is necessary for heat exchange with the outdoor heat exchanger. The purpose is to ensure sufficient air flow.

本発明に係る室外機は、少なくとも圧縮機を収納する機械室と、少なくとも対向する2面に熱交換器及び送風機のベルマウスを有する送風機室と、機械室と送風機室との間を仕切るセパレータとを備えた室外機であって、セパレータは、一端が熱交換器側に配置されると共に他端が前記ベルマウス側に配置され、一端と他端との間において角度の異なる3面以上の構成面にて形成されたものである。   An outdoor unit according to the present invention includes a machine room that houses at least a compressor, a blower room having a heat exchanger and a bell mouth of a blower on at least two opposing surfaces, and a separator that partitions between the machine room and the blower room. The separator has three or more configurations in which one end is disposed on the heat exchanger side and the other end is disposed on the bell mouth side, and the angle between the one end and the other end is different. It is formed by a surface.

本発明に係る室外機によれば、室外熱交換器側から吸い込んだ外気をベルマウスの流入面へ滑らかに案内することで、騒音の発生や風量の低下を最小限に抑え、セパレータを3面以上に折り曲げた簡単な加工で室外熱交換器での熱交換効率を向上させることができる。   According to the outdoor unit according to the present invention, the outside air sucked from the outdoor heat exchanger side is smoothly guided to the inflow surface of the bell mouth, so that the generation of noise and the decrease in the air volume are minimized, and the separator has three surfaces. Heat exchange efficiency in the outdoor heat exchanger can be improved by simple processing bent as described above.

実施の形態1に係る室外機の斜視図である。1 is a perspective view of an outdoor unit according to Embodiment 1. FIG. 実施の形態1に係る室外機の平面視における断面図である。It is sectional drawing in the planar view of the outdoor unit which concerns on Embodiment 1. FIG. 実施の形態1に係る室外機の機械室の斜視図である。1 is a perspective view of a machine room of an outdoor unit according to Embodiment 1. FIG. 実施の形態1に係る室外機を備える冷凍サイクルの概要図である。1 is a schematic diagram of a refrigeration cycle including an outdoor unit according to Embodiment 1. FIG. 実施の形態1に係る室外機のセパレータの斜視図である。3 is a perspective view of a separator of the outdoor unit according to Embodiment 1. FIG. 実施の形態1に係る室外機のセパレータの上面平面図である。3 is a top plan view of the separator of the outdoor unit according to Embodiment 1. FIG. 実施の形態1に係る室外機の機械室の平面視における断面図である。It is sectional drawing in the planar view of the machine room of the outdoor unit which concerns on Embodiment 1. FIG. 実施の形態2に係る室外機のセパレータの上面平面図である。6 is a top plan view of a separator of an outdoor unit according to Embodiment 2. FIG.

以下、本発明に係る室外機について、図面を用いて説明する。
なお、以下で説明する構成は、一例であり、本発明に係る室外機は、そのような構成に限定されない。
また、細かい構造については、適宜図示を簡略化又は省略している。
また、重複又は類似する説明については、適宜簡略化又は省略している。
Hereinafter, an outdoor unit according to the present invention will be described with reference to the drawings.
In addition, the structure demonstrated below is an example and the outdoor unit which concerns on this invention is not limited to such a structure.
Further, the illustration of the fine structure is simplified or omitted as appropriate.
In addition, overlapping or similar descriptions are appropriately simplified or omitted.

実施の形態1.
図1〜3を用いて実施の形態1に係る室外機における構造の概要を説明する。
図1は、実施の形態1に係る室外機の斜視図である。
図2は、実施の形態1に係る室外機の平面視における断面図である。
図3は、実施の形態1に係る室外機の機械室の斜視図である。
空気調和機の室外機100の内部は、板状のセパレータ4により大きく送風機室100aと機械室100bとに分離されている。
室外機100の筐体は、送風機6の吹き出し口が形成され、送風機室100aを覆うL字形の外郭パネル1と、機械室100b側の側面を覆う側面パネル2と、室外機100の上面を覆う天面パネル3とにより構成されている。
Embodiment 1 FIG.
The outline of the structure of the outdoor unit according to Embodiment 1 will be described with reference to FIGS.
1 is a perspective view of an outdoor unit according to Embodiment 1. FIG.
FIG. 2 is a cross-sectional view of the outdoor unit according to Embodiment 1 in plan view.
FIG. 3 is a perspective view of the machine room of the outdoor unit according to the first embodiment.
The interior of the outdoor unit 100 of the air conditioner is largely separated into a blower chamber 100a and a machine chamber 100b by a plate-like separator 4.
The casing of the outdoor unit 100 is formed with an outlet of the blower 6 and covers the L-shaped outer panel 1 that covers the blower chamber 100a, the side panel 2 that covers the side surface on the machine room 100b side, and the upper surface of the outdoor unit 100. And the top panel 3.

