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JP2011145026A - Pneumatic inductive radiation unit - Google Patents

Pneumatic inductive radiation unit Download PDF

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Publication number
JP2011145026A
JP2011145026A JP2010007181A JP2010007181A JP2011145026A JP 2011145026 A JP2011145026 A JP 2011145026A JP 2010007181 A JP2010007181 A JP 2010007181A JP 2010007181 A JP2010007181 A JP 2010007181A JP 2011145026 A JP2011145026 A JP 2011145026A
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air
radiation
room
induction
heat
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JP4999941B2 (en
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Keiichi Kimura
恵一 木村
Matsuo Morita
満津雄 森田
Kazuyuki Kasahara
和行 笠原
Katsuhiro Urano
勝博 浦野
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Kimura Kohki Co Ltd
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Kimura Kohki Co Ltd
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Priority to JP2010007181A priority Critical patent/JP4999941B2/en
Priority to CN2010102705314A priority patent/CN102128478B/en
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Priority to HK11110684.7A priority patent/HK1156388A1/en
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Abstract

<P>PROBLEM TO BE SOLVED: To provide a pneumatic inductive radiation unit capable of efficiently providing comfortable air conditioning, and being easily constructed without requiring a wasted installation space. <P>SOLUTION: The inductive radiation unit for inducing and mixing the indoor air by the conditioned air supplied from an air conditioner installed along a corner section M or/and a recessed section in a room, releasing the air into the room in a straight flow manner, and radiating the heat of the induced mixed air indoors, has the long shape extending along the corner section M or/and the recessed section as a whole, and a surface facing the corner section M or/and the recessed section of the entire shape is projected. <P>COPYRIGHT: (C)2011,JPO&INPIT

Description

本発明は空気式誘引放射ユニットに関するものである。   The present invention relates to a pneumatically induced radiation unit.

冷温水などの熱媒が流れる多数のパイプをパネルに埋め込み、熱放射により室内などを空調する輻射パネルがある。   There is a radiation panel that embeds a large number of pipes through which a heat medium such as cold / hot water flows into the panel and air-conditions the room by heat radiation.

特開平7−19533号公報JP 7-19533 A

この輻射パネルは熱放射による熱移動のみのため空調効率が低く、断熱が悪い所や熱負荷が大きな所、空気の出入りが大きな所など空調に不向きな空間が多く利用範囲が限定され、結露対策なども必要でコスト高となる問題がある。また、マルチエアコンやファンコイルユニットなどの室内空調機は、冷風又は暖風の風速が速くてドラフト感を与え、温度ムラを生じる問題があった。   This radiant panel has low air conditioning efficiency due to only heat transfer due to heat radiation, and there are many unsuitable spaces for air conditioning, such as places with poor heat insulation, places with large heat loads, and places with large amounts of air coming in and out. There is a problem that it is necessary and expensive. In addition, indoor air conditioners such as a multi-air conditioner and a fan coil unit have a problem that the temperature of cold air or warm air is high and gives a draft feeling, resulting in temperature unevenness.

本発明は上記課題を解決するため、室内の隅部又は/及び凹部に沿って設置され空調機から給気される調和空気で室内の空気を誘引混合して室内へ整流状に放出しかつ誘引混合空気の熱を室内へ放射する誘引放射ユニットであって、前記隅部又は/及び前記凹部に沿って伸びる細長い全体形状を有し、この全体形状のうちで前記隅部又は/及び前記凹部に臨む面を凸状にしたことを最も主要な特徴とする。   In order to solve the above problems, the present invention attracts and mixes indoor air with conditioned air supplied from an air conditioner installed along a corner or / and a concave portion of the room, discharges it into the room in a rectified manner, and attracts the air. An induction radiation unit that radiates heat of mixed air into a room, and has an elongated overall shape extending along the corner or / and the recess, and the corner or / and the recess of the overall shape The most important feature is that the facing surface is convex.

請求項1の発明によれば、
(1)放射(輻射)エネルギーによる遠距離放射作用と、室内空気の誘引により生じるサーキュレーター作用と、による相乗効果で、室内空気温度分布が均一化され、高効率、高能力でドラフトや温度ムラのない快適空調が行える。そのため、熱放射のみの空調と比べて空調に不向きな空間が少なく利用範囲が広い。
(2)凸状の部位を室内の隅部又は/及び凹部の空スペースを利用して納めることができるので、室内に設置しても邪魔にならず、余分で無駄な設置スペースが不要となる。
(3)凸状の部位が、室内の隅部又は/及び凹部に嵌合するので施工が容易で、ガタツキなく取付できる。
(4)全体形状が細長で室内を少ない数のユニットで広範囲に空調できる。
According to the invention of claim 1,
(1) The synergistic effect of the long-distance radiation action by radiation (radiation) energy and the circulator action caused by the attraction of room air makes the indoor air temperature distribution uniform, and is highly efficient and capable of drafting and temperature unevenness. There is no comfortable air conditioning. Therefore, there are few spaces unsuitable for air-conditioning compared with air-conditioning only with heat radiation, and the use range is wide.
(2) Since the convex part can be stored using the empty space in the corner or / and the concave part of the room, even if it is installed in the room, it does not get in the way and an unnecessary and unnecessary installation space becomes unnecessary. .
(3) Since the convex portion fits into the corner or / and the concave portion in the room, the construction is easy and can be mounted without rattling.
(4) The overall shape is slender and the room can be air-conditioned in a wide range with a small number of units.

