JP5647982B2 - Double wall structure for air conditioning - Google Patents

Double wall structure for air conditioning Download PDF

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JP5647982B2
JP5647982B2 JP2011524754A JP2011524754A JP5647982B2 JP 5647982 B2 JP5647982 B2 JP 5647982B2 JP 2011524754 A JP2011524754 A JP 2011524754A JP 2011524754 A JP2011524754 A JP 2011524754A JP 5647982 B2 JP5647982 B2 JP 5647982B2
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wall
air
conditioned air
ceiling
floor
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JPWO2011013582A1 (en
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文明 中村
文明 中村
覚令 小山
覚令 小山
剛 牧
剛 牧
耕平 柳原
耕平 柳原
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Sanyo Industries Ltd
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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F13/00Details common to, or for air-conditioning, air-humidification, ventilation or use of air currents for screening
    • F24F13/02Ducting arrangements
    • F24F13/06Outlets for directing or distributing air into rooms or spaces, e.g. ceiling air diffuser
    • F24F13/068Outlets for directing or distributing air into rooms or spaces, e.g. ceiling air diffuser formed as perforated walls, ceilings or floors
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F7/00Ventilation
    • F24F7/04Ventilation with ducting systems, e.g. by double walls; with natural circulation
    • F24F7/06Ventilation with ducting systems, e.g. by double walls; with natural circulation with forced air circulation, e.g. by fan positioning of a ventilator in or against a conduit
    • F24F7/10Ventilation with ducting systems, e.g. by double walls; with natural circulation with forced air circulation, e.g. by fan positioning of a ventilator in or against a conduit with air supply, or exhaust, through perforated wall, floor or ceiling
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04BGENERAL BUILDING CONSTRUCTIONS; WALLS, e.g. PARTITIONS; ROOFS; FLOORS; CEILINGS; INSULATION OR OTHER PROTECTION OF BUILDINGS
    • E04B9/00Ceilings; Construction of ceilings, e.g. false ceilings; Ceiling construction with regard to insulation
    • E04B9/02Ceilings; Construction of ceilings, e.g. false ceilings; Ceiling construction with regard to insulation having means for ventilation or vapour discharge
    • E04B2009/026Ceilings; Construction of ceilings, e.g. false ceilings; Ceiling construction with regard to insulation having means for ventilation or vapour discharge the supporting ceiling grid acting as air diffusers
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04FFINISHING WORK ON BUILDINGS, e.g. STAIRS, FLOORS
    • E04F19/00Other details of constructional parts for finishing work on buildings
    • E04F19/02Borders; Finishing strips, e.g. beadings; Light coves
    • E04F19/04Borders; Finishing strips, e.g. beadings; Light coves for use between floor or ceiling and wall, e.g. skirtings
    • E04F2019/044Borders; Finishing strips, e.g. beadings; Light coves for use between floor or ceiling and wall, e.g. skirtings with conduits
    • E04F2019/0445Ventilating plinths
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F2221/00Details or features not otherwise provided for
    • F24F2221/46Air flow forming a vortex

Description

本発明は、室内に空調空気を取り入れる空調用二重壁構造に関する。   The present invention relates to a double wall structure for air conditioning in which conditioned air is taken into a room.

従来、床下から空調を行う涼暖床システムが開発されている。これは、空調機器から送られる空調空気をダクト内を流通させ、このダクトに取り付けられた噴流ノズルから上方の床板に向けて吹き出し、また床下空間の空調空気を床面に設けた吹出し口から吹き出して室内に取り入れ室内の空調を行う。上記吹出し口は、床周辺の床面に複数個所設置される。   Conventionally, cool and warm floor systems that perform air conditioning from under the floor have been developed. This is because air-conditioned air sent from air-conditioning equipment circulates in the duct, and is blown out from a jet nozzle attached to the duct toward the upper floor plate, and air-conditioned air in the underfloor space is blown out from a blowout opening provided on the floor surface. Take it into the room and air-condition the room. A plurality of the outlets are installed on the floor surface around the floor.

また従来、冷暖気を壁面に面した室内側の巾木部分の吹出し口、及び廻り縁部分の吹出し口から住宅の室内空間に取り入れることによって、室内空間を均一な温度環境に保つ住宅用の空調構造が開示されている。   Conventionally, air conditioning for homes that keeps the indoor space in a uniform temperature environment by introducing cool and warm air into the indoor space of the house through the blowout port of the indoor baseboard facing the wall and the blowout port of the surrounding edge A structure is disclosed.

例えば、特許文献1には図5に示すように、冷暖房空調設備機100を1階床下と1階天井裏と2階天井裏にそれぞれ設置し、前記冷暖房空調設備機100より吹き出された冷房気を外部壁面に面した室内側の巾木部分の吹出し口102及び廻り縁部分の吹出し口104から住宅室内空間に取り入れる住宅が開示されている。これにより、住宅の室内空間は均一な温度環境と湿度環境を保つことができるというものである。   For example, in Patent Document 1, as shown in FIG. 5, air conditioning and air conditioning equipment 100 is installed under the first floor, under the first floor, and behind the second floor, and the cooling air blown out from the air conditioning and air conditioning equipment 100. Is disclosed in a house interior space through a blowout opening 102 in a baseboard portion facing the outside wall surface and a blowout opening 104 in a peripheral edge portion. Thereby, the indoor space of a house can maintain a uniform temperature environment and humidity environment.

また特許文献2には、空調対象空間の壁の幅木に吹出し方向が斜め上向きの吹出し口を、または回り縁に吹き出し方向が斜め下向きの吹出し口を設け、空調対象空間の空気を吸込み床下空間に調和空気として吹出す室内機、空調対象空間から室内機に至る換気通路、及び床下空間と空調対象空間の壁内に位置させた調和空気の吹出し通路で構成した床下空調システムが開示されている。   Further, in Patent Document 2, a blower with a blowing direction obliquely upward is provided on a baseboard of a wall of an air-conditioning target space, or a blower outlet with a blowing direction obliquely downward is provided at a peripheral edge to suck air in the air-conditioning target space into the underfloor space. There is disclosed an underfloor air conditioning system including an indoor unit that blows out as conditioned air, a ventilation passage that extends from the air conditioning target space to the indoor unit, and a conditioned air blowout passage that is positioned in the wall of the underfloor space and the air conditioning target space.

特開2002−139241JP 2002-139241 A 特開2006−78128JP 2006-78128 A

しかしながら、上記涼暖床システムは、部屋の床周辺部に床上吹出し口が設置されるため、部屋の周辺部に家具などの物が置かれた場合には、これら家具などにより床上吹出し口が塞がれる可能性があるという問題があった。   However, since the above-mentioned cool / warm floor system has floor outlets installed around the floor of the room, furniture such as furniture placed around the room will block the floor outlet. There was a problem that could be removed.

また、特許文献1の住宅は、住宅室内空間に気圧差を生じさせて空気を流動させ、この空気が流動することで各吹出し口から室内空間に冷暖気を取り入れるものであるが、各吹出し口にどのように冷暖気を分散させるかについては明確な記載がなく、均一な分散が行えるかどうかは疑問である。   Moreover, although the house of patent document 1 makes an air pressure difference generate | occur | produce in an indoor space of a house, air is made to flow, and this air flows, and it takes in cold / warm air from each outlet to indoor space. However, there is no clear description on how to distribute the cooling and heating air, and it is doubtful whether uniform dispersion can be achieved.

また、特許文献2の床下空調システムは、空調空気の吹出しを幅木の吹出し口に代えて回し縁に設け、床下空調機からの調和空気を床下空間から壁内の通気路を通して各部屋に吹出す構造であるが、これは吹出し口を幅木と回し縁の何れかに設けるものであり、室内空間に均一に温度環境が形成されるかについては問題がある。   In addition, the underfloor air conditioning system of Patent Document 2 is provided with a blown edge of the conditioned air instead of the baseboard outlet, and conditioned air from the underfloor air conditioner is blown from the underfloor space to each room through the ventilation path in the wall. This is a structure to be provided, but this is to provide the outlet at either the baseboard or the turning edge, and there is a problem as to whether the temperature environment is uniformly formed in the indoor space.

本発明は上記問題点を解決するためになされたものであり、室内空間に均一な温度環境を保ち、室内の美観にも寄与する空調用二重壁構造を提供することを目的とする。   The present invention has been made to solve the above-described problems, and an object thereof is to provide a double wall structure for air conditioning that maintains a uniform temperature environment in an indoor space and contributes to the beauty of the room.

以上の技術的課題を解決するため、本発明に係る空調用二重壁構造は、図1に示すように、空調機器からの空調空気を床下空間部に送り、この床下空間部を流通する空調空気を吹出し口を通じて室内に吹き出す空調構造において、上記床下空間部と連通する二重壁の壁部に、床下空間部からの空調空気が上方に向けて流通する壁部流通路5を形成し、床部の近傍に上記壁部流通路5を流通する空調空気の床側吹出し口24を又天井部の近傍に天井側吹出し口64をそれぞれ設け、上記床側吹出し口24の近傍の壁基礎面に、空調空気の流れを変える乱流発生板40を配置し、上記乱流発生板に上記空調空気を当てて乱流を発生させ、この乱流により空調空気を上記床側吹出し口の上方向と上記天井側吹出し口の方向との二方向に分流し、空調空気を天井側吹出し口と床側吹出し口との両方から室内に取り入れる構成である。   In order to solve the above technical problem, the double wall structure for air conditioning according to the present invention, as shown in FIG. 1, sends conditioned air from the air conditioning equipment to the underfloor space and circulates through the underfloor space. In the air conditioning structure that blows air into the room through the air outlet, the wall portion flow passage 5 through which the conditioned air from the underfloor space portion flows upward is formed in the wall portion of the double wall communicating with the underfloor space portion, A floor-side outlet 24 for air-conditioned air that circulates through the wall passage 5 in the vicinity of the floor and a ceiling-side outlet 64 in the vicinity of the ceiling are provided, respectively, and a wall base surface in the vicinity of the floor-side outlet 24 is provided. The turbulent flow generating plate 40 for changing the flow of the conditioned air is disposed, and the conditioned air is applied to the turbulent flow generating plate to generate turbulent flow. The turbulent flow causes the conditioned air to flow upward in the floor-side outlet. And divert in two directions, the direction of the ceiling side outlet and air conditioning Attention from both the ceiling side air outlet and the floor side air outlet is configured to incorporate into the room.

本発明に係る空調用二重壁構造は、上記乱流発生板40として断面L字状の長尺材を用い、これを上記床側吹出し口24の近傍の壁基礎面に横向きに配置して空調空気を当て、乱流を発生させた構成である。   In the double wall structure for air conditioning according to the present invention, a long material having an L-shaped cross section is used as the turbulent flow generation plate 40, and this is disposed laterally on the wall base surface in the vicinity of the floor side outlet 24. It is a configuration in which conditioned air is applied to generate turbulent flow.

