JP2020193748A - Housing - Google Patents

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JP2020193748A
JP2020193748A JP2019098981A JP2019098981A JP2020193748A JP 2020193748 A JP2020193748 A JP 2020193748A JP 2019098981 A JP2019098981 A JP 2019098981A JP 2019098981 A JP2019098981 A JP 2019098981A JP 2020193748 A JP2020193748 A JP 2020193748A
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housing
length
housing according
lower space
side portion
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成明 松井
Nariaki Matsui
成明 松井
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Aisin Corp
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Aisin Seiki Co Ltd
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Abstract

To secure a wide internal area in a housing.SOLUTION: A housing 10 includes: a bottom member 20 having first side parts 70 facing each other and second side parts 80 facing each other; and side surface members 21 which close side surfaces of the housing 10. The side surface member 21 includes: a panel part 26 having a width corresponding to a length of the first side part 70; and flange parts 27 formed along both side parts 28, which extend in a height direction, of the panel part 26. The panel part 26 is fixed to the outer side of the first side part 70. The flange parts 27 are fixed to the outer side of the second side part 80. Openings 23, each of which is provided in such a way so as to be opened or closed by a protection member 24, are formed at portions corresponding to the second side parts 80.SELECTED DRAWING: Figure 2

Description

本発明は、ガスの供給を受けて少なくともエネルギーの発生又は空調のいずれか一方を行うエネルギーシステムにおいて利用される筐体に関する。 The present invention relates to a housing used in an energy system that receives a gas supply and at least generates energy or air-conditions.

従来、空調装置の室外機等の機構は、筐体によって保護された状態で設置されている。 Conventionally, a mechanism such as an outdoor unit of an air conditioner is installed in a state of being protected by a housing.

例えば、特許文献1には、矩形の底部材の各頂点部から立設する4本の支柱と、支柱に固定され筐体の側面を塞ぐ側面パネルとを備える筐体が開示されている。 For example, Patent Document 1 discloses a housing including four columns erected from each apex of a rectangular bottom member and side panels fixed to the columns and closing the side surfaces of the housing.

特開2013−113558号公報Japanese Unexamined Patent Publication No. 2013-11358

筐体に収容される機構の構造が多様化及び複雑化する中で、筐体の内部領域をより広く確保することは市場のニーズである。特許文献1に開示される構成では、支柱と側面パネルが別部材で構成され、側面パネルが支柱の内側に固定されている。そのため、各側面パネルの厚さの分だけ内側に面積を必要としてしまう。このような従来構造においては、筐体の内部領域を広く確保することが困難になるという問題がある。 As the structure of the mechanism housed in the housing becomes diversified and complicated, it is a market need to secure a wider internal area of the housing. In the configuration disclosed in Patent Document 1, the support column and the side panel are composed of separate members, and the side surface panel is fixed to the inside of the support column. Therefore, an area is required inside by the thickness of each side panel. In such a conventional structure, there is a problem that it becomes difficult to secure a wide internal area of the housing.

本発明は、上記に鑑みてなされたものであり、内部領域を広く確保することができる筐体を提供することを目的とするものである。 The present invention has been made in view of the above, and an object of the present invention is to provide a housing capable of securing a wide internal area.

本発明の筐体は、上述の目的を達成するために以下の手段を採った。 The housing of the present invention has adopted the following means in order to achieve the above-mentioned object.