請求項2の発明によれば、
(1)従来の輻射パネルではパネル面からの熱放射のみであるが、本発明では誘引混合放射ケースからの熱放射に加えて、開口部を介して放射整流器からも室内へ熱放射するので、放射エネルギーを高比率で遠距離まで到達させることができる。この遠距離放射作用と、誘引混合空気が天井近くに滞留しないように室内との温度差を少なくして整流状に放出することで生じる遠距離かつ広範囲な熱伝達作用と、室内空気の誘引により生じるサーキュレーター作用と、による相乗効果で、室内空気温度分布が均一化され、高効率、高能力でドラフトや温度ムラのない快適空調が行える。
(2)従来の輻射パネルは熱放射のために熱源水を用いているが、本発明では調和空気を放射熱源としているので水漏れ事故の心配がなくて設備が簡略化でき、送風動力無しでサーキュレーター効果を得られ、運転コストを低減できる。
(3)調和空気と室内の空気を混合させるので露点制御が可能で、結露対策のためのドレン処理設備が不要となってコストダウンを図れ、調和空気の風量当たりの冷房能力又は暖房能力を大きく(給気温度を通常より低温化又は高温化)して給気風量を少なくすることで、送風動力削減とダクト等の設備の小型化によりコストダウンを図れる。
According to the invention of claim 2,
(1) In the conventional radiation panel, only the heat radiation from the panel surface, but in the present invention, in addition to the heat radiation from the induction mixed radiation case, the radiation is also radiated from the radiation rectifier into the room through the opening. Radiant energy can reach a long distance with a high ratio. Due to this long-distance radiation action, the long-range and wide-range heat transfer action that is generated by reducing the temperature difference from the room and releasing it in a rectified manner so that the induced mixed air does not stay near the ceiling, and the attraction of room air Due to the synergistic effect of the circulator action that occurs, the indoor air temperature distribution is made uniform, and high-efficiency and high-capacity comfort air conditioning without drafts and temperature irregularities can be performed.
(2) The conventional radiant panel uses heat source water for heat radiation, but in the present invention, conditioned air is used as the radiant heat source, so there is no worry of a water leak accident, the equipment can be simplified, and there is no blast power. The circulator effect can be obtained and the operating cost can be reduced.
(3) Since conditioned air and indoor air are mixed, dew point control is possible, drain treatment equipment for countermeasures against dew condensation is not necessary, and costs can be reduced, and cooling capacity or heating capacity per conditioned air volume is increased. By reducing the supply air volume by lowering or increasing the supply air temperature than usual, the cost can be reduced by reducing the blast power and reducing the size of equipment such as ducts.

請求項3の発明によれば、
(1)伝熱板にて誘引混合空気の熱を効率良く確実に放射整流器全域に熱伝達させて、誘引混合放射ケースに均一に熱伝導させることができ、常時安定した熱放射が行える。
(2)伝熱板にて誘引混合空気を整流状に放出でき、空調空気温度分布の均等化を図れる。
According to the invention of claim 3,
(1) The heat of the attracted mixed air can be efficiently and reliably transferred to the entire radiation rectifier by the heat transfer plate, and can be uniformly conducted to the attracted mixed radiation case, so that stable heat radiation can be performed at all times.
(2) The induced mixed air can be discharged in a rectifying manner by the heat transfer plate, and the air-conditioning air temperature distribution can be equalized.

請求項4の発明によれば、
(1)楕円状直管にて放射整流器の反りや撓みなどの変形を防止し補強できて安全性が高く、低圧損で誘引混合空気をスムーズに放出させることができ、空調機の送風動力削減を図れる。
According to the invention of claim 4,
(1) The elliptic straight pipe can prevent and reinforce the deformation of the radiation rectifier, such as warping and bending, and is highly safe. The induced mixed air can be discharged smoothly with low-pressure loss, reducing the blast power of the air conditioner. Can be planned.

請求項5の発明によれば、
(1)誘引混合空気を、誘引混合放射ケースの中央線沿いに送り、放射整流器を通して室内へ出すので、放射整流器全域に誘引混合空気を、偏在やバイパスなしに確実に分流して整流状に流しかつ誘引混合放射ケース全域に均一に熱伝導させることができ、ユニット当りの有効空調範囲が広く空調効率の向上を図れる。
(2)送気部の吹出口が一つで済み、構造を簡素化でき製作が容易である。
According to the invention of claim 5,
(1) Inductive mixed air is sent along the center line of the inductive mixing radiant case and sent out to the room through the radiation rectifier. Therefore, the induced mixed air is reliably diverted to the entire area of the radiation rectifier without being unevenly distributed or bypassed. In addition, heat can be uniformly conducted over the entire area of the induction mixing radiation case, and the effective air conditioning range per unit can be widened to improve the air conditioning efficiency.
(2) One air outlet is required for the air supply section, the structure can be simplified, and the manufacture is easy.

請求項6の発明によれば、
(1)送気部の内部空間を吹出口の長辺方向の風上側から風下側へ向かって縮径させてあるので、吹出口の長辺方向全域で風量、風速を均一化できてバラツキを生じない。そのため、誘引ムラが無くてサーキュレーター効果が高く、均等に誘引空気を混合できて、誘引混合放射ケースから放出される空気の温度ムラがなく、安定した快適空調が行える。
According to the invention of claim 6,
(1) Since the internal space of the air supply section is reduced in diameter from the windward side in the long side direction of the air outlet toward the leeward side, the air volume and the wind speed can be made uniform throughout the long side direction of the air outlet, and variations can be achieved. Does not occur. Therefore, there is no attraction unevenness, the circulator effect is high, the attraction air can be mixed evenly, there is no temperature unevenness of the air discharged from the attraction mixing radiation case, and stable comfortable air conditioning can be performed.