送風機室100a内には、室外熱交換器5、送風機6、送風機を駆動するモーター7、モーター7を支持するモーターサポート8などが設けられている。
また、機械室100b内には、圧縮機9、圧縮機マフラー10、四方弁11、電装品箱12、冷媒配管などが収納されている。
外郭パネル1には、送風機6の羽根が回転する外周に合わせてベルマウス1aが形成されている。ベルマウス1aはリング形状であり、送風機6によって吹き出された空気を送風機室内から滑らかに外部に排気する役割を有する。
In the blower chamber 100a, an outdoor heat exchanger 5, a blower 6, a motor 7 for driving the blower, a motor support 8 for supporting the motor 7, and the like are provided.
The machine room 100b houses a compressor 9, a compressor muffler 10, a four-way valve 11, an electrical component box 12, refrigerant piping, and the like.
A bell mouth 1a is formed on the outer panel 1 in accordance with the outer periphery around which the blades of the blower 6 rotate. The bell mouth 1a has a ring shape and has a role of smoothly exhausting the air blown out by the blower 6 from the blower chamber to the outside.

このような構成の室外機100は、モーター7が駆動し、送風機6が回転すると、室外熱交換器5側から外気を送風機室100a内に吸引する。そして、室外熱交換器5で冷媒と熱交換した外気は、送風機室100aを通過し、送風機6の羽根でベルマウス1a内に押し出され室外機100の外部に排気されるように構成されている。
また、室外機100の電装品箱12には、外部電源より電力が供給され、モーター7や圧縮機9等の駆動を制御する。
In the outdoor unit 100 having such a configuration, when the motor 7 is driven and the blower 6 rotates, the outside air is sucked into the blower chamber 100a from the outdoor heat exchanger 5 side. And the outside air heat-exchanged with the refrigerant | coolant with the outdoor heat exchanger 5 passes through the air blower chamber 100a, is pushed out into the bell mouth 1a with the blade | wing of the air blower 6, and is exhausted outside the outdoor unit 100. .
Moreover, electric power is supplied to the electrical component box 12 of the outdoor unit 100 from an external power source, and the drive of the motor 7 and the compressor 9 is controlled.

ここで 空気調和機の冷凍サイクルの概要を示す。
図4は、実施の形態1に係る室外機を備える冷凍サイクルの概要図である。
空気調和機は、圧縮機9、四方弁11、室外熱交換器5、膨張弁14、室内熱交換器13から主に構成され、これらを冷媒配管でつないで冷凍サイクル装置を構成している。
Here is an overview of the refrigeration cycle of the air conditioner.
FIG. 4 is a schematic diagram of a refrigeration cycle including the outdoor unit according to Embodiment 1.
The air conditioner is mainly composed of a compressor 9, a four-way valve 11, an outdoor heat exchanger 5, an expansion valve 14, and an indoor heat exchanger 13, and these are connected by a refrigerant pipe to constitute a refrigeration cycle apparatus.