本発明に係る空調用二重壁構造は、図6に示すように、空調機器からの空調空気を床下空間部に送り、この床下空間部を流通する空調空気を吹出し口を通じて室内に吹き出す空調構造において、上記床下空間部と連通する二重壁の壁部に、床下空間部からの空調空気が上方に向けて流通する壁部流通路5を形成し、床部の近傍に上記壁部流通路を流通する空調空気の床側吹出し口24を又天井部の近傍に天井側吹出し口64をそれぞれ設け、上記床側吹出し口の近傍の上記壁部流通路5に、この壁部流通路を閉塞する流体誘導材102を横方向に断続的に配置し、上記流体誘導材102に上記空調空気を当てて空調空気を床側吹出し口24に誘導する一方、上記流体誘導材を配置していない個所については、上記壁部流通路5を通過する空調空気をそのまま上方に流通させ、これにより空調空気を上記床側吹出し口24の方向と上記天井側吹出し口64の方向との二方向に分流し、空調空気を天井側吹出し口と床側吹出し口との両方から室内に取り入れる構成である。   As shown in FIG. 6, the double-wall structure for air conditioning according to the present invention sends air-conditioned air from the air-conditioning equipment to the underfloor space, and blows the air-conditioned air flowing through the under-floor space into the room through the outlet. The wall portion flow passage 5 through which the conditioned air from the underfloor space portion circulates upward is formed in the wall portion of the double wall communicating with the underfloor space portion, and the wall portion flow passage is formed in the vicinity of the floor portion. The floor side outlet 24 of the conditioned air flowing through the ceiling and the ceiling side outlet 64 are provided in the vicinity of the ceiling part, and the wall part flow path 5 is blocked by the wall part flow path 5 in the vicinity of the floor side outlet. The fluid guiding material 102 is intermittently disposed in the lateral direction, and the conditioned air is applied to the fluid guiding material 102 to guide the conditioned air to the floor-side outlet 24, while the fluid guiding material is not disposed. For the air conditioning that passes through the wall flow passage 5 The air is circulated as it is, so that the conditioned air is divided into two directions, the direction of the floor side outlet 24 and the direction of the ceiling side outlet 64, and the conditioned air is divided into the ceiling side outlet and the floor side outlet. It is the structure which takes in into the room from both.

本発明に係る空調用二重壁構造は、図8に示すように、空調機器からの空調空気を床下空間部に送り、この床下空間部を流通する空調空気を吹出し口を通じて室内に吹き出す空調構造において、上記床下空間部と連通する二重壁の壁部に、床下空間部からの空調空気が上方に向けて流通する壁部流通路5を形成し、床部の近傍に上記壁部流通路を流通する空調空気の床側吹出し口24を又天井部の近傍に天井側吹出し口64をそれぞれ設け、上記床側吹出し口24の近傍の上記壁部流通路5に、空調空気の通過孔118を有し上記壁部流通路の一部を閉塞する流体分配材112を横方向に配置し、上記流体分配材112に上記空調空気を当てて一部の空調空気を床側吹出し口24に誘導する一方、上記流体分配材の通過孔118を通過する空調空気を上方に流通させ、これにより空調空気を上記床側吹出し口24の方向と上記天井側吹出し口64の方向との二方向に分流し、空調空気を天井側吹出し口と床側吹出し口との両方から室内に取り入れる構成である。
上記流体分配材112は、壁部流通路5を横方向に連続的に配置してもよいし、また、所定長さの流体分配材112を横方向に断続的に配置し、隣接する流体分配材112同士の間に適当な隙間を設け、この隙間から空調空気の一部を上方に流通させるようにしてもよい。
As shown in FIG. 8, the double wall structure for air conditioning according to the present invention sends the conditioned air from the air conditioning equipment to the underfloor space and blows the conditioned air flowing through the underfloor space into the room through the outlet. The wall portion flow passage 5 through which the conditioned air from the underfloor space portion circulates upward is formed in the wall portion of the double wall communicating with the underfloor space portion, and the wall portion flow passage is formed in the vicinity of the floor portion. The floor-side outlet 24 for the conditioned air flowing through the ceiling and the ceiling-side outlet 64 are provided in the vicinity of the ceiling, and the air-conditioning air passage hole 118 is provided in the wall passage 5 near the floor-side outlet 24. The fluid distribution member 112 having a wall and closing part of the wall flow passage is disposed in the lateral direction, and the conditioned air is applied to the fluid distribution member 112 to induce a part of the conditioned air to the floor outlet 24. On the other hand, the air passing through the passage hole 118 of the fluid distribution material Air is circulated upward, whereby the conditioned air is divided into two directions, ie, the direction of the floor-side outlet 24 and the direction of the ceiling-side outlet 64, and the conditioned air is supplied to the ceiling-side outlet and the floor-side outlet. It is the structure taken in indoors from both.
In the fluid distribution material 112, the wall flow passage 5 may be continuously disposed in the lateral direction, or the fluid distribution material 112 having a predetermined length is intermittently disposed in the lateral direction, so that the adjacent fluid distribution members are disposed. An appropriate gap may be provided between the materials 112, and a part of the conditioned air may be circulated upward from the gap.

本発明に係る空調用二重壁構造は、上記天井側吹出し口64として、上記天井部の壁際の部分に下方に向けて開口する吹出し口を設け、上記天井部の壁際に、上記壁部流通路5を流通して上記壁部の天井際に設けた隙間から吹き出される空調空気を下方向きに変える風向き変更板74を配置し、上記吹出し口から空調空気を下方に向けて吹き出す構成である。   In the double wall structure for air conditioning according to the present invention, the ceiling side outlet 64 is provided with a blower opening that opens downward at the wall portion of the ceiling portion, and the wall portion circulation is provided at the wall of the ceiling portion. A wind direction changing plate 74 that changes the conditioned air blown from the gap provided at the ceiling of the wall portion through the passage 5 is disposed, and the conditioned air is blown downward from the outlet. .

本発明に係る空調用二重壁構造は、上記天井側吹出し口64として、上記壁部の天井際の部分に横方に向けて開口する吹出し口を設け、上記壁部流通路5の天井際に、この壁部流通路5を流通する空調空気を横向きに変える風向き変更板75を配置し、上記吹出し口から空調空気を横方向に吹き出す構成である。   In the double wall structure for air conditioning according to the present invention, as the ceiling-side outlet 64, an outlet that opens laterally is provided at a portion near the ceiling of the wall, and the wall-side flow passage 5 has a ceiling. Further, a wind direction changing plate 75 that changes the conditioned air flowing through the wall portion flow passage 5 to the horizontal direction is disposed, and the conditioned air is blown out in the horizontal direction from the outlet.

本発明に係る空調用二重壁構造は、上記壁部流通路5を形成する壁基礎面に断熱材7を敷設した構成である。   The double wall structure for air conditioning according to the present invention has a configuration in which a heat insulating material 7 is laid on the wall base surface forming the wall flow passage 5.

本発明に係る空調用二重壁構造は、上記壁部流通路5に、長尺状のガイド板132をこの壁部流通路内を横に延ばした状態に配置し、上記壁部流通路を上昇する空調空気の流れを上記内装材10の裏面部に誘導してここに当て、温度が調整された上記内装材10による壁面からの輻射効果により室内の空調を行う構成である。この場合、例えばガイド板132の上部を上記壁部流通路5の室内側の壁面を形成する内装材10の裏面部側に傾けて配置すると効果的である。   In the double wall structure for air conditioning according to the present invention, a long guide plate 132 is disposed in the wall flow passage 5 in a state of extending horizontally in the wall flow passage. The flow of the rising air-conditioning air is guided to the back surface portion of the interior material 10 and applied thereto, and the room is air-conditioned by the radiation effect from the wall surface by the interior material 10 whose temperature is adjusted. In this case, for example, it is effective to arrange the upper portion of the guide plate 132 so as to be inclined toward the back surface side of the interior material 10 that forms the wall surface on the indoor side of the wall portion flow passage 5.

本発明に係る空調用二重壁構造によれば、床下空間部から壁部流通路に至る壁部に乱流発生板を配置し、空調空気を床側吹出し口の方向と天井側吹出し口の方向との二方向に分流し、空調空気を天井側吹出し口と床側吹出し口との両方から室内に取り入れる構成を採用したから、空調空気の流れが床側吹出し口と天井側吹出し口とに良好に分割され、両吹出し口から一様に空調空気が吹き出されるために、室内空間は均一かつソフトな空調環境(温度環境及び湿度環境)が得られ、また室内に家具等を置いて空調に支障がなく美観性も向上し、加えて壁部に形成した壁部流通路を空調空気が通過することにより、壁面からも輻射熱の作用が得られるという効果を奏する。   According to the double wall structure for air conditioning according to the present invention, the turbulent flow generating plate is arranged on the wall portion from the underfloor space portion to the wall portion flow passage, and the conditioned air is supplied to the direction of the floor side outlet and the ceiling side outlet. The air-conditioned air flows into the floor-side air outlet and the ceiling-side air outlet, because the air-conditioned air is taken into the room from both the ceiling-side air outlet and the floor-side air outlet. Because it is well divided and air-conditioning air is blown out uniformly from both outlets, the indoor space has a uniform and soft air-conditioning environment (temperature environment and humidity environment). As a result, the air-conditioned air passes through the wall flow passage formed in the wall portion, so that the effect of radiant heat can be obtained from the wall surface.

本発明に係る空調用二重壁構造によれば、乱流発生板として断面L字状の長尺材を用いて乱流を発生させる構成としたから、簡単な設備で乱流が発生できて空調空気の分割が良好に行えることから施工性及び経済性に優れるという効果がある。   According to the double wall structure for air conditioning according to the present invention, a turbulent flow is generated using a long material having an L-shaped cross section as a turbulent flow generating plate. Since the division of the air-conditioned air can be performed satisfactorily, there is an effect that it is excellent in workability and economy.