請求項7の発明によれば、
(1)風向調整機構により誘引混合空気の風向きを調整して、気流の方向と分布を均一化し、空調効率の向上を図れる。
According to the invention of claim 7,
(1) By adjusting the wind direction of the induced mixed air by the wind direction adjusting mechanism, the direction and distribution of the airflow can be made uniform, and the air conditioning efficiency can be improved.

請求項8の発明によれば、
(1)吹出風速及び/又は誘引風速を任意に変更でき、空調に最適な誘引空気混合比を選択でき、空調効率の向上をさらに図れる。
According to the invention of claim 8,
(1) The blown air speed and / or the induced air speed can be arbitrarily changed, and the induced air mixing ratio optimum for air conditioning can be selected, thereby further improving the air conditioning efficiency.

請求項9の発明によれば、
(1)蓄熱体によって放射整流器全域の熱分布をより確実に均一化できるので、室内の温度分布が良好となり、一層安定した快適空調が行える。
According to the invention of claim 9,
(1) Since the heat distribution across the radiation rectifier can be more reliably uniformed by the heat accumulator, the temperature distribution in the room becomes good and more stable and comfortable air conditioning can be performed.

請求項10の発明によれば、
(1)誘引混合放射ケースの開孔部に、開孔部を遮るように伝熱板の突起部がつらなって位置するので、伝熱板の長手方向への誘引混合空気の分流が促進されて、開孔部へのバイパス(素通り)を確実に防止でき、誘引混合空気の熱を放射整流器全域に均一に熱伝達することができる。
(2)突起部によって伝熱板から室内への熱放射が、誘引混合放射ケースの開孔部を通って放射状に行われるので、広範囲に放射エネルギーを到達させることができ、室内空気温度分布が一層均一化され、温度ムラのない快適空調が行える。
According to the invention of claim 10,
(1) Since the projection of the heat transfer plate is located in the opening of the induction mixing radiation case so as to block the opening, the diversion of the induction mixed air in the longitudinal direction of the heat transfer plate is promoted. Thus, bypass (through) to the opening can be reliably prevented, and the heat of the induced mixed air can be uniformly transferred to the entire area of the radiation rectifier.
(2) The heat radiation from the heat transfer plate to the room by the protrusion is performed radially through the opening of the induction mixing radiation case, so that the radiation energy can reach a wide range and the indoor air temperature distribution is More uniform and comfortable air conditioning without temperature unevenness.

図1〜図9は、本発明の空気式誘引放射ユニットの一実施例を示しており、この空気式誘引放射ユニットは、室内の隅部Mに沿って設置され空調機から給気される調和空気で室内の空気を誘引混合して室内へ整流状に放出しかつ誘引混合空気の熱を室内へ放射するものであって、隅部Mに沿って伸びる細長い全体形状を有し、この全体形状のうちで隅部Mに臨む面1を凸状にしている。調和空気は、図示省略の空調機にて温湿度調整されてダクト等の送風路17を介して給気される。本発明において、隅部Mは、天井、壁、柱その他室内に存在する物により構成される部分を全て含むものとする。図例は、天井と壁の隅部Mに空気式誘引放射ユニットを設置した場合を示している。   1 to 9 show an embodiment of a pneumatically induced radiation unit according to the present invention. This pneumatically induced radiation unit is installed along a corner M of a room and is supplied with air from an air conditioner. The indoor air is attracted and mixed with air, discharged into the room in a rectified manner, and the heat of the induced mixed air is radiated into the room, and has an elongated overall shape extending along the corner M. Among these, the surface 1 facing the corner M is convex. The conditioned air is adjusted in temperature and humidity by an air conditioner (not shown), and is supplied through an air duct 17 such as a duct. In the present invention, the corner M includes all the parts constituted by ceilings, walls, columns, and other objects existing in the room. The figure shows a case where a pneumatically induced radiation unit is installed at the corner M of the ceiling and the wall.

空気式誘引放射ユニットは、調和空気を送り出す送気部11と、誘引口10を有しこれに送気部11の調和空気が吹き込まれることで室内Sの空気を誘引混合して多数の開孔部9から室内Sへ向かって放出する誘引混合放射ケース16と、フード13と、を備えている。送気部11、誘引混合放射ケース16及びフード13は隅部Mに沿って伸びるように構成する。この誘引混合放射ケース16の内部に、誘引混合空気を分流させて整流状にして開孔部9を介して室内Sへ案内すると共に誘引混合空気の熱を誘引混合放射ケース16に熱伝導させて室内Sへ熱放射させかつ開孔部9を通して室内Sへ熱放射させる放射整流器2を、設ける。放射整流器2は、全体が扁平な矩形状で誘引混合放射ケース16の少なくとも一面(図例では室内Sに臨む側)と熱伝導自在に接触させる。   The air type induction radiation unit has an air supply unit 11 that sends out conditioned air, and an induction port 10, and the conditioned air of the air supply unit 11 is blown into the air supply unit 11, thereby attracting and mixing the air in the room S and opening a large number of holes. An inductive mixing radiation case 16 that discharges toward the room S from the section 9 and a hood 13 are provided. The air supply unit 11, the induction mixing radiation case 16, and the hood 13 are configured to extend along the corner M. The induced mixed radiating case 16 is divided into a rectified state by guiding the induced mixed air into the room S through the opening 9, and the heat of the induced mixed air is conducted to the induced mixed radiating case 16 by heat conduction. A radiation rectifier 2 that radiates heat into the room S and radiates heat into the room S through the opening 9 is provided. The radiation rectifier 2 has a flat rectangular shape as a whole, and is brought into contact with at least one surface (the side facing the room S in the illustrated example) of the attracting and mixing radiation case 16 so as to be able to conduct heat.