この冷凍サイクル装置を冷房運転する時には、四方弁11を図4の実線側に示す流路とし運転を行う。冷凍サイクル装置上で、圧縮機9より吐出した高温高圧のガス冷媒は、四方弁11を経て室外熱交換器5に送られる。このとき、室外熱交換器5は凝縮器として機能し、ガス冷媒は放熱し液化する。そして、液化した液冷媒は膨張弁14を通り減圧膨張し、室内熱交換器13内で室内空気から熱を奪い気化する。この際、室内熱交換器13は蒸発器として機能する。   When this refrigeration cycle apparatus is in cooling operation, the four-way valve 11 is operated with the flow path shown on the solid line side in FIG. The high-temperature and high-pressure gas refrigerant discharged from the compressor 9 on the refrigeration cycle apparatus is sent to the outdoor heat exchanger 5 through the four-way valve 11. At this time, the outdoor heat exchanger 5 functions as a condenser, and the gas refrigerant dissipates heat and liquefies. The liquefied liquid refrigerant passes through the expansion valve 14 and expands under reduced pressure, takes heat from the indoor air in the indoor heat exchanger 13 and vaporizes. At this time, the indoor heat exchanger 13 functions as an evaporator.

その後、このガス冷媒は四方弁11、圧縮機マフラー10、圧縮機9を経て再び高温高圧のガス冷媒へと変化する。圧縮機マフラー10は、ガス冷媒を一定量溜めて圧縮機9に冷媒を流すことで冷媒の流量を安定させる役割を有する。
また、室外熱交換器5と室内熱交換器13とには、それぞれ熱交換を促進する送風機が設けられ、室外機100は、送風機6の回転によって、外気を室外機100の外部より吸引し室外熱交換器5に通風させ、外気と冷媒との熱交換を行っている。
Thereafter, the gas refrigerant passes through the four-way valve 11, the compressor muffler 10, and the compressor 9, and changes again into a high-temperature and high-pressure gas refrigerant. The compressor muffler 10 serves to stabilize the flow rate of the refrigerant by storing a certain amount of gas refrigerant and flowing the refrigerant through the compressor 9.
The outdoor heat exchanger 5 and the indoor heat exchanger 13 are each provided with a blower that promotes heat exchange. The outdoor unit 100 sucks outside air from the outside of the outdoor unit 100 by the rotation of the blower 6 and is outside the room. Air is passed through the heat exchanger 5 to exchange heat between the outside air and the refrigerant.

次に、この冷凍サイクル装置を暖房運転する時には、四方弁11を図3の破線側に示す流路とし運転を行う。冷凍サイクル装置上で、圧縮機9より吐出した高温高圧のガス冷媒は、四方弁11を経て室内熱交換器13に送られる。このとき、室内熱交換器13は凝縮器として機能し、ガス冷媒は放熱し液化する。そして、液化した液冷媒は膨張弁14を通り減圧膨張し、室外熱交換器5内で外気から熱を奪い気化する。この際、室外熱交換器5は蒸発器として機能する。   Next, when this refrigeration cycle apparatus is operated for heating, the four-way valve 11 is operated with the flow path shown on the broken line side in FIG. The high-temperature and high-pressure gas refrigerant discharged from the compressor 9 on the refrigeration cycle apparatus is sent to the indoor heat exchanger 13 via the four-way valve 11. At this time, the indoor heat exchanger 13 functions as a condenser, and the gas refrigerant radiates and liquefies. The liquefied liquid refrigerant passes through the expansion valve 14 and expands under reduced pressure, takes heat from the outside air in the outdoor heat exchanger 5 and vaporizes. At this time, the outdoor heat exchanger 5 functions as an evaporator.

その後、このガス冷媒は四方弁11、圧縮機マフラー10、圧縮機9を経て再び高温高圧のガス冷媒へと変化する。また、室外機100の送風機6の回転によって、外気を室外機100の外部より吸引し室外熱交換器5に通風させ、外気と冷媒との熱交換を行うのは冷房運転時と同様である。   Thereafter, the gas refrigerant passes through the four-way valve 11, the compressor muffler 10, and the compressor 9, and changes again into a high-temperature and high-pressure gas refrigerant. Similarly to the cooling operation, the outside air is sucked from the outside of the outdoor unit 100 by the rotation of the blower 6 of the outdoor unit 100 and is passed through the outdoor heat exchanger 5 to exchange heat between the outside air and the refrigerant.