本発明の筐体は、ガスの供給を受けて少なくともエネルギーの発生又は空調のいずれか一方を行うエネルギーシステムにおいて利用され、内部に前記エネルギーシステムの所定の機構を収容する筐体であって、互いに対面する第一辺部と互いに対面する第二辺部とを有する底部材と、筐体の側面を塞ぐ側面部材と、を備え、側面部材は、第一辺部の長さに対応する幅を有するパネル部と、パネル部の高さ方向に延びる両側辺部に沿って形成されたフランジ部とを有し、パネル部は、第一辺部の外側に固定され、フランジ部は、第二辺部の外側に固定されるものである。このように、パネル部とフランジ部とを有する側面部材を底部材の外側を覆うように配置することにより、内部領域が側面部材の厚さ分だけ狭くなることを避けることができ、内部領域を広く確保することができる。また、上記構成によれば、一つの側面部材に、筐体の側面を塞ぐ壁面として機能するパネル部と、部材全体を支える支柱として機能するフランジ部とを一体的に備えることができるので、部品点数を削減することができる。 The housing of the present invention is used in an energy system that receives a gas supply and at least generates energy or air-conditions, and internally accommodates a predetermined mechanism of the energy system, and is a housing that accommodates each other. It includes a bottom member having a first side portion facing each other and a second side portion facing each other, and a side surface member for closing the side surface of the housing, and the side surface member has a width corresponding to the length of the first side portion. It has a panel portion to have and a flange portion formed along both side portions extending in the height direction of the panel portion, the panel portion is fixed to the outside of the first side portion, and the flange portion is the second side. It is fixed to the outside of the part. By arranging the side member having the panel portion and the flange portion so as to cover the outside of the bottom member in this way, it is possible to prevent the internal region from being narrowed by the thickness of the side member, and to reduce the internal region. Can be secured widely. Further, according to the above configuration, one side member can be integrally provided with a panel portion that functions as a wall surface that closes the side surface of the housing and a flange portion that functions as a support column that supports the entire member. The score can be reduced.

また、第二辺部に対応する部分には、保護部材により開閉可能に設けられた開口部が形成されていてもよい。これにより、通常時には開口部を保護部材で閉鎖することにより筐体内に収容された機構を保護することができる。また、メンテナンス時には保護部材を外して開口部を開放することにより筐体内の機構に対してメンテナンス等の作業を行うことができる。 Further, the portion corresponding to the second side portion may be formed with an opening provided so as to be openable and closable by a protective member. As a result, it is possible to protect the mechanism housed in the housing by closing the opening with a protective member at normal times. Further, at the time of maintenance, by removing the protective member and opening the opening, it is possible to perform maintenance and the like on the mechanism inside the housing.

また、保護部材は、フランジ部に対して着脱可能に設けられていてもよい。このように、保護部材を固定する部材として側面部材のフランジ部を有効に利用することにより、部品点数を削減することができる。 Further, the protective member may be provided detachably from the flange portion. In this way, the number of parts can be reduced by effectively using the flange portion of the side member as a member for fixing the protective member.

筐体内に収容される機構は、空調装置における室外機の少なくとも一部を構成する機構であってもよい。 The mechanism housed in the housing may be a mechanism that constitutes at least a part of the outdoor unit in the air conditioner.

また、筐体は、下部空間と、下部空間の上部に設けられた上部空間とを有し、下部空間に圧縮機構を収容し、上部空間に熱交換機構を収容し、開口部は、下部空間に形成されていてもよい。このようにメンテナンスの必要性が高いコンプレッサ等の圧縮機構を、開口部が形成された下部空間に配置することにより、メンテナンス性を向上させることができる。 Further, the housing has a lower space and an upper space provided above the lower space, the compression mechanism is housed in the lower space, the heat exchange mechanism is housed in the upper space, and the opening is the lower space. It may be formed in. By arranging the compression mechanism of the compressor or the like, which requires high maintenance, in the lower space where the opening is formed, the maintainability can be improved.

また、筐体内に空調装置の室外機の少なくとも一部を収容する場合、空調装置は、ガスヒートポンプ型であってもよい。ガスヒートポンプ型空調装置の室外機は、他の型式の空調装置に比べて大型化する傾向があるため、内部領域を広く確保できる本発明の筐体内に収容される機構として好適である。 Further, when at least a part of the outdoor unit of the air conditioner is housed in the housing, the air conditioner may be a gas heat pump type. Since the outdoor unit of the gas heat pump type air conditioner tends to be larger than other types of air conditioners, it is suitable as a mechanism housed in the housing of the present invention that can secure a wide internal area.

また、第一辺部の長さは、第二辺部の長さより短くてもよい。このように、メンテナンス等に利用される開口部が形成される第二辺部を側面部材により閉塞される第一辺部より広く設計することにより、内部領域の拡大とメンテナンス性を向上の両方を図ることができる。 Further, the length of the first side portion may be shorter than the length of the second side portion. In this way, by designing the second side where the opening used for maintenance etc. is formed wider than the first side closed by the side member, both the expansion of the internal area and the improvement of maintainability can be achieved. Can be planned.