本発明に係る空調用二重壁構造によれば、床側吹出し口の近傍の壁部流通路に、この壁部流通路を閉塞する流体誘導材を横方向に断続的に配置し、流体誘導材に空調空気を当てて空調空気を床側吹出し口に誘導する一方、流体誘導材を配置していない個所については、壁部流通路を通過する空調空気をそのまま上方に流通させ、空調空気を二方向に分流し、空調空気を天井側吹出し口と床側吹出し口との両方から室内に取り入れる構成を採用したから、上記空調用二重壁構造と同様、室内空間は均一かつソフトな空調環境が得られ、また室内に家具等を置いて空調に支障がなく美観性も向上し、また流体誘導材の断続的な配置により正確かつ効果的に空調空気が床側と天井側に分散されるという効果がある。   According to the double wall structure for air conditioning according to the present invention, a fluid guide material for closing the wall flow passage is intermittently arranged in the wall flow passage in the vicinity of the floor-side outlet, and fluid guidance is performed. While air-conditioned air is applied to the material to guide the air-conditioned air to the floor outlet, the air-conditioned air that passes through the wall flow passage is circulated upward as it is, and the air-conditioned air is passed through the wall flow passage. Since the air flow is divided into two directions and air-conditioned air is taken into the room from both the ceiling and floor air outlets, the indoor space is uniform and soft, as with the double wall structure for air conditioning above. In addition, furniture can be placed in the room to prevent air conditioning and improve aesthetics, and the intermittent arrangement of fluid-inducing materials distributes air-conditioned air accurately and effectively to the floor and ceiling. There is an effect.

本発明に係る空調用二重壁構造によれば、床側吹出し口の近傍の壁部流通路に、空調空気の通過孔を有し壁部流通路の一部を閉塞する流体分配材を横方向に配置し、空調空気を二方向に分流して天井側吹出し口と床側吹出し口との両方から室内に取り入れる構成を採用したから、上記空調用二重壁構造と同様、室内空間は均一かつソフトな空調環境が得られ、また室内に家具等を置いて空調に支障がなく美観性も向上し、また流体分配材により正確かつ効果的に空調空気が床側と天井側に分散されるという効果がある。   According to the double wall structure for air conditioning according to the present invention, the fluid distribution material that has a passage hole for conditioned air and closes a part of the wall flow passage is disposed in the wall flow passage in the vicinity of the floor side outlet. The air-conditioning air is divided into two directions, and the air-conditioning air is split into two directions and taken into the room through both the ceiling-side outlet and the floor-side outlet. In addition, a soft air-conditioning environment can be obtained, furniture is placed in the room, air-conditioning is not hindered and aesthetics are improved, and air-conditioned air is accurately and effectively distributed to the floor and ceiling by the fluid distribution material. There is an effect.

本発明に係る空調用二重壁構造によれば、天井側吹出し口として、天井部の壁際の部分に下方に向けて開口する吹出し口を設け、天井部の壁際に風向き変更板を配置し吹出し口から空調空気を下方に向けて吹き出す構成を採用したから、特に暖房時には室内下方の空調効率が高められるという効果がある。   According to the double wall structure for air conditioning according to the present invention, the ceiling side outlet is provided with an outlet opening that opens downward at the wall portion of the ceiling portion, and the wind direction changing plate is disposed at the wall portion of the ceiling portion. Since the configuration in which the conditioned air is blown downward from the mouth is adopted, there is an effect that the air-conditioning efficiency in the lower part of the room can be improved particularly during heating.

本発明に係る空調用二重壁構造によれば、天井側吹出し口として、壁部流通路の天井際に、この壁部流通路を流通する空調空気を横向きに変える風向き変更板を配置し吹出し口から空調空気を横方向に吹き出す構成を採用したから、特に冷房時には室内全体にわたって均一に空調空気を流すことができ、良好な空調が行えるという効果がある。   According to the double wall structure for air conditioning according to the present invention, a wind direction changing plate that changes the conditioned air flowing through the wall flow passage to the side is arranged and blown out as a ceiling-side air outlet at the ceiling of the wall flow passage. Since the configuration in which the conditioned air is blown laterally from the mouth is adopted, the conditioned air can be made to flow uniformly throughout the room, particularly during cooling, and there is an effect that good air conditioning can be performed.

本発明に係る空調用二重壁構造によれば、壁部流通路を形成する壁基礎面に断熱材を敷設したから、壁部流通路の空調空気の保温性が良くなり、併せて室内空調の効率も高められるという効果がある、   According to the double wall structure for air conditioning according to the present invention, since the heat insulating material is laid on the wall base surface that forms the wall flow passage, the heat insulation of the conditioned air in the wall flow passage is improved, and the indoor air conditioning is also performed. Has the effect of improving the efficiency of

本発明に係る空調用二重壁構造によれば、壁部流通路に、長尺状のガイド板を配置し、空調空気を内装材の裏面部に誘導して、温度が調整された内装材による壁面からの輻射効果により室内の空調を行う構成を採用したから、壁面からの輻射熱の作用がさらに高められるという効果がある。   According to the double wall structure for air conditioning according to the present invention, an interior material in which a long guide plate is arranged in the wall flow passage and the temperature is adjusted by guiding the conditioned air to the back surface of the interior material. Since the configuration in which the indoor air-conditioning is performed by the radiation effect from the wall surface due to, the effect of radiant heat from the wall surface is further enhanced.

本発明の第一の実施の形態に係り、空調用二重壁構造の床近傍を示す図である。It is a figure which concerns on 1st embodiment of this invention and shows the floor vicinity of the double wall structure for an air conditioning. 実施の形態に係り、空調用二重壁構造の天井近傍を示す図である。It is a figure which concerns on embodiment and shows the ceiling vicinity of the double wall structure for an air conditioning. 他の形態に係る、空調用二重壁構造の天井近傍を示す図である。It is a figure which shows the ceiling vicinity of the double wall structure for an air conditioning which concerns on another form. 実施の形態に係り、部屋周辺の空調空気の流れを示す図である。It is a figure which concerns on embodiment and shows the flow of the conditioned air around a room. 従来例に係り、均一な温度環境を保つ住宅の全体を示す図である。It is a figure which shows the whole house which concerns on a prior art example and maintains a uniform temperature environment. 第二の実施の形態に係り、(a)は空調用二重壁構造、(b)は流体誘導材、(c)は壁裏空間部のA−A線断面を示す図である。It is related to 2nd embodiment, (a) is the double wall structure for an air conditioning, (b) is a fluid induction material, (c) is a figure which shows the AA line cross section of a wall back space part. 実施の形態に係り、スタッド材に固定具を取り付ける状態を示す図である。It is a figure which concerns on embodiment and shows the state which attaches a fixing tool to a stud material. 第三の実施の形態に係り、(a)は空調用二重壁構造の床近傍、(b)は流体分配材、(c)は壁裏空間部のB−B線断面を示す図である。It is related with 3rd embodiment, (a) is the floor vicinity of the double wall structure for an air conditioning, (b) is a fluid distribution material, (c) is a figure which shows the BB line cross section of a wall back space part. . 他の形態に係る天井近傍の構造を示す図である。It is a figure which shows the structure of the ceiling vicinity which concerns on another form. 天井側吹出し口の天井縁材に風向き変更板を取り付けた状態を示す図である。It is a figure which shows the state which attached the wind direction change board to the ceiling rim material of a ceiling side outlet. スタッド材の中間部にガイド板を取り付けた状態を示す図である。It is a figure which shows the state which attached the guide plate to the intermediate part of the stud material.

以下、本発明に係る実施の形態を図面に基づいて説明する。
この実施の形態の空調用二重壁構造は、住宅等の室内の空調を行うものであり、部屋の床部2、壁部3及び天井部4にわたり空調空気が流通する。
以下、第一の実施の形態に係る空調用二重壁構造について説明する。
図1は、壁部3の下部の床近傍の二重壁構造を示すものであり、この二重壁の内部には空調空気が流通する壁部流通路5が形成されている。
Embodiments according to the present invention will be described below with reference to the drawings.
The double wall structure for air conditioning according to this embodiment performs air conditioning in a room such as a house, and conditioned air circulates over the floor 2, wall 3 and ceiling 4 of the room.
Hereinafter, the double wall structure for air conditioning which concerns on 1st embodiment is demonstrated.
FIG. 1 shows a double wall structure in the vicinity of the floor below the wall 3, and a wall flow passage 5 through which conditioned air flows is formed inside the double wall.

上記二重壁構造は、空調空気が通過する壁基礎面6には断熱材7が敷設され、また壁基礎面6には上下向きかつ所定の間隔をおいて平行に縦胴縁8が設置されている。これら各縦胴縁8にわたってボード状の内装材10が敷設され、壁面12を形成している。上記縦胴縁8によって形成され、壁基礎面6と内装材10との間の壁裏空間部9が空調空気が通過する壁部流通路5となる。そして、後述するようにこの壁部流通路5の床部2側には床側吹出し口24が、また天井側には天井側吹出し口64がそれぞれ形成されている。   In the double wall structure, a heat insulating material 7 is laid on the wall base surface 6 through which air-conditioned air passes, and a vertical trunk edge 8 is installed on the wall base surface 6 in a vertical direction and in parallel at a predetermined interval. ing. A board-shaped interior material 10 is laid over the vertical trunk edges 8 to form a wall surface 12. The wall space 9 formed between the vertical trunk edges 8 and between the wall foundation surface 6 and the interior material 10 serves as a wall flow passage 5 through which conditioned air passes. As will be described later, a floor-side outlet 24 is formed on the floor 2 side of the wall flow passage 5, and a ceiling-side outlet 64 is formed on the ceiling.

部屋の床部2には、床スラブ14に配置された床支持脚16の上部の受け部15に床板17を敷設して床面18を形成している。この床部2には、床スラブ14と床板17との間に床下空間部20が形成され、空調空気が流通する床下流通路22として利用される。
上記床面18の端部19と壁基礎面6との間には隙間を設けて、床下空間部20から壁裏空間部9に向けて空調空気が自在に流通できるようにしている。そして、上記二重壁の壁部流通路5には、上記床下流通路22を流通する空調空気が送られる。
On the floor portion 2 of the room, a floor plate 17 is laid on a receiving portion 15 on an upper portion of a floor support leg 16 disposed on a floor slab 14 to form a floor surface 18. In this floor portion 2, an underfloor space portion 20 is formed between the floor slab 14 and the floor board 17 and is used as a floor downstream passage 22 through which conditioned air flows.
A gap is provided between the end portion 19 of the floor surface 18 and the wall foundation surface 6 so that conditioned air can freely flow from the underfloor space portion 20 toward the wall space portion 9. And the conditioned air which distribute | circulates the said floor downstream channel | path 22 is sent to the said wall part flow path 5 of a double wall.

また、壁部3の下部の幅木部分(床部の近傍)に、部屋の一端から他端まで略全体にわたり空調空気の床側吹出し口24が形成されている。この床側吹出し口24は、壁部3の内装材10の下端部11と床面18との間に設けられている。壁部3の内装材10の下端部11からやや後ろ寄りの位置に、床面18の端部19から上方に向けて幅木材26が立設配置されている。   In addition, a floor-side air outlet 24 of conditioned air is formed in the skirting board part (near the floor part) at the lower part of the wall part 3 from one end of the room to the other end. The floor side outlet 24 is provided between the lower end portion 11 of the interior material 10 of the wall portion 3 and the floor surface 18. A width timber 26 is erected and arranged upward from an end 19 of the floor 18 at a position slightly rearward from the lower end 11 of the interior material 10 of the wall 3.