次に、実施の形態1に係る室外機100のセパレータ4の構成について説明する。
図5は、実施の形態1に係る室外機のセパレータの斜視図である。
図6は、実施の形態1に係る室外機のセパレータの上面平面図である。
セパレータ4は、図2に示すように送風機室100aと機械室100bとを分離する板状の部材であり、鋼板をプレス成型等して形成されている。このセパレータ4は、室外熱交換器5のセパレータ4側から吸入された外気をセパレータ4の送風機室100a側の壁面に沿って送風機6のベルマウス1a方向に流す作用を有する。
Next, the configuration of the separator 4 of the outdoor unit 100 according to Embodiment 1 will be described.
FIG. 5 is a perspective view of the separator of the outdoor unit according to the first embodiment.
6 is a top plan view of the separator of the outdoor unit according to Embodiment 1. FIG.
As shown in FIG. 2, the separator 4 is a plate-like member that separates the blower chamber 100a and the machine chamber 100b, and is formed by press-molding a steel plate. The separator 4 has an action of flowing outside air sucked from the separator 4 side of the outdoor heat exchanger 5 along the wall surface of the separator 4 on the blower chamber 100a side in the direction of the bell mouth 1a of the blower 6.

本実施の形態1に係るセパレータ4は、角度の異なる3つの面から構成されている。この3つの面は、図6に示すように、室外熱交換器5に接する位置で気流の上流側に形成された第1面4aと、この第1面4aに連続して折り曲げられて形成された第2面4bと、もっとも気流の下流側で第2面4bに連続して折り曲げられて形成された第3面4cで構成されている。   The separator 4 according to the first embodiment is composed of three surfaces with different angles. As shown in FIG. 6, the three surfaces are formed by a first surface 4 a formed on the upstream side of the airflow at a position in contact with the outdoor heat exchanger 5, and continuously bent on the first surface 4 a. The second surface 4b and the third surface 4c formed by being continuously bent to the second surface 4b on the most downstream side of the airflow.

セパレータ4の第1面4aと第2面4bとが折り曲げられて形成された第1曲折線4d、及び第2面4bと第3面4cとが折り曲げられて形成された第2曲折線4eは、共に室外機100の上面視で送風機室100a側に凸形状となるように構成されている。
また、第1面4aと外郭パネル1の前面パネルとの成す角度をθ1とし、第2面4bと外郭パネル1の前面パネルとの成す角度をθ2とすると、θ1<θ2の関係となっている。
The first bent line 4d formed by bending the first surface 4a and the second surface 4b of the separator 4 and the second bent line 4e formed by bending the second surface 4b and the third surface 4c are: Both are configured to have a convex shape toward the blower chamber 100a when the outdoor unit 100 is viewed from above.
Further, if the angle formed by the first surface 4a and the front panel of the outer panel 1 is θ1, and the angle formed by the second surface 4b and the front panel of the outer panel 1 is θ2, the relationship θ1 <θ2 is established. .

また、第3面4cと外郭パネル1の前面パネルとの成す角度は略垂直となっている。すなわち、θ1<θ2<θ3の関係が成り立つようにセパレータ4の3つの面は形成されている。この時、セパレータ4の傾斜角度は、θ1を30°±5°、θ2を80°±5°としとして構成することが望ましい。   The angle formed between the third surface 4c and the front panel of the outer panel 1 is substantially vertical. That is, the three surfaces of the separator 4 are formed so that the relationship of θ1 <θ2 <θ3 is established. At this time, it is desirable that the inclination angle of the separator 4 is set so that θ1 is 30 ° ± 5 ° and θ2 is 80 ° ± 5 °.

そして、セパレータ4の第1曲折線4dは、図6に示すように平面視においてセパレータ4の室外熱交換器5側の一端とベルマウス1aの流入面1bを通る仮想面1cとの間に位置している。また、第2曲折線4eは、平面視においてセパレータ4の前面パネル側の他端とベルマウス1aの流入面1bを通る仮想面1cとの間に位置している。   The first bent line 4d of the separator 4 is located between one end of the separator 4 on the outdoor heat exchanger 5 side and a virtual surface 1c passing through the inflow surface 1b of the bell mouth 1a in plan view as shown in FIG. doing. Moreover, the 2nd bending line 4e is located between the other end by the side of the front panel of the separator 4 and the virtual surface 1c which passes along the inflow surface 1b of the bellmouth 1a in planar view.