また、第二辺部上で向かい合う2つのフランジ部間の長さは、1500mm〜1600mmの範囲内にあってもよい。これにより、比較的大型の機構を収容した場合におけるメンテナンス性を向上させることができる。 Further, the length between the two flange portions facing each other on the second side portion may be in the range of 1500 mm to 1600 mm. As a result, maintainability can be improved when a relatively large mechanism is housed.

また、筐体全体の幅方向の長さは、1650mm〜1750mm範囲内にあってもよい。これにより、比較的大型の機構を収容することができる。 Further, the length of the entire housing in the width direction may be in the range of 1650 mm to 1750 mm. As a result, a relatively large mechanism can be accommodated.

図1は実施形態にかかる筐体の全体的構造の一例を示す正面図である。FIG. 1 is a front view showing an example of the overall structure of the housing according to the embodiment. 図2は、実施形態にかかる筐体の下層部の構成の一例を示す斜視図である。FIG. 2 is a perspective view showing an example of the configuration of the lower layer portion of the housing according to the embodiment. 図3は実施形態にかかる底部材と側面部材の設置構造を筐体の内部側から示す斜視図である。FIG. 3 is a perspective view showing the installation structure of the bottom member and the side member according to the embodiment from the inside of the housing. 図4は実施形態にかかる底部材と側面部材の結合構造を筐体の内部側から示す一部拡大斜視図である。FIG. 4 is a partially enlarged perspective view showing the connecting structure of the bottom member and the side surface member according to the embodiment from the inside of the housing.

以下に、図面を参照して本発明の実施形態について説明する。 Hereinafter, embodiments of the present invention will be described with reference to the drawings.

図1は実施形態にかかる筐体10の全体的構造の一例を示す正面図である。筐体10は、ガスの供給を受けて少なくともエネルギーの発生又は空調のいずれか一方を行うエネルギーシステムにおいて利用され、内部にエネルギーシステムの所定の機構を収容するものである。本実施形態においては、ガスヒートポンプ型空調装置の室外機を収容する筐体10について説明する。 FIG. 1 is a front view showing an example of the overall structure of the housing 10 according to the embodiment. The housing 10 is used in an energy system that receives a gas supply and at least generates energy or air-conditions, and houses a predetermined mechanism of the energy system inside. In the present embodiment, the housing 10 that houses the outdoor unit of the gas heat pump type air conditioner will be described.

ガスヒートポンプ型空調装置とは、エネルギーシステムの一例であり、ガス燃料を駆動源として、ガス燃料の供給を受けることにより圧縮機構を駆動させる空調装置であり、他の型式の空調装置に比べ大型となる場合が多い。本実施形態にかかる筐体10全体の幅方向の長さL1は、1650mm〜1750mm範囲内にある。「幅方向の長さ」とは、直方体の筐体10の底面における長辺に対応する長さである。当該長さL1の数値範囲は、ガスヒートポンプ型空調装置の室外機を収容するために好適な値である。 A gas heat pump type air conditioner is an example of an energy system, which is an air conditioner that drives a compression mechanism by receiving a supply of gas fuel using gas fuel as a drive source, and is larger than other types of air conditioners. In many cases. The length L1 of the entire housing 10 according to the present embodiment in the width direction is in the range of 1650 mm to 1750 mm. The "length in the width direction" is a length corresponding to a long side on the bottom surface of the rectangular parallelepiped housing 10. The numerical range of the length L1 is a value suitable for accommodating the outdoor unit of the gas heat pump type air conditioner.

本実施形態にかかる筐体10は、下部空間30を形成する下層部40と、上部空間50を形成する上層部60とを有する2階構造である。下部空間30には、室外機の一部を構成する圧縮機構が収容され、上部空間50には、室外機の一部を構成する熱交換機構が収容される。圧縮機構とは、冷媒を圧縮して循環させる機構であり、例えばコンプレッサ等を含んで構成される。熱交換機構とは、冷媒と空気(外気)との間で熱交換させる機構であり、例えば空冷式熱交換器、送風機等を含んで構成される。 The housing 10 according to the present embodiment has a two-story structure having a lower layer portion 40 forming the lower space 30 and an upper layer portion 60 forming the upper space 50. The lower space 30 accommodates a compression mechanism forming a part of the outdoor unit, and the upper space 50 accommodates a heat exchange mechanism forming a part of the outdoor unit. The compression mechanism is a mechanism for compressing and circulating the refrigerant, and includes, for example, a compressor and the like. The heat exchange mechanism is a mechanism for exchanging heat between the refrigerant and air (outside air), and includes, for example, an air-cooled heat exchanger, a blower, and the like.