放射整流器2は、熱伝導及び熱放射率の高いアルミ等の材質であって帯状の多数の伝熱板8…を所定ピッチで面対向させて設けると共に誘引混合空気が分流して伝熱板8、8の隙間を熱伝達しながら整流状に通過するように構成する。各伝熱板8…には、法線方向から複数の楕円状直管99を間隔をあけて挿着し、この楕円状直管99の楕円長軸を隅部Mから室内Sに向くようにする。   The radiation rectifier 2 is made of a material such as aluminum having high heat conduction and thermal emissivity, and is provided with a plurality of belt-shaped heat transfer plates 8 facing each other at a predetermined pitch, and at the same time, the induced mixed air is diverted and the heat transfer plate 8 , 8 is configured to pass in a rectifying manner while transferring heat. A plurality of elliptical straight pipes 99 are inserted into each heat transfer plate 8 from the normal direction at intervals, and the elliptical long axis of the elliptical straight pipes 99 faces the room S from the corner M. To do.

誘引混合空気は、放射整流器2及び誘引混合放射ケース16の部材抵抗により分流拡散しながら風速を落として伝熱板8、8の隙間を通過しながら整流状となり、誘引混合空気の熱を放射整流器2全域に均一に熱伝達する。開孔部9は、誘引混合放射ケース16の室内Sに臨む側の面30の略全域に互いに間隔をあけて形成する。図例では開孔部9は長孔状となっているが、丸や他の形状とするも自由で、位置の変更も自由である。室内Sへの放射整流器2及び誘引混合放射ケース16の熱放射作用及び誘引混合空気放出による熱伝達作用を最大限に引き出すために、誘引混合放射ケース16の面30全体に対する開孔部9全体の総面積比は2〜3割以上に設定するのが好ましいが変更は自由である。誘引混合空気の分流拡散作用と整流通過作用と熱伝達作用を最適に機能させるために放射整流器2の空気入口側に対して空気出口側の風速が半分以下、好ましくは20%〜30%以下にダウンするように伝熱板8や開孔部9の形状や数、ピッチ等を設定構成する。   The induced mixed air is rectified while reducing the wind speed while passing through the gap between the heat transfer plates 8 and 8 while diverging and diffusing due to the member resistance of the radiation rectifier 2 and the induction mixed radiation case 16, and the heat of the induced mixed air is radiated by the radiation rectifier. Heat is evenly transferred across the entire area. The opening 9 is formed at a distance from each other over substantially the entire surface 30 of the attracting and mixing radiation case 16 facing the room S. In the illustrated example, the opening 9 has a long hole shape, but it may be round or other shapes, and the position may be changed freely. In order to maximize the heat radiation effect of the radiation rectifier 2 and the induction mixed radiation case 16 into the room S and the heat transfer effect due to the induction mixed air discharge, the entire opening 9 with respect to the entire surface 30 of the induction mixed radiation case 16 The total area ratio is preferably set to 20 to 30% or more, but can be changed freely. In order to optimally function the shunt diffusion action, the rectifying passage action and the heat transfer action of the induced mixed air, the wind speed on the air outlet side is less than half, preferably 20% to 30% or less with respect to the air inlet side of the radiation rectifier 2. The shape, number, pitch, and the like of the heat transfer plate 8 and the apertures 9 are set and configured so as to go down.

フード13は、隅部Mに臨む凸状面1を有すると共にこの凸状面1と対向し室内Sに露出する開口部14を有している。凸状面1は、図例では二等辺三角形を成すような山形となっているが、その形状や構造の変更は自由である。フード13の内部には扁平な矩形状の誘引混合放射ケース16を、これの周側面のうちのすくなくとも対向する二側面から誘引口10までの範囲とフード13及び送気部11との間に誘引空気路用の間隔部15を設けて、設置する。誘引混合放射ケース16はフード13に対して開閉又は着脱自在に構成する。図例では、誘引混合放射ケース16の長辺(長手)方向の両横から誘引口10に回り込むように間隔部15を設けているが、短辺方向の両横からも回り込むようにし、四側面(全周)全部に間隔部を設けるなど変更は自由である。また、送気部11への空気入口18はフード13の凸状面1に設けているが位置や数の変更は自由である。   The hood 13 has a convex surface 1 facing the corner M, and has an opening 14 that faces the convex surface 1 and is exposed to the room S. Although the convex surface 1 has a mountain shape that forms an isosceles triangle in the illustrated example, the shape and structure thereof can be freely changed. In the inside of the hood 13, a flat rectangular attracting and mixing radiation case 16 is attracted between the hood 13 and the air supply section 11 from the range from at least two opposing side surfaces of the peripheral side surface to the induction port 10. An air gap space 15 is provided and installed. The attracting and mixing radiation case 16 is configured to be openable / closable or detachable with respect to the hood 13. In the illustrated example, the spacing portion 15 is provided so as to wrap around the induction port 10 from both sides in the long side (longitudinal) direction of the attracting and mixing radiation case 16, but it is also arranged so as to wrap around from both sides in the short side direction. (All circumferences) Changes are free, such as providing an interval portion on all sides. Moreover, although the air inlet 18 to the air supply part 11 is provided in the convex-shaped surface 1 of the food | hood 13, a change of a position or a number is free.