このように構成されたセパレータ4によれば、第1面4a〜第3面4cまで2つの曲折線で折り曲げた簡単な加工で室外熱交換器5側から吸い込んだ外気をベルマウス1aの流入面1bへ滑らかに案内することができる。また、第2曲折線4eがベルマウス1aの流入面1bよりも気流の下流側に位置しているので、第2面4bの壁面上を流れてきた気流が第2曲折線4e部分で剥離することがなく、滑らかにベルマウス1a内に吸い込まれる。したがって、騒音の発生や風量の低下を最小限に抑え、室外熱交換器5での熱交換効率を向上させることができる。   According to the separator 4 configured as described above, the outside air sucked from the outdoor heat exchanger 5 side by a simple process that is bent along two bending lines from the first surface 4a to the third surface 4c is the inflow surface of the bell mouth 1a. Smooth guidance to 1b is possible. Moreover, since the 2nd bending line 4e is located in the downstream of the airflow rather than the inflow surface 1b of the bellmouth 1a, the airflow which flowed on the wall surface of the 2nd surface 4b peels in the 2nd bending line 4e part. Without being sucked into the bell mouth 1a smoothly. Therefore, the generation of noise and the decrease in the air volume can be minimized, and the heat exchange efficiency in the outdoor heat exchanger 5 can be improved.

さらに、第2面4bは、送風機6の羽根から遠ざかるように第3面4cに対して傾斜しているから、送風機6の羽根の外周に起こる気流の乱流の影響を受けにくく、同様に騒音の発生や風量の低下を最小限に抑えることが可能となり室外熱交換器5での熱交換効率を向上させることができる。
なお、実施の形態1のセパレータ4は、加工コストが安価なため曲折線を2箇所とした3面構造としたが、4面構造以上とすることも可能である。
Furthermore, since the second surface 4b is inclined with respect to the third surface 4c so as to be away from the blades of the blower 6, the second surface 4b is not easily affected by the turbulence of the air flow occurring on the outer periphery of the blades of the blower 6, and similarly noise It is possible to minimize the generation of air and a decrease in air volume, and the heat exchange efficiency in the outdoor heat exchanger 5 can be improved.
The separator 4 of the first embodiment has a three-surface structure with two bent lines because the processing cost is low, but it can also be a four-surface structure or more.

また、実施の形態1に係るセパレータ4を採用した時の機械室100b内の各機器のレイアウトを図7を用いて説明する。
図7は、実施の形態1に係る室外機の機械室の平面視における断面図である。
まず、占有面積の大きい圧縮機9を機械室100bの前面側でセパレータ4の第2面4bに対向する位置に配置する。次に、圧縮機マフラー10を圧縮機9に隣接する位置でセパレータ4の第1面4aに対向する位置に配置する。そして、四方弁11を側面パネル2に沿って配置し冷媒配管を各機器に接続する。
The layout of each device in the machine room 100b when the separator 4 according to Embodiment 1 is employed will be described with reference to FIG.
FIG. 7 is a cross-sectional view of the machine room of the outdoor unit according to Embodiment 1 in a plan view.
First, the compressor 9 having a large occupation area is arranged at a position facing the second surface 4b of the separator 4 on the front side of the machine room 100b. Next, the compressor muffler 10 is disposed at a position facing the first surface 4 a of the separator 4 at a position adjacent to the compressor 9. And the four-way valve 11 is arrange | positioned along the side surface panel 2, and refrigerant | coolant piping is connected to each apparatus.

このような機械室100b内のレイアウトにより、図7のように圧縮機9と圧縮機マフラー10はセパレータ4の形状に沿った位置関係となると共に、四方弁11と冷媒配管をコンパクトに収納でき、機械室100b内の余分なスペースをなくすことができる。
よって、機械室100bをコンパクトにすることで相対的に送風機室100aの容積を確保し、室外熱交換器5に供給される外気量を増加させ熱交換効率を向上させることが可能となる。
With such a layout in the machine room 100b, the compressor 9 and the compressor muffler 10 have a positional relationship along the shape of the separator 4 as shown in FIG. 7, and the four-way valve 11 and the refrigerant pipe can be stored compactly. Extra space in the machine room 100b can be eliminated.
Therefore, by making the machine room 100b compact, it is possible to relatively secure the volume of the blower room 100a, increase the amount of outside air supplied to the outdoor heat exchanger 5, and improve the heat exchange efficiency.