上記幅木材26は、床面18から延設して上方に屈曲形成する表側板材28と、この表側板材28の裏面側にビス等で固定され、表側板材28の上端部の位置から下方に垂下する裏側板材30からなる。そして、幅木材26の上端部27には断面コの字状のアルミニウム製の保護材32がビス34等により取り付けられている。   The width timber 26 extends from the floor 18 and is bent upward and is fixed to the back side of the front plate 28 with screws or the like, and hangs downward from the position of the upper end of the front plate 28. The back side plate material 30 is made of. A protective member 32 made of aluminum having a U-shaped cross section is attached to the upper end portion 27 of the width lumber 26 with a screw 34 or the like.

また、内装材10の下端部11にはボード用の目地材36が取り付けられている。また内装材10の裏面部から下端部11にかけて、目地材36を被う状態で断面L字状のアルミニウム製のアングル材38が配置され、ビス34等により固定されている。このアングル材38は、内装材10の下端部近傍の裏面部を保護する。   Further, a joint material 36 for board is attached to the lower end portion 11 of the interior material 10. In addition, an aluminum angle member 38 having an L-shaped cross section is disposed in a state of covering the joint material 36 from the back surface portion to the lower end portion 11 of the interior material 10 and is fixed by screws 34 or the like. The angle member 38 protects the back surface near the lower end of the interior material 10.

上記幅木材26は、壁基礎面6と内装材10との間の間隔の略中央部の位置に配置されている。また、幅木材26の上端部27は内装材10の下端部11より僅かに高いか略同じ程度である。
そして、内装材10の下端部11とこの後方の幅木材26との間(ここでは25mm程度)には、室内に向けて下向きに開口する床側吹出し口24が形成されている。この床側吹出し口24は、下向きに開口しているため室内からは目立たなく美観がよい。
The width wood 26 is disposed at a substantially central position of the space between the wall base surface 6 and the interior material 10. Further, the upper end 27 of the width lumber 26 is slightly higher than or substantially the same as the lower end 11 of the interior material 10.
And between the lower end part 11 of the interior material 10 and the width | variety wood 26 of this back (here about 25 mm), the floor side outlet 24 opened downward toward the interior is formed. Since the floor-side outlet 24 is open downward, it is inconspicuous from the room and has a good appearance.

さらに壁基礎面6には、上記幅木材26の上端部27(床側吹出し口24の位置)より少し上方(ここでは15mm程度)の位置(壁部流通路5の下部近傍)に、乱流発生板40がその突板部44が位置する状態で配置されている。
この乱流発生板40は、基板部42と突板部44からなる断面L形状(不等辺アングル材)のアルミニウム製の長尺材である。上記乱流発生板40は、床側吹出し口24の近傍の少し上方の壁基礎面6に横向きに配置され、ビス等を用いて上記基板部42を壁基礎面6に固定している。
Furthermore, turbulent flow is caused on the wall base surface 6 at a position slightly above (here, about 15 mm) above the upper end 27 (position of the floor side outlet 24) of the width timber 26 (near the lower portion of the wall flow passage 5). The generating plate 40 is arranged in a state where the projecting plate portion 44 is located.
The turbulent flow generating plate 40 is a long aluminum material having an L-shaped cross section (an unequal side angle material) composed of a substrate portion 42 and a protruding plate portion 44. The turbulent flow generating plate 40 is disposed laterally on the wall base surface 6 slightly above the vicinity of the floor-side outlet 24, and the substrate portion 42 is fixed to the wall base surface 6 using screws or the like.

上記乱流発生板40は、壁基礎面6から突板部44が水平向きに突出形成された形態である。この乱流発生板40は、床下流通路22から送られる空調空気25を突板部44に当てて乱流を発生させる。この空調空気に乱流を起すことにより、空調空気を天井側吹出し口64が設けられた上方向きと、床側吹出し口24が設けられた表側に向けて向きを変える二方向に分流する。そして、上向きに分流された空調空気はそのまま壁部流通路5を上昇し、表側に向きを変えた分流空気は床側吹出し口24を通過して室内に流入する。   The turbulent flow generation plate 40 has a shape in which a protruding plate portion 44 is formed to protrude from the wall base surface 6 in the horizontal direction. The turbulent flow generation plate 40 generates turbulent flow by applying the conditioned air 25 sent from the floor downstream passage 22 to the protruding plate portion 44. By causing a turbulent flow in the conditioned air, the conditioned air is diverted in two directions that change the direction toward the upper side where the ceiling side outlet 64 is provided and the front side where the floor side outlet 24 is provided. Then, the conditioned air that has been split upwardly rises as it is in the wall flow passage 5, and the split air that has turned to the front side passes through the floor outlet 24 and flows into the room.

図2は、空調空気が流通する二重壁の上部の天井近傍を示すものである。
天井部4は、野縁受け46にクリップ47を掛着し、このクリップ47に取り付けた野縁48に天井板49を敷設して天井面50を形成している。また天井部4の隅には、天井板49の下部に横向きにランナー材52が配置され、ビス34等により壁基礎面6に固定されている。
FIG. 2 shows the vicinity of the ceiling of the upper part of the double wall through which conditioned air flows.
In the ceiling portion 4, a clip 47 is hooked on a field edge receiver 46, and a ceiling plate 49 is laid on a field edge 48 attached to the clip 47 to form a ceiling surface 50. In addition, a runner material 52 is disposed laterally below the ceiling plate 49 at the corner of the ceiling portion 4 and is fixed to the wall foundation surface 6 with screws 34 or the like.

このランナー材52は、左右の側板部51,53と上板部とからなる断面コの字形状の長尺材であり、各縦胴縁8の上端部はランナー材52の溝内に突入した状態でビス34等により固定されている。上記ランナー材52は、縦胴縁8の上端部を被う状態で配置されているため、二重壁の壁部流通路5の上端部を閉塞する。   The runner material 52 is a long material having a U-shaped cross section composed of left and right side plate portions 51, 53 and an upper plate portion, and the upper end portion of each vertical trunk edge 8 has entered a groove of the runner material 52. In the state, it is fixed with a screw 34 or the like. Since the runner material 52 is arranged in a state of covering the upper end portion of the vertical trunk edge 8, the upper end portion of the wall portion flow passage 5 of the double wall is closed.

また、ランナー材52の側板部53の下端部54と内装材10の上端部13との間には隙間55(ここでは35mm程度)が形成されている。そして内装材10の上端部13には目地材36が、また内装材10の内側及び上端部13の目地材36を被う状態でアングル材38が取り付けられている。   A gap 55 (about 35 mm here) is formed between the lower end portion 54 of the side plate portion 53 of the runner material 52 and the upper end portion 13 of the interior material 10. An angle material 38 is attached to the upper end portion 13 of the interior material 10 so as to cover the joint material 36 and the joint material 36 on the inner side and the upper end portion 13 of the interior material 10.

上記ランナー材52の室内側には、上記隙間55の前方を被う形態で天井縁材56が横向きに配置されている。この天井縁材56は、断面矩形状の基部58及びこの前側に形成され下方に向けて垂下される縦片部60からなる断面L字形状の形状である。この天井縁材56の縦片部60の前面から下面にかけて、化粧用のアルミニウム製の曲げ物62が取り付けられている。また、天井縁材56の内側の入隅部には、アルミニウム製の断面L字状のアングル材63が取付けられ、空調空気が当たるこの部位を保護している。   On the indoor side of the runner material 52, a ceiling edge member 56 is disposed in a lateral direction so as to cover the front of the gap 55. The ceiling rim material 56 has an L-shaped cross section including a base 58 having a rectangular cross section and a vertical piece 60 formed on the front side and hanging downward. A bent aluminum product 62 for makeup is attached from the front surface to the lower surface of the vertical piece 60 of the ceiling rim material 56. In addition, an angle member 63 made of aluminum having an L-shaped cross section is attached to the inner corner of the ceiling rim member 56 to protect this portion that is struck by conditioned air.

上記天井縁材56により、内装材10の上端部13とこの天井縁材56の縦片部60との間(ここでは35mm)には、下方に向けて開口する天井側吹出し口64が形成されている。この天井側吹出し口64は、部屋の一端から他端まで略全体にわたって形成されている。   The ceiling rim material 56 forms a ceiling-side outlet 64 that opens downward between the upper end portion 13 of the interior material 10 and the vertical piece 60 of the ceiling rim material 56 (35 mm in this case). ing. This ceiling side outlet 64 is formed over substantially the whole from one end of the room to the other end.

そして、内装材10の上端部13とランナー材52との間の隙間55から吹き出される空調空気は、天井縁材56により流れが下向きに変えられ、上記天井側吹出し口64から室内に吹き出される。この天井縁材56は、天井部4の隅部を装飾するとともに、空調空気を下向きに変えて室内の空調効率を高めている。   The flow of the conditioned air blown from the gap 55 between the upper end portion 13 of the interior material 10 and the runner material 52 is changed downward by the ceiling edge material 56, and is blown into the room from the ceiling side outlet 64. The The ceiling rim material 56 decorates the corners of the ceiling portion 4 and changes the conditioned air downward so as to increase the indoor air conditioning efficiency.

図3は、他の形態に係る二重壁の上部の天井近傍を示したものである。ここでは、内装材10の上部に設けた空調空気を取り出す隙間66の下部67と天井面50とを略同程度として、隙間66を見え難くした形態としている。このため、この形態では上記天井縁材56を使用していない。   FIG. 3 shows the vicinity of the ceiling of the upper part of the double wall according to another embodiment. Here, the lower part 67 of the gap 66 for taking out the conditioned air provided in the upper part of the interior material 10 and the ceiling surface 50 are made substantially the same, and the gap 66 is made difficult to see. For this reason, in this embodiment, the ceiling rim material 56 is not used.

天井部4は、野縁受け46にクリップ47を掛着し、これに取り付けた野縁48に天井板49を敷設して天井面50を形成している。そして、この天井面50の高さから僅かに高い位置から上部にかけて、内装材10の上端部13が形成され、この上部に空調空気が流出する上記隙間66が横向きに形成されている。この隙間66の上部には横材70が配置され、また縦胴縁8の上部にはランナー材等が配置され壁部流通路5の上部が閉塞されている。   In the ceiling portion 4, a clip 47 is hooked on a field edge receiver 46, and a ceiling plate 49 is laid on a field edge 48 attached thereto to form a ceiling surface 50. An upper end portion 13 of the interior material 10 is formed from a position slightly higher than the height of the ceiling surface 50 to the upper portion, and the gap 66 from which the conditioned air flows out is formed in the lateral direction at the upper portion. A cross member 70 is disposed above the gap 66, and a runner material or the like is disposed above the vertical trunk edge 8 to close the top of the wall portion flow passage 5.