誘引混合放射ケース16には、送気部11の調和空気が吹き込まれるライン状の誘引口10を、間隔部15を形成する対向二側面の中間の中央線L沿いに形成し、送気部11に、誘引口10に沿って調和空気を吹出すライン状の吹出口12を、形成する。送気部11は、風上から風下に向かって狭くなる漏斗状の仕切材19、19とフード13で囲まれた部位にて構成される。送気部11の内部空間は、吹出口12の長辺方向の風上側から風下側へ向かって縮径させ、送気部11に風向を調整する風向調整機構Gを設ける。図例では、送気部11の内部を傾斜板11aで仕切って内部空間を縮径させているが、送気部11自体を縮径させたり、その他の方法で縮径させてもよい。また、送気部11の形状、構造等の変更は自由で、例えばフード13とは別個の部材と仕切材19、19で送気部11を構成してもよい。   In the induction mixing radiation case 16, a line-shaped induction port 10 into which the conditioned air of the air supply unit 11 is blown is formed along the center line L between the two opposing side surfaces that form the interval portion 15. In addition, a line-shaped air outlet 12 that blows out conditioned air along the induction port 10 is formed. The air supply unit 11 is configured by a portion surrounded by funnel-shaped partition members 19 and 19 and a hood 13 that become narrower from the windward side toward the leeward side. The internal space of the air supply unit 11 is provided with a wind direction adjusting mechanism G that reduces the diameter from the windward side in the long side direction of the air outlet 12 toward the leeward side and adjusts the air direction in the air supply unit 11. In the illustrated example, the inside of the air supply unit 11 is partitioned by the inclined plate 11a to reduce the inner space, but the air supply unit 11 itself may be reduced in diameter or may be reduced in other methods. Moreover, the shape, structure, etc. of the air supply part 11 can be freely changed. For example, the air supply part 11 may be configured by a member separate from the hood 13 and the partition members 19 and 19.

風向調整機構Gは、調和空気の気流方向と交わる方向に伸びる複数の小壁条部7を間隔をあけて設けて成る。風向調整機構Gがない場合、図6の点線の太矢印のように調和空気が斜めに流れるが、風向調整機構Gの抵抗により図6の実線の太矢印のように送気部11の長手方向と直交方向に風向きを調整することができる。この小壁条部7の幅と高さは変更自由である。   The wind direction adjusting mechanism G is formed by providing a plurality of small wall strips 7 extending in a direction intersecting with the air flow direction of conditioned air at intervals. In the absence of the wind direction adjusting mechanism G, the conditioned air flows obliquely as indicated by the thick dotted arrow in FIG. 6, but the longitudinal direction of the air supply section 11 as indicated by the solid thick arrow in FIG. The wind direction can be adjusted in the orthogonal direction. The width and height of the small wall strip 7 can be freely changed.

図9に示すように、ライン状の吹出口12の短辺側の間隙幅HAを調整して吹出風速を変更自在な吹出幅調整機構A、及び、ライン状の誘引口10の短辺側の間隙幅HBを調整して誘引風速を調整自在な誘引幅調整機構Bを、設ける。吹出幅調整機構Aは、吹出口12の短辺側の間隙幅HAを増減させる吹出口幅調整部材3と、吹出口幅調整部材3を着脱又はスライド自在に取付ける固定手段4と、を備え、誘引幅調整機構Bは、誘引口10の短辺側の間隙幅HBを増減させる誘引口幅調整部材5と、誘引口幅調整部材5を着脱又はスライド自在に取付ける固定手段6と、を備える。固定手段4、6は、一点鎖線で略して示すネジ等の公知の螺着部材等にて成る。図例では吹出口幅調整部材3と誘引口幅調整部材5は一対の折曲片を用いて構成しているが、形状、構造等の変更は自由である。空調に最適な誘引空気混合比の例をあげると、調和空気吹出風量:誘引風量が約6:4であるが、設定変更は自由である。なお、吹出幅調整機構Aと誘引幅調整機構Bの一方又は両方を省略するも自由である。   As shown in FIG. 9, the blow width adjusting mechanism A capable of changing the blown air speed by adjusting the gap width HA on the short side of the line-shaped air outlet 12, and the short-side side of the line-shaped induction port 10. An induction width adjusting mechanism B is provided that can adjust the induction wind speed by adjusting the gap width HB. The blowout width adjusting mechanism A includes a blower outlet width adjusting member 3 that increases or decreases the gap width HA on the short side of the blower outlet 12, and fixing means 4 that attaches the blower outlet width adjusting member 3 detachably or slidably. The attracting width adjusting mechanism B includes an attracting port width adjusting member 5 that increases or decreases the gap width HB on the short side of the attracting port 10 and a fixing unit 6 that attaches the attracting port width adjusting member 5 detachably or slidably. The fixing means 4 and 6 are formed of a known screwed member such as a screw indicated by a dashed line. In the illustrated example, the blower outlet width adjusting member 3 and the attraction opening width adjusting member 5 are configured using a pair of bent pieces, but the shape, structure, and the like can be freely changed. As an example of the induced air mixing ratio optimum for air conditioning, the conditioned air blowing air volume: the induced air volume is about 6: 4, but the setting change is free. It should be noted that one or both of the blowout width adjusting mechanism A and the attraction width adjusting mechanism B may be omitted.