図2は、実施形態にかかる筐体10の下層部40の構成の一例を示す斜視図である。下層部40は、底部材20、側面部材21、支柱22、及び保護部材24を備える。 FIG. 2 is a perspective view showing an example of the configuration of the lower layer portion 40 of the housing 10 according to the embodiment. The lower layer portion 40 includes a bottom member 20, a side surface member 21, a support column 22, and a protective member 24.

底部材20は、筐体10の底部を構成する部材であり、互いに対面する2つの第一辺部70と互いに対面する2つの第二辺部80を有する。本実施形態においては、第一辺部70の長さが第二辺部80の長さに比べ短い。上記長さL1は、筐体10全体における第二辺部80に対応する辺の長さである。 The bottom member 20 is a member constituting the bottom portion of the housing 10, and has two first side portions 70 facing each other and two second side portions 80 facing each other. In the present embodiment, the length of the first side portion 70 is shorter than the length of the second side portion 80. The length L1 is the length of the side corresponding to the second side portion 80 in the entire housing 10.

側面部材21は、筐体10の側面を塞ぐ部材であり、本実施形態においては、第一辺部70に対応する側面を塞ぐように配置されている。側面部材21は、パネル部26とフランジ部27を有する。 The side surface member 21 is a member that closes the side surface of the housing 10, and is arranged so as to close the side surface corresponding to the first side portion 70 in the present embodiment. The side member 21 has a panel portion 26 and a flange portion 27.

パネル部26は、第一辺部70の長さに対応する幅を有する平面状の部分である。フランジ部27は、パネル部26の高さ方向(鉛直方向)に沿って延びる両側辺部28に沿って形成された部分である。本実施形態にかかるフランジ部27は、パネル部26と一体に構成され、パネル部26に対して直角に折り曲げるように形成されている。このような構成を有する側面部材21を用いることにより、筐体10の側面を塞ぐ機能と側面部材21の上部に位置する上層部60を支える機能とを1つの部材で果たすことができる。これにより、部品点数を削減し、強度的に有利なモノコック構造を実現することができる。 The panel portion 26 is a flat portion having a width corresponding to the length of the first side portion 70. The flange portion 27 is a portion formed along both side portions 28 extending along the height direction (vertical direction) of the panel portion 26. The flange portion 27 according to the present embodiment is integrally formed with the panel portion 26 and is formed so as to be bent at a right angle to the panel portion 26. By using the side surface member 21 having such a configuration, one member can fulfill the function of closing the side surface of the housing 10 and the function of supporting the upper layer portion 60 located above the side surface member 21. As a result, the number of parts can be reduced and a monocoque structure that is advantageous in terms of strength can be realized.

支柱22は、底部材20の第二辺部80から立設された部材である。本実施形態においては、支柱22が第二辺部80の略中央部に設置された例を示しているが、支柱22の設置位置はこれに限られるものではない。 The support column 22 is a member erected from the second side portion 80 of the bottom member 20. In the present embodiment, an example in which the support column 22 is installed at a substantially central portion of the second side portion 80 is shown, but the installation position of the support column 22 is not limited to this.

側面部材21のフランジ部27と支柱22との間には、開口部23が形成される。開口部23は、主に下部空間30に収容された機構(本実施形態においては圧縮機構)をメンテナンスするために使用される空間である。ここで、第二辺部80上で向かい合う2つのフランジ部27間の長さL2は1500mm〜1600mmの範囲内にあることが好ましい。当該長さL2の数値範囲は、下部空間30内の機構をメンテナンスする際に、作業員が手を入れて作業するために好適な値である。 An opening 23 is formed between the flange portion 27 of the side member 21 and the support column 22. The opening 23 is a space mainly used for maintaining a mechanism (compression mechanism in the present embodiment) housed in the lower space 30. Here, the length L2 between the two flange portions 27 facing each other on the second side portion 80 is preferably in the range of 1500 mm to 1600 mm. The numerical range of the length L2 is a value suitable for the worker to put his / her hand into the work when maintaining the mechanism in the lower space 30.