また天井面50の端部72は、内装材10の表面から所定の隙間(ここでは35mm程度)を開けた位置に設けられ、この隙間により下方に向けて開口する天井側吹出し口64が形成されている。   The end portion 72 of the ceiling surface 50 is provided at a position where a predetermined gap (about 35 mm in this case) is opened from the surface of the interior material 10, and a ceiling-side outlet 64 that opens downward is formed by this gap. ing.

さらに、上記内装材10の上部の隙間66の前方には、空調空気流を下方向きに変える風向き変更板74が固定具76によって取り付けられている。この風向き変更板74は、断面円弧状のアルミニウム製の長尺材である。   Further, a wind direction changing plate 74 for changing the air-conditioned air flow downward is attached by a fixture 76 in front of the gap 66 at the upper part of the interior material 10. The wind direction changing plate 74 is a long material made of aluminum having an arc cross section.

上記固定具76は、左側面部78、上面部79及び右側面部80からなる断面コの字状の金具である。この固定具76の左側面部78の上部近傍には、内側に突出した係止凸部82が横向き筋状に形成されている。また、左側面部78の両側にはそれぞれ外側に向けて固定片部84,84が屈曲形成され、これら両固定片部84,84にはそれぞれ中央部にネジ孔86が形成されている。固定具76の右側面部80の下端部には、内側に鋭角状に屈曲された係止部88が形成されている。   The fixture 76 is a U-shaped bracket having a left side surface portion 78, an upper surface portion 79, and a right side surface portion 80. In the vicinity of the upper portion of the left side surface portion 78 of the fixture 76, a locking convex portion 82 projecting inward is formed in a laterally streak shape. Further, fixing piece portions 84 and 84 are bent outwardly on both sides of the left side surface portion 78, and screw holes 86 are formed in the center portions of both the fixing piece portions 84 and 84, respectively. A locking portion 88 that is bent inward at an acute angle is formed at the lower end portion of the right side surface portion 80 of the fixture 76.

上記固定具76は上記隙間66の前部に配置され、左側面部78の両固定片部84,84をそれぞれ二重壁の下地材である縦胴縁8の側部に挟みネジ孔86からビス等を用いて固定されている。各固定金具76は、横方向に所定間隔をおいて配置される。
上記各固定金具76の係止部88と係止凸部82との間に、風向き変更板74の両側端部をそれぞれ係止して固定する。この風向き変更板74により、隙間66から吹き出される空調空気の流れが下方向きに変更され、天井側吹出し口64から室内に吹き出される。
The fixing device 76 is disposed at the front portion of the gap 66. The fixing piece portions 84, 84 of the left side surface portion 78 are respectively sandwiched between the side portions of the vertical trunk edge 8 which is a base material of the double wall, and screwed from the screw hole 86. It is fixed using etc. Each fixing bracket 76 is arranged at a predetermined interval in the lateral direction.
The both ends of the wind direction changing plate 74 are locked and fixed between the locking portions 88 and the locking projections 82 of the fixing brackets 76. By this wind direction changing plate 74, the flow of the conditioned air blown from the gap 66 is changed downward and blown into the room from the ceiling side blowing port 64.

図4は、部屋周辺の床部2の床下空間部20、壁部3の壁裏空間部9、天井部4の天井裏空間部92における空調空気の流れを示したものである。天井裏空間部92には空調機器94が配置され、暖房、冷房或いは除湿用などの空調空気を送出する。   FIG. 4 shows the flow of conditioned air in the underfloor space 20 of the floor 2 around the room, the wall space 9 of the wall 3, and the ceiling space 92 of the ceiling 4. An air conditioner 94 is disposed in the ceiling space 92 and sends out conditioned air for heating, cooling, or dehumidification.

上記空調機器94から吹き出された空調空気は、天井裏空間部92から壁外93に配設されたダクト96内を流通して床下空間部20まで送られる。この床下空間部20には、床下ダクト98が床下に縦横或いは環状に配置され、この床下ダクト98の上部の所々には空調空気の噴出ノズル97が配置されている。   The conditioned air blown out from the air conditioner 94 circulates in the duct 96 disposed outside the wall 93 from the ceiling back space 92 and is sent to the underfloor space 20. In the underfloor space portion 20, an underfloor duct 98 is arranged vertically or horizontally or in an annular shape under the floor, and air-conditioning air ejection nozzles 97 are arranged in places above the underfloor duct 98.

この噴出ノズル97は、空調空気を床板17の裏面に向けて吹き出し床面を介して室内の空調を行う。さらに床下空間部20に吹き出された空調空気は、上述した壁部3に形成された二重壁構造に係る壁部流通路5を流通して床面18近傍の床側吹出し口24から室内に吹き出され、さらに壁部流通路5を上昇して天井面50の近傍の天井側吹出し口64から室内に向けて吹き出される。室内の空気は、天井面50に設けた吸気口99から吸引され、上記空調機器94に送られ再度空調に供する。   This jet nozzle 97 air-conditions the room through the blowing floor surface with the conditioned air directed toward the back surface of the floor plate 17. Furthermore, the conditioned air blown out to the underfloor space portion 20 flows through the wall flow passage 5 according to the double wall structure formed in the wall portion 3 described above, and enters the room from the floor side outlet 24 near the floor surface 18 into the room. The air is blown out, and is further lifted up the wall flow passage 5 and blown out from the ceiling side outlet 64 near the ceiling surface 50 toward the room. The indoor air is sucked from the air intake port 99 provided on the ceiling surface 50, sent to the air conditioning device 94, and again subjected to air conditioning.

従って上記第一の実施の形態によれば、空調空気を床下空間部から室内へと導くために、壁部に空気流通路を形成して床側吹出し口と天井側吹出し口を設けたことにより、室内空間は均一な温度環境と湿度環境を保つことができ、また壁部流通路に空調空気を通すことにより、壁面からも輻射熱の作用による空調効果が得られた。
また、壁部流通路に乱流発生板を設けたことにより、空調空気の流れが床側吹出し口と天井側吹出し口とに分割され、両吹出し口から所望する量の空調空気が吹き出されるために、均一な室内温度及び湿度環境が整えられる。
Therefore, according to the first embodiment, in order to guide the conditioned air from the underfloor space to the room, an air flow passage is formed in the wall and the floor side outlet and the ceiling side outlet are provided. The indoor space can maintain a uniform temperature environment and humidity environment, and the air-conditioning effect by the action of radiant heat is obtained from the wall surface by passing air-conditioned air through the wall passage.
Further, by providing the turbulent flow generation plate in the wall flow passage, the flow of the conditioned air is divided into the floor side outlet and the ceiling side outlet, and a desired amount of conditioned air is blown out from both outlets. Therefore, a uniform room temperature and humidity environment is prepared.

さらに、従来の床部或いは天井部にガラリ(空気吹出し口)を部分的に設ける方法に比べて、上記床側吹出し口と天井側吹出し口は部屋の壁一面の全体にわたって設けられていることから、吹き出される空調空気が緩やかであり(風速0.3m/sec以下に風速調整が可能)、空気の流れ(ドラフト感)を感じないソフトで快適な空調環境が得られた。
また、床上の吹出し口をなくし、上記床側吹出し口及び天井側吹出し口から吹き出すようにしたから、室内に家具などのものを置いてもこれら吹出し口からの吹き出しは可能であり、室内空間の空調を整えることができまた室内の美観性も向上した。
Furthermore, compared with the conventional method of partially providing a louver (air outlet) on the floor or ceiling, the floor side outlet and the ceiling side outlet are provided over the entire wall of the room. The air-conditioned air blown out was moderate (wind speed adjustment was possible at a wind speed of 0.3 m / sec or less), and a soft and comfortable air-conditioning environment that did not feel air flow (draft feeling) was obtained.
In addition, since the air outlet on the floor is eliminated and the air is blown out from the floor air outlet and the ceiling air outlet, air can be blown out from these air outlets even if furniture is placed in the room. Air conditioning can be adjusted, and the aesthetics of the room have also improved.

図6(a)は、第二の実施の形態に係る空調用二重壁構造を示したものである。この空調用二重壁構造では、上記第一の実施の形態の空調用二重壁構造に係る乱流発生板40に替えて、流体誘導材102を用いた構成である。また、ここでは上記縦胴縁8に変えて断面ロの字状(角筒状)の鋼製のスタッド材108を2本抱き合せたものを用いている。   Fig.6 (a) shows the double wall structure for an air conditioning which concerns on 2nd embodiment. In this double wall structure for air conditioning, a fluid guiding material 102 is used instead of the turbulent flow generation plate 40 according to the double wall structure for air conditioning of the first embodiment. Further, here, instead of the longitudinal body edge 8, two steel studs 108 having a square cross section (square tube shape) are used.

さらに、壁基礎面6側には断熱組織105が形成されている。この断熱組織105は、向かい合わせに配置された2枚のボード材109(パーティクルボードなど)同士の間に断熱材7が配置された形態である。この断熱材7としては、グラスウール、ロックウールなどの無機繊維系断熱材、押出法ポリスチレンフォーム、フェノールフォームなど発泡プラスチック系断熱材、天然木質繊維のセルロースファイバー、羊毛断熱材、炭化発泡コルクなどの天然素材系の断熱材7が用いられる。   Further, a heat insulating structure 105 is formed on the wall base surface 6 side. This heat insulating structure 105 is a form in which the heat insulating material 7 is arranged between two board materials 109 (particle board or the like) arranged face to face. As this heat insulating material 7, natural fiber heat insulating materials such as glass wool and rock wool, foamed plastic heat insulating materials such as extruded polystyrene foam and phenolic foam, natural wood fiber cellulose fibers, wool heat insulating materials, carbonized foam cork and other natural materials A material-based heat insulating material 7 is used.

上記断熱組織105と内装材10との間には所定間隔をおいてスタッド材108が立設されており、また断熱組織105と内装材10間の壁裏空間部9には空調空気25が流通する壁部流通路5が形成されている。
この実施の形態において、上記第一の実施の形態と同様な構成部材については、同一の符号を用いてここでの詳細な説明は省略する。
A stud material 108 is erected between the heat insulating structure 105 and the interior material 10 at a predetermined interval, and air-conditioned air 25 circulates in the space 9 behind the wall between the heat insulation structure 105 and the interior material 10. A wall flow passage 5 is formed.
In this embodiment, the same components as those in the first embodiment are denoted by the same reference numerals, and detailed description thereof is omitted here.