図7に示すように、調和空気は、実線の太矢印のように送気部11から吹出されて誘引混合放射ケース16内に入ると吹出口12と誘引口10の間隙部が負圧となって、短い点線の太矢印のように室内Sの空気を間隔部15を介して誘引し、長い点線の太矢印のように誘引混合放射ケース16内で混合しながら分流拡散して室内Sへ整流状に放出される。これらを繰り返して室内Sと誘引放射ユニットとの間で空気が対流循環し撹拌される。冷房時は室内Sよりも温度が低い誘引混合空気と冷熱放射により空調し、暖房時は室内Sよりも温度が高い誘引混合空気と温熱放射により空調する。調和空気は、例えば結露防止や空調効率化のために、誘引混合された時点で室内Sの露点温度より高温で絶対湿度が低くなるように設定するが、変更は自由である。   As shown in FIG. 7, when the conditioned air is blown out from the air supply section 11 and enters the induction mixing radiation case 16 as indicated by a solid thick arrow, the gap between the air outlet 12 and the inlet 10 becomes negative pressure. Then, the air in the room S is attracted through the spacing portion 15 as indicated by a short dotted thick arrow, and is shunted and diffused into the room S while being mixed in the induced mixing radiation case 16 as indicated by a long thick dotted arrow. Are released in the form of By repeating these steps, air is circulated and stirred between the room S and the attracting radiation unit. During cooling, air conditioning is performed using induced mixed air and cold radiation, which are lower in temperature than the room S, and during heating, air conditioning is performed using induced mixed air and heat radiation, which is higher in temperature than the room S. The conditioned air is set so that the absolute humidity becomes lower than the dew point temperature of the room S when it is attracted and mixed, for example, in order to prevent condensation and to improve the air conditioning efficiency.

なお、図10のように、各伝熱板8…に、その両端部まで複数の直管99…を所定ピッチで挿着し、各直管99の内部に、誘引混合空気の熱を直管99を介して蓄熱する蓄熱体Tを設けてもよい。蓄熱体Tは、蓄熱自在かつ熱伝導自在な材質であれば良く、固体、流体いずれを用いるも自由で、流体の場合は直管99の内部に蓄熱体Tを封入する。なお、図例では直管99は楕円状となっているが真円状としたり、図7の実施例において伝熱板8の直管99を挿着していない部分の穴を省略してもよく、放射整流器2の形状、構造等の変更は自由である。   As shown in FIG. 10, a plurality of straight pipes 99 are inserted into each heat transfer plate 8 to both ends thereof at a predetermined pitch, and the heat of the induced mixed air is straightened into each straight pipe 99. A heat storage body T that stores heat via 99 may be provided. The heat storage body T may be any material that can store heat and can conduct heat, and either solid or fluid can be used. In the case of fluid, the heat storage body T is enclosed in the straight pipe 99. Although the straight pipe 99 is elliptical in the example shown in the figure, it may be a perfect circle, or the hole in the portion where the straight pipe 99 of the heat transfer plate 8 is not inserted in the embodiment of FIG. 7 may be omitted. The shape, structure, etc. of the radiation rectifier 2 can be freely changed.

図11と図12は、前記各実施例において、放射整流器2の各伝熱板8に、法線方向(伝熱板8の平面に垂直な方向)に突出すると共に隣合う伝熱板8に接触乃至近接する短筒状の突起部98を、長手方向へ所定ピッチで形成し、誘引混合放射ケース16の所定又は全ての開孔部9と突起部98とを対向させる。伝熱板8…を所定ピッチで面対向させて設けたとき、図例のように突起部98の中心軸が、隣りの伝熱板8の突起部98の中心軸と重なって、突起部98…が直線状につらなるように配置する。なお、図例では突起部98は楕円形としているが丸形や多角形など変更は自由である。この場合、熱放射は開孔部9から室内Sに向かって放射状に進行する。同時に、突起部98は誘引混合空気の分流促進効果も発揮する。   11 and 12 show that in each of the embodiments, the heat transfer plate 8 of the radiation rectifier 2 protrudes in the normal direction (direction perpendicular to the plane of the heat transfer plate 8) and is adjacent to the heat transfer plate 8 adjacent thereto. Short cylindrical protrusions 98 that are in contact with or close to each other are formed at a predetermined pitch in the longitudinal direction, and predetermined or all of the apertures 9 and the protrusions 98 of the attracting and mixing radiation case 16 are opposed to each other. When the heat transfer plates 8 are provided to face each other at a predetermined pitch, the central axis of the protrusion 98 overlaps with the central axis of the protrusion 98 of the adjacent heat transfer plate 8 as shown in the figure, and the protrusion 98 ... are arranged in a straight line. In the example shown in the figure, the protrusion 98 is elliptical, but it can be freely changed such as round or polygonal. In this case, the heat radiation proceeds radially from the opening 9 toward the room S. At the same time, the protrusion 98 also exhibits the effect of promoting the diversion of the attracted mixed air.