保護部材24は、開口部23を塞ぐ部材である。本実施形態にかかる保護部材24は、適宜な結合手段を用いてフランジ部27と支柱22に対して着脱可能に固定される。 The protective member 24 is a member that closes the opening 23. The protective member 24 according to the present embodiment is detachably fixed to the flange portion 27 and the support column 22 by using an appropriate coupling means.

以下に、図3及び図4を参照して底部材20と側面部材21の設置構造を詳細に説明する。 Hereinafter, the installation structure of the bottom member 20 and the side member 21 will be described in detail with reference to FIGS. 3 and 4.

図3は実施形態にかかる底部材20と側面部材21の設置構造を筐体10の内部側から示す斜視図である。図4は実施形態にかかる底部材20と側面部材21の結合構造を筐体10の内部側から示す一部拡大斜視図である。 FIG. 3 is a perspective view showing the installation structure of the bottom member 20 and the side member 21 according to the embodiment from the inside of the housing 10. FIG. 4 is a partially enlarged perspective view showing the connecting structure of the bottom member 20 and the side member 21 according to the embodiment from the inside of the housing 10.

図3及び図4に示すように、側面部材21は底部材20を外側から覆うように配置されている。第一辺部70とパネル部26は結合部材31を介して結合されている。第二辺部80とフランジ部27は結合部材32を介して結合されている。第二辺部80に対応する側面(開口部23)を塞ぐ保護部材24の幅方向の一端部とフランジ部27は結合部材33を介して着脱可能に結合されている。また、保護部材24の幅方向の他端部と支柱22は結合部材34(図2参照)を介して着脱可能に結合されている。 As shown in FIGS. 3 and 4, the side surface member 21 is arranged so as to cover the bottom member 20 from the outside. The first side portion 70 and the panel portion 26 are connected via a connecting member 31. The second side portion 80 and the flange portion 27 are connected via a coupling member 32. One end in the width direction of the protective member 24 that closes the side surface (opening 23) corresponding to the second side portion 80 and the flange portion 27 are detachably connected via the coupling member 33. Further, the other end of the protective member 24 in the width direction and the support column 22 are detachably connected via a connecting member 34 (see FIG. 2).

上記のように、パネル部26とフランジ部27を有する側面部材21を底部材20の外側に配置することで、筐体10の内部領域が側面部材21の厚さ分だけ狭くなることを防ぐことができる。これにより、筐体10の内部領域、すなわち下部空間30及び上部空間50の拡大が可能になる。 By arranging the side member 21 having the panel portion 26 and the flange portion 27 on the outside of the bottom member 20 as described above, it is possible to prevent the internal region of the housing 10 from being narrowed by the thickness of the side member 21. Can be done. As a result, the internal area of the housing 10, that is, the lower space 30 and the upper space 50 can be expanded.

また、上記のように、第二辺部80に対応する側面(開口部23)を塞ぐ保護部材24がフランジ部27と支柱22に結合部材33,34を介して着脱可能に結合されている。これにより、下部空間30に収容される圧縮機構のメンテナンス時には、適宜保護部材24を外すことにより、開口部23を介して作業を行うことができる。このとき、保護部材24を結合させる部材としてフランジ部27が有効に利用されることにより、部品点数の削減を図ることができる。また、側面部材21が底部材20の外側に配置されていることにより、開口部23を幅方向に広くとることができるため、メンテナンス性を向上させることができる。 Further, as described above, the protective member 24 that closes the side surface (opening 23) corresponding to the second side portion 80 is detachably connected to the flange portion 27 and the support column 22 via the coupling members 33 and 34. As a result, at the time of maintenance of the compression mechanism housed in the lower space 30, the work can be performed through the opening 23 by appropriately removing the protective member 24. At this time, the number of parts can be reduced by effectively using the flange portion 27 as a member for connecting the protective member 24. Further, since the side surface member 21 is arranged outside the bottom member 20, the opening 23 can be widened in the width direction, so that maintainability can be improved.