上記流体誘導材102は、図6(b)に示すように、金属或いは合成樹脂からなり、断面が略半円状の円弧部106を有する長尺材である。また、上記円弧部106の一方の端部には平板状の取付板部104が延設され、この取付板部104の左右の2箇所に取り付け用の孔部103が形成されている。   As shown in FIG. 6B, the fluid guide material 102 is a long material having a circular arc portion 106 made of metal or synthetic resin and having a substantially semicircular cross section. Further, a flat mounting plate portion 104 is extended at one end of the arc portion 106, and mounting hole portions 103 are formed at two positions on the left and right sides of the mounting plate portion 104.

上記流体誘導材102は、上記壁裏空間部9の幅全体にわたり、かつ横向きに所定の範囲に配置される。図6(c)の壁裏空間部9の断面図に示すように、流体誘導材102は、隣接する流体誘導材102とは所定(一定)の間隔をおいて断続的に配置する。
ここでは、並設されるスタッド材108間を利用し、隣接するスタッド材108同士の間に流体誘導材102を配置し、そしてこの隣のスタッド材108同士の間には流体誘導材102を配置せず、としてスタッド材108間に断続的に流体誘導材102を配置する形態としている。
The fluid guiding material 102 is disposed in a predetermined range in the lateral direction over the entire width of the wall space 9. As shown in the cross-sectional view of the wall space 9 in FIG. 6C, the fluid guide material 102 is intermittently arranged at a predetermined (constant) interval from the adjacent fluid guide material 102.
Here, between the stud materials 108 arranged side by side, the fluid guiding material 102 is disposed between the adjacent stud materials 108, and the fluid guiding material 102 is disposed between the adjacent stud materials 108. Instead, the fluid guiding material 102 is intermittently disposed between the stud materials 108.

上記流体誘導材102は、横一列に断続的に配置してもよく、また千鳥状に上下に交互に分けて配置してもよい。
また流体誘導材102は、円弧部106の中央が頂部となるように配置し、その取付板部104の孔部103をビス等の止着具110を用いて断熱組織105(又は壁基礎面6)に固定する。
The fluid guide material 102 may be arranged intermittently in a horizontal row, or may be arranged alternately in a vertical direction in a zigzag manner.
Further, the fluid guide material 102 is arranged so that the center of the arc portion 106 is the top portion, and the hole portion 103 of the mounting plate portion 104 is formed in the heat insulating structure 105 (or the wall foundation surface 6 using a fastening tool 110 such as a screw. ).

上記流体誘導材102によれば、下から上昇する空調空気25はこの流体誘導材102により床側吹出し口24に誘導される。この場合、断熱組織105の近傍を上昇する空調空気25が流体誘導体102の片半部分(断熱組織105側)に当たり、その流れが外向きからさらに下向きに変えられ、これが内装材10の下端部11と表側板材28の上端部との間の隙間から床側吹出し口24に誘導され、この床側吹出し口24から室内に吹き出される。このとき、流体誘導材102の円弧部106のガイドにより円滑に空調空気の誘導が行われる。   According to the fluid guiding material 102, the conditioned air 25 rising from below is guided to the floor-side outlet 24 by the fluid guiding material 102. In this case, the conditioned air 25 that rises in the vicinity of the heat insulating structure 105 hits one half of the fluid derivative 102 (the heat insulating structure 105 side), and the flow is changed from outward to further downward, which is the lower end 11 of the interior material 10. And the upper end portion of the front side plate member 28 are guided to the floor side outlet 24 and are blown into the room from the floor side outlet 24. At this time, the conditioned air is smoothly guided by the guide of the arc portion 106 of the fluid guide material 102.

これにより壁部流通路5において、流体誘導材102を配置した個所に到達した空調空気25は、流体誘導材102により床側吹出し口24から室内に誘導され、また流体誘導材102を配置していない個所の空調空気は、そのまま壁部流通路5を上方に移動する。
このように壁部流通路5を通過する空調空気25は、床側吹出し口24の上方向と上記天井側吹出し口64の方向との二方向に分流され、空調空気を天井側吹出し口64と床側吹出し口24との両方から室内に取り入れられる。
As a result, the conditioned air 25 that has reached the location where the fluid guiding material 102 is disposed in the wall flow passage 5 is guided indoors from the floor-side outlet 24 by the fluid guiding material 102, and the fluid guiding material 102 is disposed. None of the conditioned air moves upward through the wall flow passage 5 as it is.
Thus, the conditioned air 25 passing through the wall flow passage 5 is divided into two directions, the upper direction of the floor side outlet 24 and the direction of the ceiling side outlet 64, and the conditioned air is separated from the ceiling side outlet 64. It is taken into the room from both the floor side outlet 24.

空調空気が流通する二重壁の上部の天井近傍(天井側吹出し口)の構造は、上記第一の実施の形態に係る図3に示す構造と略同様である。ここでは、天井側吹出し口64に上記固定具76及び長尺状の風向き変更板74を取り付けている。この風向き変更板74は、金属又は合成樹脂からなる可撓性のある長尺状の板材である。   The structure in the vicinity of the ceiling (ceiling side outlet) of the upper part of the double wall through which the conditioned air circulates is substantially the same as the structure shown in FIG. 3 according to the first embodiment. Here, the fixture 76 and the long wind direction changing plate 74 are attached to the ceiling side outlet 64. The wind direction changing plate 74 is a flexible long plate made of metal or synthetic resin.

上記固定具76は図7に示すように、スタッド材108の側部に両固定片部84,84のネジ孔86にビス107を用いて固定される。
また、このスタッド材108は、抱き合わせた一方の内装材10側のものは上方から内装材10の下端部11近傍まで配置され、他方の断熱組織105側のものはさらに床スラブ14まで延設した状態で配置されている。これにより、内装材10の下端部11近傍から上方の壁裏空間部9の幅はスタッド材9の2本分の幅の寸法を確保し、内装材10の下端部11近傍から下方の壁裏空間部9の幅はスタッド材9の1本の幅の寸法を確保している。
As shown in FIG. 7, the fixing member 76 is fixed to the side portion of the stud member 108 by using screws 107 in the screw holes 86 of both the fixing piece portions 84 and 84.
Further, the stud material 108 is arranged from the upper side to the vicinity of the lower end portion 11 of the interior material 10 on the one side of the interior material 10 that is tangled, and the one on the other side of the heat insulating structure 105 is further extended to the floor slab 14. Arranged in a state. As a result, the width of the back wall space portion 9 from the vicinity of the lower end portion 11 of the interior material 10 to the width of the two stud materials 9 is ensured. The width of the space portion 9 secures the dimension of one width of the stud material 9.

そして、風向き変更板74を凸状に曲げた状態でその上下端部を、それぞれ固定具76の係止凸部82の上部と係止部88との間に係止させその復元力を利用して固定する。この風向き変更板74は、壁面12の略全範囲にわたって配置する。
上記風向き変更板74により空調空気の流れが下向きに変えられ、上記天井側吹出し口64から室内に吹き出される。空調空気を下向きに変えることにより、特に暖房時には室内の空調効率が高められる。
Then, with the wind direction changing plate 74 bent into a convex shape, the upper and lower ends thereof are respectively locked between the upper portions of the locking projections 82 of the fixture 76 and the locking portions 88 and the restoring force is used. And fix. The wind direction changing plate 74 is disposed over substantially the entire range of the wall surface 12.
The flow of conditioned air is changed downward by the wind direction changing plate 74 and is blown into the room from the ceiling side outlet 64. By changing the air-conditioning air downward, the air-conditioning efficiency in the room can be enhanced, especially during heating.

この空調用二重壁構造では、流体誘導材102が配置された壁部流通路5(スタッド材108同士の間)を通過する空調空気は全て床側吹出し口24から室内に誘導され、また流体誘導材102が配置されてない壁部流通路5(スタッド材108同士の間)を通過する空調空気は全て上方の天井側吹出し口64から室内に吹き出される。   In this double wall structure for air conditioning, all the conditioned air passing through the wall portion flow passage 5 (between the stud materials 108) where the fluid guiding material 102 is disposed is guided into the room from the floor side outlet 24, and the fluid All of the conditioned air passing through the wall flow passage 5 (between the stud materials 108) where the guide material 102 is not disposed is blown out into the room from the upper ceiling side outlet 64.

したがって、この空調用二重壁構造によれば、上記第一の実施の形態に係る空調用二重壁構造と同様な効果が得られ、また流体誘導材102の断続的な配置により正確かつ効果的に空調空気が床側と天井側に分散され、また流体誘導材102の配置個所の増減で簡単に床側と天井側への空調空気の分散の割合を変えることができ利便性にも優れる。   Therefore, according to this double wall structure for air conditioning, the same effect as the double wall structure for air conditioning according to the first embodiment can be obtained, and more accurate and effective by intermittent disposition of the fluid guide material 102. In addition, the conditioned air is dispersed on the floor side and the ceiling side, and the dispersion ratio of the conditioned air to the floor side and the ceiling side can be easily changed by increasing / decreasing the location of the fluid guide material 102, which is excellent in convenience. .

図8(a)は、第三の実施の形態に係る空調用二重壁構造を示したものである。この空調用二重壁構造は、上記第二の実施の形態に係る流体誘導材102に替えて流体分配材112を用いた形態である。この実施の形態において、上記第一及び第二の実施の形態と同様な構成部材については、同一の符号を用いてここでの詳細な説明は省略する。
また、この実施の形態に係る二重壁の上部の天井近傍の構造は、第二の実施の形態などと同様でありここでの詳細な説明は省略する。
Fig.8 (a) shows the double wall structure for an air conditioning which concerns on 3rd embodiment. This air-conditioning double wall structure uses a fluid distribution material 112 instead of the fluid guide material 102 according to the second embodiment. In this embodiment, the same components as those in the first and second embodiments are denoted by the same reference numerals, and detailed description thereof is omitted here.
Further, the structure in the vicinity of the ceiling of the upper part of the double wall according to this embodiment is the same as that of the second embodiment, and a detailed description thereof will be omitted here.

上記流体分配材112は、図8(b)に示すように、金属或いは合成樹脂からなり、断面が略半円状の円弧部116を有する長尺材である。また、上記円弧部116の一方の端部には平板状の取付板部104が延設され、この取付板部104の左右の2箇所に取り付け用の孔部103が形成されている。   As shown in FIG. 8B, the fluid distribution material 112 is a long material having a circular arc portion 116 made of metal or synthetic resin and having a substantially semicircular cross section. Further, a flat mounting plate portion 104 is extended at one end portion of the arc portion 116, and mounting hole portions 103 are formed at two positions on the left and right sides of the mounting plate portion 104.