図13と図14は、誘引放射ユニットを室内の凹部Nに沿って設置した場合の実施例で、凹部Nに沿って伸びる細長い全体形状を有し、この全体形状のうちで凹部Nに臨む面1を凸状にしている。送気部11の空気入口18はフード13の長手方向の一端面に設けている。フード13は、凹部Nに臨む凸状面1を有すると共にこの凸状面1と対向し室内Sに露出する開口部14を有している。図7のように、各伝熱板8…には、法線方向から複数の楕円状直管99を間隔をあけて挿着し、この楕円状直管99の楕円長軸を凹部Nから室内Sに向くようにする。その他の構成は前記各実施例と同様であるので説明は省略する。本発明において、凹部Nは、壁、柱、天井その他室内に存在する物により構成される部分を全て含むものとする。図例は、壁と柱の凹部Nと、柱と壁の隅部Mと、に各々空気式誘引放射ユニットを設置した場合を示している。   FIG. 13 and FIG. 14 show an embodiment in which the attracting radiation unit is installed along the concave portion N in the room, and has an elongated overall shape extending along the concave portion N, and the surface facing the concave portion N in the overall shape. 1 is convex. The air inlet 18 of the air supply unit 11 is provided on one end surface of the hood 13 in the longitudinal direction. The hood 13 has a convex surface 1 facing the concave portion N and an opening 14 that faces the convex surface 1 and is exposed to the room S. As shown in FIG. 7, a plurality of elliptical straight pipes 99 are inserted into each heat transfer plate 8 at intervals from the normal direction, and the elliptical long axis of the elliptical straight pipe 99 is inserted into the room from the recess N. Try to face S. Since other configurations are the same as those of the above-described embodiments, description thereof will be omitted. In this invention, the recessed part N shall contain all the parts comprised by the thing which exists in a wall, a pillar, a ceiling, and other indoors. The illustrated example shows a case where a pneumatically induced radiation unit is installed in each of a wall and a column recess N and a column and a wall corner M.

空気式誘引放射ユニットの隅部への設置例を示す斜視図である。It is a perspective view which shows the example of installation to the corner part of a pneumatic induction radiation unit. 図1の側面断面図である。It is side surface sectional drawing of FIG. ユニット全体の斜視図である。It is a perspective view of the whole unit. ユニット全体の平面図である。It is a top view of the whole unit. 誘引混合放射ケースの上面の一部を破断させた平面図である。It is the top view which fractured | ruptured a part of upper surface of the induction mixing radiation case. 送気部と誘引混合放射ケースの平面中央横断面図である。It is a plane center cross-sectional view of an air supply part and an attraction mixing radiation case. 図4のE方向から見た断面図である。It is sectional drawing seen from the E direction of FIG. フードの一部を破断させた全体の斜視図である。It is the whole perspective view which fractured | ruptured a part of food | hood. 図6のF方向から見た送気部と誘引混合放射ケースの要部断面図である。It is principal part sectional drawing of an air supply part and the attraction | suction mixing radiation case seen from the F direction of FIG. 放射整流器の変形例を示す要部断面図である。It is principal part sectional drawing which shows the modification of a radiation rectifier. 放射整流器の他の変形例を示す要部平面断面図である。It is principal part plane sectional drawing which shows the other modification of a radiation rectifier. 図11のJ方向から見た他の変形例の要部断面図である。It is principal part sectional drawing of the other modification seen from the J direction of FIG. 空気式誘引放射ユニットの隅部と凹部への設置例を示す側面図である。It is a side view which shows the example of installation to the corner part and recessed part of a pneumatic induction radiation unit. 図13の平面断面図である。FIG. 14 is a plan sectional view of FIG. 13.

2 放射整流器
8 伝熱板
9 開孔部
10 誘引口
11 送気部
12 吹出口
13 フード
14 開口部
15 間隔部
16 誘引混合放射ケース
98 突起部
99 直管
A 吹出幅調整機構
B 誘引幅調整機構
G 風向調整機構
HA 間隙幅
HB 間隙幅
L 中央線
M 隅部
N 凹部
S 室内
T 蓄熱体
2 Radiation Rectifier 8 Heat Transfer Plate 9 Opening Portion 10 Induction Port 11 Air Supply Portion 12 Blowout Port 13 Hood 14 Opening Portion 15 Spacing Portion 16 Induction Mixing Radiation Case 98 Projection Portion 99 Straight Pipe A Blowing Width Adjustment Mechanism B Induction Width Adjustment Mechanism G Wind direction adjusting mechanism HA Gap width HB Gap width L Center line M Corner N Recess S Indoor T Heat storage

Claims (10)