実施の形態2.
実施の形態2に係る室外機100のセパレータ4は、実施の形態1に係るセパレータ4の第2面4bに気流を案内する案内部20を設けた点で実施の形態1に係るセパレータ4と相違する。
Embodiment 2. FIG.
The separator 4 of the outdoor unit 100 according to the second embodiment is different from the separator 4 according to the first embodiment in that a guide unit 20 that guides the airflow is provided on the second surface 4b of the separator 4 according to the first embodiment. To do.

図8は、実施の形態2に係る室外機のセパレータの上面平面図である。
図8に示すようにセパレータ4の第2面4bに気流をベルマウス1aの流入面1bの方向に案内する案内部20が形成されている。案内部20は、第2面4bの表面から傾斜面20aと垂直面20bとがベルマウス1aの流入面1bに気流が向かうように立設されている。
FIG. 8 is a top plan view of the separator of the outdoor unit according to the second embodiment.
As shown in FIG. 8, a guide portion 20 is formed on the second surface 4b of the separator 4 to guide the airflow in the direction of the inflow surface 1b of the bell mouth 1a. The guide portion 20 is erected such that the inclined surface 20a and the vertical surface 20b are directed from the surface of the second surface 4b to the inflow surface 1b of the bell mouth 1a.

傾斜面20aの断面形状は、平面形状や中央が凹んだ湾曲形状、中央が膨らんだ湾曲形状など気流を案内できれば様々な形状を採用することができる。
また、垂直面20bの平面形状は、長方形や、ベルマウス1aの円弧状の輪郭に沿った円弧形状などを採用することができる。
As the cross-sectional shape of the inclined surface 20a, various shapes can be adopted as long as the airflow can be guided, such as a planar shape, a curved shape with a recessed center, and a curved shape with a swelled center.
Further, as the planar shape of the vertical surface 20b, a rectangle, an arc shape along the arc-shaped contour of the bell mouth 1a, or the like can be adopted.

このような案内部20をセパレータ4に設けることにより、第2面4bに沿って流れる熱交換後の外気をより確実にベルマウス1a内に案内することが可能となる。
したがって、騒音の発生や風量の低下を最小限に抑え、室外熱交換器5での熱交換効率を向上させることができる。
By providing such a guide part 20 in the separator 4, it becomes possible to more reliably guide the outside air after the heat exchange flowing along the second surface 4b into the bell mouth 1a.
Therefore, the generation of noise and the decrease in the air volume can be minimized, and the heat exchange efficiency in the outdoor heat exchanger 5 can be improved.

さらに、第2面4bは、送風機6の羽根から遠ざかるように第3面4cに対して傾斜しているのは実施の形態1と同様であるから、送風機6の羽根の外周に起こる気流の乱流の影響を受けにくく、騒音の発生や風量の低下を最小限に抑えることが可能となり室外熱交換器5での熱交換効率を向上させることができる。
また、実施の形態1と同様に、機械室100bをコンパクトにすることで相対的に送風機室100aの容積を確保し、室外熱交換器5に供給される外気量を増加させ熱交換効率を向上させることが可能となる。
Further, since the second surface 4b is inclined with respect to the third surface 4c so as to be away from the blades of the blower 6, it is the same as in the first embodiment. It is difficult to be influenced by the flow, it is possible to minimize the generation of noise and the reduction of the air volume, and the heat exchange efficiency in the outdoor heat exchanger 5 can be improved.
Further, as in the first embodiment, the machine room 100b is made compact so that the capacity of the blower room 100a is relatively secured, the amount of outside air supplied to the outdoor heat exchanger 5 is increased, and the heat exchange efficiency is improved. It becomes possible to make it.