そして、上記流体分配材112の円弧部116の上部には長尺方向に所定(一体)間隔をおいて長方形状の通過孔118が設けられている。この通過孔118は、円弧部116の板面をコの字状に切り欠き、これを上方に折り曲げて設けたものであり、その一端部には折曲片119が上方に向けて形成されている。   A rectangular passage hole 118 is provided above the arc portion 116 of the fluid distribution member 112 at a predetermined (integral) interval in the longitudinal direction. The passage hole 118 is formed by notching the plate surface of the arc portion 116 in a U-shape and bending it upward, and a bent piece 119 is formed upward at one end thereof. Yes.

上記流体分配材112は、上記壁裏空間部9の幅全体にわたり、かつ横向きに配置される。図8(c)の壁裏空間部9の断面図に示すように、流体分配材112は、壁裏空間部9にスタッド材108の個所を除いて連続的に配置する。このため、流体分配材112の通過孔118を通過する空調空気のみが壁部流通路5を上方に移動する。
流体分配材112は、円弧部116を上側にして配置し、その取付板部104の孔部103を止着具34を用いて断熱組織105(又は壁基礎面6)に固定する。
The fluid distribution material 112 is disposed laterally across the entire width of the wall space 9. As shown in the sectional view of the wall space 9 in FIG. 8C, the fluid distribution material 112 is continuously arranged in the wall space 9 except for the portion of the stud material 108. For this reason, only the conditioned air passing through the passage hole 118 of the fluid distribution member 112 moves upward in the wall portion flow passage 5.
The fluid distribution member 112 is arranged with the arc portion 116 facing upward, and the hole portion 103 of the mounting plate portion 104 is fixed to the heat insulating structure 105 (or the wall base surface 6) using the fastening tool 34.

上記流体分配材112によれば、下方からの空調空気25の一部は、流体分配材112によってその流れを外向き及び下向きに変えて床側吹出し口24に誘導し、この床側吹出し口24から室内に吹き出す。また、空調空気25の残りは上記通過孔118を通過して上方に移動し、天井側吹出し口64から室内に吹き出される。
このように壁部流通路5を通過する空調空気25は、床側吹出し口24の上方向と上記天井側吹出し口64の方向との二方向に分流され、空調空気を天井側吹出し口64と床側吹出し口24との両方から室内に取り入れられる。
According to the fluid distributor 112, a part of the conditioned air 25 from below is guided to the floor outlet 24 by changing the flow outward and downward by the fluid distributor 112. Blow out into the room. The remainder of the conditioned air 25 passes through the passage hole 118 and moves upward, and is blown into the room from the ceiling-side outlet 64.
Thus, the conditioned air 25 passing through the wall flow passage 5 is divided into two directions, the upper direction of the floor side outlet 24 and the direction of the ceiling side outlet 64, and the conditioned air is separated from the ceiling side outlet 64. It is taken into the room from both the floor side outlet 24.

したがって、この空調用二重壁構造によれば、上記第一の実施の形態に係る空調用二重壁構造と同様な効果が得られ、また流体分配材112により正確かつ効果的に空調空気が床側と天井側に分散され、また流体分配材112の通過孔118の大きさ(或いは単位間隔あたりの数)の増減により簡単に床側と天井側への空調空気の分散の割合を変えることができ利便性にも優れる。   Therefore, according to the double wall structure for air conditioning, the same effect as the double wall structure for air conditioning according to the first embodiment can be obtained, and the conditioned air can be accurately and effectively supplied by the fluid distribution member 112. The ratio of the distribution of the conditioned air to the floor side and the ceiling side can be easily changed by increasing or decreasing the size (or the number per unit interval) of the passage holes 118 of the fluid distribution material 112. It is easy to use.

図9は、他の形態に係る天井近傍(天井側吹出し口)の構造を示したものであり、この構造は上記何れの実施の形態に係る空調用二重壁構造にも適用可能である。
これは、天井側吹出し口64として、壁部に該当する内装材10の天井際の部分に横に向けて開口する隙間を設けて吹出し口123とし、また天井面50の近傍に位置するスタッド材108の上端部に係止固定具120を取り付け、これに上記風向き変更板75を係止させた形態である。
FIG. 9 shows the structure in the vicinity of the ceiling (ceiling side outlet) according to another embodiment, and this structure can be applied to the double wall structure for air conditioning according to any of the above embodiments.
This is a ceiling-side outlet 64, which is provided with a gap that opens laterally at the ceiling portion of the interior material 10 corresponding to the wall portion to form an outlet 123, and a stud material located in the vicinity of the ceiling surface 50. A locking fixture 120 is attached to the upper end of 108, and the wind direction changing plate 75 is locked thereto.

上記係止固定具120は、上面部122、側面部124、及び下面部126を有する断面略コの字状の金具であり、上面部122の先端部には、内側に鋭角状に屈曲された係止部128が形成され、また下面部126には係止凸部129が横向き筋状に形成され、下面部126の左右部は一部がそれぞれ下方に屈曲形成された固定片127が形成されている。この固定具76は、両固定片127に形成されたネジ孔にビス107を用いて固定される。   The locking fixture 120 is a bracket having a substantially U-shaped cross section having an upper surface portion 122, a side surface portion 124, and a lower surface portion 126, and the distal end portion of the upper surface portion 122 is bent at an acute angle inside. A locking portion 128 is formed, and a locking convex portion 129 is formed in a laterally streak shape on the lower surface portion 126, and a fixing piece 127 is formed in which the left and right portions of the lower surface portion 126 are each bent downward. ing. The fixing device 76 is fixed to the screw holes formed in the two fixing pieces 127 using screws 107.

上記風向き変更板75の取り付けに際しては、上記固定具76の係止部128と係止凸部129の側面部124寄りの部位との間に、風向き変更板75を凸状に曲げた状態で、その上下端部をそれぞれ係止しその復元力を利用して固定する。この風向き変更板75は、壁裏空間部9の横方向の略全範囲にわたって配置する。   When the wind direction changing plate 75 is attached, the wind direction changing plate 75 is bent in a convex shape between the locking portion 128 of the fixture 76 and the portion of the locking projection 129 near the side surface portion 124. The upper and lower end portions are respectively locked and fixed using the restoring force. The wind direction changing plate 75 is disposed over substantially the entire lateral range of the wall space 9.

この天井側吹出し口の構造によれば、壁裏空間部9を上昇する空調空気25は、風向き変更板75により流れが横向きに変えられ、内装材10の上部に形成された吹出し口123から室内に吹き出される。このため、吹出し口123から空調空気を天井面50に沿う方向に吹き出すことから、特に冷房時には室内全体にわたって均一に空調空気(冷気)を流すことができ、良好な空調が行える。   According to the structure of this ceiling side outlet, the flow of the conditioned air 25 rising up the wall space 9 is changed to the horizontal direction by the wind direction changing plate 75, and from the outlet 123 formed in the upper part of the interior material 10 to the room Is blown out. For this reason, since the conditioned air is blown out from the outlet 123 in the direction along the ceiling surface 50, the conditioned air (cold air) can be made to flow uniformly throughout the room, particularly during cooling, and favorable air conditioning can be performed.

図10に示す二重壁の天井近傍(天井側吹出し口)の構造は、図2に示す構造と略同様であるが、ここでは天井縁材56によって形成される天井側吹出し口64に、上記固定具76及び上記風向き変更板74を取り付けた形態である。   The structure in the vicinity of the ceiling of the double wall shown in FIG. 10 (ceiling side outlet) is substantially the same as the structure shown in FIG. 2, but here, the ceiling side outlet 64 formed by the ceiling edge member 56 has the above-mentioned structure. This is a form in which the fixture 76 and the wind direction changing plate 74 are attached.

上記固定具76は縦胴縁8の側部に固定し、この固定具76の係止部88と係止凸部82の上部との間に、風向き変更板74を凸状に曲げた状態でその上下端部をそれぞれ係止して固定する。この風向き変更板74は、内装材10の横方向の略全範囲にわたって配置する。   The fixing device 76 is fixed to the side portion of the vertical trunk edge 8, and the wind direction changing plate 74 is bent in a convex shape between the locking portion 88 of the fixing device 76 and the upper portion of the locking projection 82. The upper and lower ends are locked and fixed. The wind direction changing plate 74 is disposed over substantially the entire range of the interior material 10 in the lateral direction.

上記風向き変更板74により空調空気の流れが効果的に下向きに変えられ、天井側吹出し口64から室内に吹き出される。空調空気を下向きに変えることにより、特に暖房時には室内下方の空調効率が高められる。   The flow of air-conditioned air is effectively changed downward by the wind direction changing plate 74 and is blown into the room from the ceiling side outlet 64. By changing the air-conditioning air downward, the air-conditioning efficiency below the room can be improved, particularly during heating.

図11は、上記スタッド材108(或いは上記縦胴縁8)の中間部に取り付けたガイド板132を示したものである。このガイド板132は、上記縦胴縁8或いは上記スタッド材108の側部に設けた取付孔部130に挿通させて配置する。このためガイド板132は、ボード材109と内装材10との間の上記壁裏空間部9内を横に延ばした形態となる。   FIG. 11 shows a guide plate 132 attached to an intermediate portion of the stud material 108 (or the vertical trunk edge 8). The guide plate 132 is disposed by being inserted through the mounting hole 130 provided on the side of the vertical trunk edge 8 or the stud material 108. For this reason, the guide plate 132 has a form in which the inside of the wall space 9 between the board material 109 and the interior material 10 extends laterally.

上記ガイド板132は、鋼製或いは合成樹脂材からなる断面円弧状の長尺材である。また、上記取付孔部130には鋭角状の係止部124が形成され、また取付孔部130の下部は内装材10側に向けて上昇する円弧状の傾斜部134が形成されている。   The guide plate 132 is a long material having an arc cross section made of steel or a synthetic resin material. The mounting hole 130 is formed with an acute-angled locking portion 124, and the lower portion of the mounting hole 130 is formed with an arcuate inclined portion 134 that rises toward the interior material 10 side.