尚、上記実施形態では、筐体10内に収容される機構としてガスヒートポンプ型空調装置の室外機を例示したが、筐体10に収容される機構はこれに限られるものではなく、他のエネルギーシステムの機構が収容されてもよい。例えば、筐体10内に、ガスの供給を受けることにより発電を行うと共に発電時に発生する熱を給湯や暖房に利用する、ガスエンジンコージェネレーションシステム、燃料電池を利用したシステム等を収容してもよい。 In the above embodiment, the outdoor unit of the gas heat pump type air conditioner is exemplified as the mechanism housed in the housing 10, but the mechanism housed in the housing 10 is not limited to this, and other energies are used. The mechanism of the system may be accommodated. For example, even if the housing 10 accommodates a gas engine cogeneration system, a system using a fuel cell, etc., which generates electricity by receiving gas supply and uses the heat generated during power generation for hot water supply and heating. Good.

以上、本発明の実施形態を説明したが、この実施形態は、例として提示したものであり、発明の範囲を限定することは意図していない。これら新規な実施形態は、その他の様々な形態で実施されることが可能であり、発明の要旨を逸脱しない範囲で、種々の省略、置き換え、変更を行うことができる。これら実施形態やその変形は、発明の範囲や要旨に含まれるとともに、特許請求の範囲に記載された発明とその均等の範囲に含まれる。 Although the embodiment of the present invention has been described above, this embodiment is presented as an example and is not intended to limit the scope of the invention. These novel embodiments can be implemented in various other embodiments, and various omissions, replacements, and changes can be made without departing from the gist of the invention. These embodiments and modifications thereof are included in the scope and gist of the invention, and are also included in the scope of the invention described in the claims and the equivalent scope thereof.

10 筐体、20 底部材、21 側面部材、22 支柱、23 開口部、24 保護部材、26 パネル部、27 フランジ部、28 両側辺部、30 下部空間、31 結合部材、32 結合部材、33 結合部材、34 結合部材、40 下層部、50 上部空間、60 上層部、70 第一辺部、80 第二辺部
10 housing, 20 bottom member, 21 side member, 22 strut, 23 opening, 24 protective member, 26 panel, 27 flange, 28 both sides, 30 lower space, 31 coupling member, 32 coupling member, 33 coupling Member, 34 Joining member, 40 Lower layer, 50 Upper space, 60 Upper layer, 70 First side, 80 Second side

Claims (9)

ガスの供給を受けて少なくともエネルギーの発生又は空調のいずれか一方を行うエネルギーシステムにおいて利用され、内部に前記エネルギーシステムの所定の機構を収容する筐体であって、
互いに対面する第一辺部と互いに対面する第二辺部とを有する底部材と、
前記筐体の側面を塞ぐ側面部材と、
を備え、
前記側面部材は、前記第一辺部の長さに対応する幅を有するパネル部と、前記パネル部の高さ方向に延びる両側辺部に沿って形成されたフランジ部とを有し、
前記パネル部は、前記第一辺部の外側に固定され、
前記フランジ部は、前記第二辺部の外側に固定される、
筐体。
A housing that is used in an energy system that receives gas and at least generates energy or air-conditions, and internally houses a predetermined mechanism of the energy system.
A bottom member having a first side facing each other and a second side facing each other,
A side member that closes the side surface of the housing and
With
The side surface member has a panel portion having a width corresponding to the length of the first side portion, and a flange portion formed along both side portions extending in the height direction of the panel portion.
The panel portion is fixed to the outside of the first side portion and is fixed.
The flange portion is fixed to the outside of the second side portion.
Housing.
前記第二辺部に対応する部分には、保護部材により開閉可能に設けられた開口部が形成されている、
請求項1に記載の筐体。
An opening that is openable and closable by a protective member is formed in the portion corresponding to the second side portion.
The housing according to claim 1.
前記保護部材は、前記フランジ部に対して着脱可能に設けられている、
請求項2に記載の筐体。
The protective member is detachably provided with respect to the flange portion.
The housing according to claim 2.
前記機構は、空調装置における室外機の少なくとも一部を構成する機構である、
請求項2又は3に記載の筐体。
The mechanism is a mechanism that constitutes at least a part of an outdoor unit in an air conditioner.
The housing according to claim 2 or 3.
下部空間と、前記下部空間の上部に設けられた上部空間とを有し、
前記下部空間に圧縮機構を収容し、前記上部空間に熱交換機構を収容し、
前記開口部は、前記下部空間に形成されている、
請求項4に記載の筐体。
It has a lower space and an upper space provided above the lower space.
A compression mechanism is housed in the lower space, and a heat exchange mechanism is housed in the upper space.
The opening is formed in the lower space.
The housing according to claim 4.
前記エネルギーシステムは、ガスヒートポンプ型空調装置である、
請求項4又は5に記載の筐体。
The energy system is a gas heat pump type air conditioner.
The housing according to claim 4 or 5.
前記第一辺部の長さは、前記第二辺部の長さより短い、
請求項1〜6のいずれか1項に記載の筐体。
The length of the first side portion is shorter than the length of the second side portion.
The housing according to any one of claims 1 to 6.
前記第二辺部上で向かい合う2つのフランジ部間の長さは、1500mm〜1600mmの範囲内にある、
請求項1〜7に記載の筐体。
The length between the two flanges facing each other on the second side is in the range of 1500 mm to 1600 mm.
The housing according to claims 1 to 7.
筐体全体の幅方向の長さは、1650mm〜1750mm範囲内にある、
請求項8に記載の筐体
The length of the entire housing in the width direction is in the range of 1650 mm to 1750 mm.
8. The housing according to claim 8.
JP2019098981A 2019-05-28 2019-05-28 Housing Pending JP2020193748A (en)