1 外郭パネル、1a ベルマウス、1b 流入面、1c 仮想面、2 側面パネル、3 天面パネル、4 セパレータ、4a 第1面、4b 第2面、4c 第3面、4d 第1曲折線、4e 第2曲折線、5 室外熱交換器、6 送風機、7 モーター、8 モーターサポート、9 圧縮機、10 圧縮機マフラー、11 四方弁、12 電装品箱、13 室内熱交換器、14 膨張弁、20 案内部、20a 傾斜面、20b 垂直面、100 室外機、100a 送風機室、100b 機械室。   1 outer panel, 1a bell mouth, 1b inflow surface, 1c imaginary surface, 2 side panel, 3 top panel, 4 separator, 4a first surface, 4b second surface, 4c third surface, 4d first bent line, 4e 2nd bent line, 5 outdoor heat exchanger, 6 blower, 7 motor, 8 motor support, 9 compressor, 10 compressor muffler, 11 four-way valve, 12 electrical component box, 13 indoor heat exchanger, 14 expansion valve, 20 Guide part, 20a inclined surface, 20b vertical surface, 100 outdoor unit, 100a blower room, 100b machine room.

Claims (7)

少なくとも圧縮機を収納する機械室と、少なくとも対向する2面に熱交換器及び送風機のベルマウスを有する送風機室と、前記機械室と前記送風機室との間を仕切るセパレータとを備えた室外機であって、
前記セパレータは、一端が前記熱交換器側に配置されると共に他端が前記ベルマウス側に配置され、前記一端と前記他端との間において角度の異なる3面以上の構成面にて形成されたことを特徴とする室外機。
An outdoor unit comprising at least a machine room for storing a compressor, a blower room having a heat exchanger and a bell mouth of a blower on at least two opposing surfaces, and a separator for partitioning the machine room and the blower room. There,
The separator has one end disposed on the heat exchanger side and the other end disposed on the bell mouth side, and is formed of three or more constituent surfaces having different angles between the one end and the other end. An outdoor unit characterized by that.
前記セパレータは、前記一端から前記他端に向けて第1面、第2面、第3面の順で構成され、前記第1面と前記第2面との交線を第1曲折線、前記第2面と前記第3面との交線を第2曲折線として折り曲げられ、
前記第1曲折線と前記第2曲折線とは共に前記送風機室側に凸形状として形成されていることを特徴とする請求項1に記載の室外機。
The separator is configured in the order of a first surface, a second surface, and a third surface from the one end toward the other end, and a line of intersection between the first surface and the second surface is a first bent line, A line of intersection between the second surface and the third surface is folded as a second bend line,
2. The outdoor unit according to claim 1, wherein both the first bent line and the second bent line are formed in a convex shape on the blower chamber side.
前記ベルマウスが形成された筐体の前面パネルと、前記第1面、前記第2面、前記第3面との成す角度をそれぞれθ1、θ2、θ3とすると、θ1<θ2<θ3の関係となることを特徴とする請求項2に記載の室外機。   If the angles formed by the front panel of the casing on which the bell mouth is formed and the first surface, the second surface, and the third surface are θ1, θ2, and θ3, respectively, the relationship of θ1 <θ2 <θ3 is established. The outdoor unit according to claim 2, wherein 前記第2曲折線は、前記ベルマウスが形成された筐体の前面パネルと前記ベルマウスの流入面を通る仮想面との間に形成されていることを特徴とする請求項2または3に記載の室外機。   The said 2nd bending line is formed between the front surface panel of the housing | casing in which the said bellmouth was formed, and the virtual surface which passes along the inflow surface of the said bellmouth. Outdoor unit. 前記セパレータ上には、前記ベルマウス側に気流を案内する案内部を立設したことを特徴とする請求項1〜4のいずれか1項に記載の室外機。   The outdoor unit according to any one of claims 1 to 4, wherein a guide portion for guiding an airflow is provided on the separator on the bell mouth side. 前記案内部は、前記第2面上に形成されていることを特徴とする請求項2〜4のいずれか1項を引用する請求項5に記載の室外機。   The outdoor unit according to any one of claims 2 to 4, wherein the guide portion is formed on the second surface. 前記案内部は、気流を案内する傾斜面を備え、前記傾斜面は断面が湾曲形状であることを特徴とする請求項5または6に記載の室外機。   The outdoor unit according to claim 5 or 6, wherein the guide portion includes an inclined surface that guides an air flow, and the inclined surface has a curved cross section.
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