上記ガイド板132は、取付孔部130の傾斜部134に配置するとともに、その下端部を係止部138に係止させ、一方の上端部を固定ピン136で押さえて固定する。
上記ガイド板132によれば、壁部流通路5を通過する空調空気25の一部を内装材10方向に分岐させ、室内の壁面12を形成する内装材10に空調空気を積極的に当てることにより、壁面12を暖めて壁面からの輻射熱による空調効果が得られる。
また、上記ガイド板132は、縦胴縁8或いはスタッド材108の振れ止め材としても機能する。
The guide plate 132 is disposed on the inclined portion 134 of the mounting hole 130, the lower end thereof is locked to the locking portion 138, and one upper end is pressed and fixed by the fixing pin 136.
According to the guide plate 132, part of the conditioned air 25 passing through the wall flow passage 5 is branched in the direction of the interior material 10, and the conditioned air is positively applied to the interior material 10 forming the indoor wall surface 12. Thereby, the wall surface 12 is warmed and the air-conditioning effect by the radiant heat from a wall surface is acquired.
Further, the guide plate 132 also functions as an anti-sway material for the vertical body edge 8 or the stud material 108.

5 壁部流通路
24 床側吹出し口
40 乱流発生板
64 天井側吹出し口
5 Wall flow passage 24 Floor side outlet 40 Turbulent flow generating plate 64 Ceiling side outlet

Claims (7)

空調機器からの空調空気を床下空間部に送り、この床下空間部を流通する空調空気を吹出し口を通じて室内に吹き出す空調構造において、
上記床下空間部と連通する二重壁の壁部に、床下空間部からの空調空気が上方に向けて流通する壁部流通路を形成し、床部の近傍に上記壁部流通路を流通する空調空気の床側吹出し口を又天井部の近傍に天井側吹出し口をそれぞれ設け、
乱流発生板として断面L字状の長尺材を用い、
上記床側吹出し口の近傍の壁基礎面に、空調空気の流れを変える上記乱流発生板を横向きに配置し、
上記乱流発生板に上記空調空気を当てて乱流を発生させ、この乱流により空調空気を上記床側吹出し口の方向と上記天井側吹出し口の方向との二方向に分流し、空調空気を天井側吹出し口と床側吹出し口との両方から室内に取り入れることを特徴とする空調用二重壁構造。
In the air conditioning structure that sends the conditioned air from the air conditioning equipment to the underfloor space and blows the conditioned air that circulates through the underfloor space into the room through the outlet,
A wall portion flow passage through which conditioned air from the underfloor space portion flows upward is formed in the wall portion of the double wall communicating with the underfloor space portion, and the wall portion flow passage is circulated in the vicinity of the floor portion. A floor-side outlet for conditioned air is also provided, and a ceiling-side outlet is provided in the vicinity of the ceiling,
Using a long material with an L-shaped cross section as a turbulent flow generation plate,
The wall base face in the vicinity of the floor-side air outlet, and placing the turbulence generating plate changing the flow of the conditioned air sideways,
The conditioned air is applied to the turbulent flow generating plate to generate turbulent flow, and this turbulent flow divides the conditioned air into two directions, the direction of the floor-side outlet and the direction of the ceiling-side outlet. A double wall structure for air conditioning, characterized in that air is taken into the room from both the ceiling side outlet and the floor side outlet.
空調機器からの空調空気を床下空間部に送り、この床下空間部を流通する空調空気を吹出し口を通じて室内に吹き出す空調構造において、
上記床下空間部と連通する二重壁の壁部として壁基礎面と内装材との間に、床下空間部からの空調空気が上方に向けて流通する壁部流通路を形成し、床部の近傍に上記壁部流通路を流通する空調空気の床側吹出し口を又天井部の近傍に天井側吹出し口をそれぞれ設け、
流体誘導材として、断面が略半円状の円弧部を有する長尺材を用い、
上記床側吹出し口の近傍の上記壁部流通路に、この壁部流通路を閉塞する上記流体誘導材を横方向に断続的に配置し、
上記壁基礎面と上記内装材との間に、床面から立設される幅木材を配置し、上昇する空調空気を上記流体誘導材の片半部分に当てて空調空気の流れを外向きから下向きに変え、この空調空気を上記内装材と上記幅木材の上端部との間から上記床側吹出し口に誘導する一方、
上記流体誘導材を配置していない個所については、上記壁部流通路を通過する空調空気をそのまま上方に流通させ、これにより空調空気を上記床側吹出し口の方向と上記天井側吹出し口の方向との二方向に分流し、空調空気を天井側吹出し口と床側吹出し口との両方から室内に取り入れることを特徴とする空調用二重壁構造。
In the air conditioning structure that sends the conditioned air from the air conditioning equipment to the underfloor space and blows the conditioned air that circulates through the underfloor space into the room through the outlet,
As a wall portion of the double wall communicating with the underfloor space portion, a wall portion flow passage through which conditioned air from the underfloor space portion circulates upward is formed between the wall foundation surface and the interior material . Providing a floor-side outlet for conditioned air flowing through the wall flow passage in the vicinity and a ceiling-side outlet in the vicinity of the ceiling,
As a fluid induction material, using a long material having an arc part with a substantially semicircular cross section,
To the wall passage in the vicinity of the floor-side air outlet, intermittently placing the fluid guide member for closing the wall passage laterally
Between the above-mentioned wall foundation surface and the above-mentioned interior material, arrange a width timber standing from the floor surface , hit the rising conditioned air against one half part of the above-mentioned fluid induction material and flow the conditioned air from the outside While turning downward, this conditioned air is guided to the floor outlet from between the interior material and the upper end of the width timber ,
For the places where the fluid guide material is not disposed, the conditioned air passing through the wall flow passage is circulated upward as it is, so that the conditioned air flows in the direction of the floor side outlet and the direction of the ceiling side outlet. A double wall structure for air conditioning, characterized in that air conditioning air is taken into the room from both the ceiling side outlet and the floor side outlet.
空調機器からの空調空気を床下空間部に送り、この床下空間部を流通する空調空気を吹出し口を通じて室内に吹き出す空調構造において、
上記床下空間部と連通する二重壁の壁部として壁基礎面と内装材との間に、床下空間部からの空調空気が上方に向けて流通する壁部流通路を形成し、床部の近傍に上記壁部流通路を流通する空調空気の床側吹出し口を又天井部の近傍に天井側吹出し口をそれぞれ設け、
流体分配材として、断面が略半円状の円弧部を有する長尺材を用い、この円弧部の上部に所定の間隔をおいて通過孔を設け、
上記床側吹出し口の近傍の上記壁部流通路に、上記壁部流通路の一部を閉塞する上記流体分配材を横方向に配置し、
上記壁基礎面と上記内装材との間に、床面から立設される幅木材を配置し、上昇する空調空気を上記流体分配材に当てて一部の空調空気の流れを外向き及び下向きに変え、この空調空気を上記内装材と上記幅木材の上端部との間から上記床側吹出し口に誘導する一方、
上記流体分配材の上記通過孔を通過する空調空気を上方に流通させ、これにより空調空気を上記床側吹出し口の方向と上記天井側吹出し口の方向との二方向に分流し、空調空気を天井側吹出し口と床側吹出し口との両方から室内に取り入れることを特徴とする空調用二重壁構造。
In the air conditioning structure that sends the conditioned air from the air conditioning equipment to the underfloor space and blows the conditioned air that circulates through the underfloor space into the room through the outlet,
As a wall portion of the double wall communicating with the underfloor space portion, a wall portion flow passage through which conditioned air from the underfloor space portion circulates upward is formed between the wall foundation surface and the interior material . Providing a floor-side outlet for conditioned air flowing through the wall flow passage in the vicinity and a ceiling-side outlet in the vicinity of the ceiling,
As a fluid distribution material, using a long material having an arc part having a substantially semicircular cross section, a passage hole is provided at a predetermined interval above the arc part,
To the wall passage in the vicinity of the floor-side air outlet, and placing the fluid distribution member for closing a portion of the upper Kikabe portion flow path laterally,
Between the wall foundation surface and the interior material, arranged width timber to be erected from the floor, the outward and the conditioned air flow portion of the conditioned air those not in the fluid distribution member to rise While turning downward, this conditioned air is guided to the floor outlet from between the interior material and the upper end of the width timber ,
The conditioned air passing through the passage hole of the fluid distribution material was passed through the upper, thereby conditioned air branched into two directions between the direction of the direction and the ceiling side air outlet of the floor-side air outlet, the air-conditioned air A double wall structure for air conditioning, which is introduced into the room from both the ceiling side outlet and the floor side outlet.
上記天井側吹出し口として、上記天井部の壁際の部分に下方に向けて開口する吹出し口を設け、上記天井部の壁際に、上記壁部流通路を流通して上記壁部の天井際に設けた隙間から吹き出される空調空気を下方向きに変える風向き変更板を配置し、上記吹出し口から空調空気を下方に向けて吹き出すことを特徴とする請求項1乃請求項3の何れかに記載の空調用二重壁構造。 As the ceiling-side outlet, an outlet opening downward is provided at the wall portion of the ceiling portion, and provided at the ceiling portion of the wall portion through the wall flow passage at the wall portion of the ceiling portion. and the conditioned air blown out from the gap of the wind direction changing plate is disposed for changing the downward direction, according to any of claims 1乃 optimum claim 3, characterized in that for blowing toward the conditioned air downward from the air outlet Double wall structure for air conditioning. 上記天井側吹出し口として、上記壁部の天井際の部分に横方に向けて開口する吹出し口を設け、上記壁部流通路の天井際に、この壁部流通路を流通する空調空気を横向きに変える風向き変更板を配置し、上記吹出し口から空調空気を横方向に吹き出すことを特徴とする請求項1乃請求項3の何れかに記載の空調用二重壁構造。 As the ceiling-side outlet, an outlet that opens laterally is provided at a portion of the wall near the ceiling, and the conditioned air flowing through the wall passage is laterally placed at the ceiling of the wall passage. air conditioning double wall structure according to claim 1乃 optimum claim 3 the wind direction changing plate is disposed, and wherein the blowing conditioned air laterally from the air outlet for changing the. 上記壁部流通路を形成する壁基礎面に断熱材を敷設したことを特徴とする請求項1乃請求項3の何れかに記載の空調用二重壁構造。 Air conditioning double wall structure according to claim 1乃 optimum claim 3, characterized in that laid the heat insulating material wall foundation surface forming the wall passage. 上記壁部流通路に、長尺状のガイド板をこの壁部流通路内を横に延ばした状態に配置し、上記壁部流通路を上昇する空調空気の流れを内装材の裏面部に誘導してここに当て、温度が調整された上記内装材による壁面からの輻射効果により室内の空調を行うことを特徴とする請求項1乃請求項3の何れかに記載の空調用二重壁構造。 To the wall passage, an elongated guide plate disposed in a state of extending the wall flow passage to the side, the rear surface portion of the inner Paneling flow of the conditioned air which rises the wall passage induced against here, dual air conditioner according to claim 1乃 optimum claim 3, characterized in that the air conditioning in the room by radiation effect from the wall surface by the interior material temperature is adjusted Wall structure.
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