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Citations (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS56138632A (en) * 1980-04-01 1981-10-29 Mitsubishi Electric Corp Air conditioning device
JPS57162420U (en) * 1981-04-06 1982-10-13
JPH02238267A (en) * 1989-12-28 1990-09-20 Kogata Gas Reibou Gijutsu Kenkyu Kumiai Gas engine-driven space cooler/heater
JP2002031373A (en) * 2001-06-20 2002-01-31 Sanyo Electric Co Ltd Refrigeration unit
JP2005351546A (en) * 2004-06-10 2005-12-22 Yanmar Co Ltd Fan guard
WO2007052556A1 (en) * 2005-11-01 2007-05-10 Daikin Industries, Ltd. Closing valve installation structure, and outdoor unit for air conditioner, having the installation structure
JP2008309430A (en) * 2007-06-15 2008-12-25 Aisin Seiki Co Ltd Casing for engine driven type air conditioner and engine driven air conditioner
US20090081940A1 (en) * 2007-09-21 2009-03-26 Seok Hoon Jang Outdoor unit of air conditioner
JP2009068750A (en) * 2007-09-12 2009-04-02 Sanyo Electric Co Ltd Outdoor unit of air conditioner
JP2017155968A (en) * 2016-02-29 2017-09-07 株式会社富士通ゼネラル Outdoor unit of air conditioner

Patent Citations (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS56138632A (en) * 1980-04-01 1981-10-29 Mitsubishi Electric Corp Air conditioning device
JPS57162420U (en) * 1981-04-06 1982-10-13
JPH02238267A (en) * 1989-12-28 1990-09-20 Kogata Gas Reibou Gijutsu Kenkyu Kumiai Gas engine-driven space cooler/heater
JP2002031373A (en) * 2001-06-20 2002-01-31 Sanyo Electric Co Ltd Refrigeration unit
JP2005351546A (en) * 2004-06-10 2005-12-22 Yanmar Co Ltd Fan guard
WO2007052556A1 (en) * 2005-11-01 2007-05-10 Daikin Industries, Ltd. Closing valve installation structure, and outdoor unit for air conditioner, having the installation structure
JP2008309430A (en) * 2007-06-15 2008-12-25 Aisin Seiki Co Ltd Casing for engine driven type air conditioner and engine driven air conditioner
JP2009068750A (en) * 2007-09-12 2009-04-02 Sanyo Electric Co Ltd Outdoor unit of air conditioner
US20090081940A1 (en) * 2007-09-21 2009-03-26 Seok Hoon Jang Outdoor unit of air conditioner
JP2017155968A (en) * 2016-02-29 2017-09-07 株式会社富士通ゼネラル Outdoor unit of air conditioner

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