室内の隅部(M)又は/及び凹部(N)に沿って設置され空調機から給気される調和空気で室内の空気を誘引混合して室内へ整流状に放出しかつ誘引混合空気の熱を室内へ放射する誘引放射ユニットであって、前記隅部(M)又は/及び前記凹部(N)に沿って伸びる細長い全体形状を有し、この全体形状のうちで前記隅部(M)又は/及び前記凹部(N)に臨む面(1)を凸状にしたことを特徴とする空気式誘引放射ユニット。   The indoor air is attracted and mixed with the conditioned air that is installed along the corners (M) and / or the recesses (N) of the room and is supplied from the air conditioner. , Which has an elongated overall shape extending along the corner (M) or / and the recess (N), and the corner (M) or A pneumatic attraction radiation unit characterized in that the surface (1) facing the recess (N) is convex. 調和空気を送り出す送気部(11)と、誘引口(10)を有しこれに前記送気部(11)の調和空気が吹き込まれることで室内(S)の空気を誘引混合して多数の開孔部(9)から前記室内(S)へ向かって放出する誘引混合放射ケース(16)と、を備え、この誘引混合放射ケース(16)の内部に、前記誘引混合空気を分流させて整流状にして前記開孔部(9)を介して前記室内(S)へ案内すると共に前記誘引混合空気の熱を前記誘引混合放射ケース(16)に熱伝導させて前記室内(S)へ熱放射させかつ前記開孔部(9)を通して前記室内(S)へ熱放射させる放射整流器(2)を、設けた請求項1記載の空気式誘引放射ユニット。   There are an air supply section (11) for sending out conditioned air, and an induction port (10). The conditioned air of the air supply section (11) is blown into the air supply section (11) to attract and mix the air in the room (S). An inductive mixing radiation case (16) that discharges from the aperture (9) toward the room (S), and rectifies the attraction mixing radiation case (16) by diverting the attraction mixing air into the interior. And is guided to the room (S) through the opening (9) and the heat of the attracted mixed air is conducted to the attracted mixed radiation case (16) to emit heat to the room (S). The pneumatic induction radiating unit according to claim 1, further comprising a radiation rectifier (2) that radiates heat into the room (S) through the opening (9). 放射整流器(2)を、帯状の多数の伝熱板(8)…を所定ピッチで面対向させて設けると共に誘引混合空気が分流して前記伝熱板(8)、(8)の隙間を熱伝達しながら整流状に通過するように構成した請求項2記載の空気式誘引放射ユニット。   The radiation rectifier (2) is provided with a plurality of strip-shaped heat transfer plates (8) facing each other at a predetermined pitch, and the induced mixed air is diverted to heat the gaps between the heat transfer plates (8) and (8). The pneumatic attraction radiation unit according to claim 2, which is configured to pass in a rectifying manner while being transmitted. 放射整流器(2)の伝熱板(8)…に、複数の楕円状直管(99)を挿着し、この楕円状直管(99)の楕円長軸を隅部(M)又は/及び凹部(N)から室内(S)に向くようにした請求項3記載の空気式誘引放射ユニット。   A plurality of elliptical straight tubes (99) are inserted into the heat transfer plate (8) of the radiation rectifier (2), and the elliptical long axis of the elliptical straight tube (99) is set to the corner (M) or / and The pneumatic attraction radiation unit according to claim 3, wherein the air induction radiation unit is directed from the recess (N) to the room (S). 隅部(M)又は/及び凹部(N)に臨む凸状面(1)を有すると共にこの凸状面(1)と対向し室内(S)に露出する開口部(14)を有するフード(13)の内部に、誘引混合放射ケース(16)を、これの周側面のうちのすくなくとも対向する二側面から誘引口(10)までの範囲と前記フード(13)及び送気部(11)との間に誘引空気路用の間隔部(15)を設けて、設置し、前記誘引混合放射ケース(16)に、送気部(11)の調和空気が吹き込まれるライン状の誘引口(10)を、前記間隔部(15)を形成する前記対向二側面の中間の中央線(L)沿いに形成し、前記送気部(11)に、前記誘引口(10)に沿って前記調和空気を吹出すライン状の吹出口(12)を、形成した請求項2、3又は4記載の空気式誘引放射ユニット。   A hood (13) having a convex surface (1) facing the corner (M) and / or the concave portion (N) and having an opening (14) facing the convex surface (1) and exposed to the interior (S). ), The induction mixing radiation case (16) is provided with a range from at least two opposing side surfaces to the induction port (10), and the hood (13) and the air supply unit (11). An interval portion (15) for the induction air passage is provided between them, and a linear induction port (10) into which the conditioned air of the air supply portion (11) is blown into the induction mixing radiation case (16) is installed. The conditioned air is blown along the induction port (10) to the air supply part (11), and is formed along the middle line (L) between the opposing two side surfaces forming the spacing part (15). The pneumatically induced radiation according to claim 2, 3 or 4, wherein a line-shaped air outlet (12) is formed. Knit. 送気部(11)の内部空間を、吹出口(12)の長辺方向の風上側から風下側へ向かって縮径させた請求項5記載の空気式誘引放射ユニット。   The pneumatic induction radiation unit according to claim 5, wherein the inner space of the air supply section (11) is reduced in diameter from the windward side in the long side direction of the air outlet (12) toward the leeward side. 送気部(11)に風向を調整する風向調整機構(G)を設けた請求項5又は6記載の空気式誘引放射ユニット。   The pneumatic attraction radiation unit according to claim 5 or 6, wherein a wind direction adjusting mechanism (G) for adjusting a wind direction is provided in the air supply section (11). ライン状の吹出口(12)の短辺側の間隙幅(HA)を調整して吹出風速を変更自在な吹出幅調整機構(A)、及び/又は、ライン状の誘引口(10)の短辺側の間隙幅(HB)を調整して誘引風速を調整自在な誘引幅調整機構(B)を、設けた請求項5、6又は7記載の空気式誘引放射ユニット。   Adjusting the gap width (HA) on the short side of the line-shaped air outlet (12) to change the blowout air speed, and / or the length of the line-shaped induction port (10). The pneumatic attraction radiation unit according to claim 5, 6 or 7, further comprising an attraction width adjusting mechanism (B) capable of adjusting the attraction wind speed by adjusting the gap width (HB) on the side. 楕円状直管(99)の内部に、誘引混合空気の熱を蓄熱する蓄熱体(T)を設けた請求項4、5、6、7又は8記載の空気式誘引放射ユニット。   The pneumatic attraction radiation unit according to claim 4, 5, 6, 7 or 8, wherein a heat storage body (T) for storing heat of the attracted mixed air is provided inside the elliptical straight pipe (99). 放射整流器(2)の各伝熱板(8)に、法線方向に突出すると共に隣合う前記伝熱板(8)に接触乃至近接する短筒状の突起部(98)を、長手方向へ所定ピッチで形成し、誘引混合放射ケース(16)の開孔部(9)と前記突起部(98)を対向させた請求項3、4、5、6、7、8又は9記載の空気式誘引放射ユニット。   A short cylindrical projection (98) protruding in the normal direction and in contact with or adjacent to the adjacent heat transfer plate (8) on each heat transfer plate (8) of the radiation rectifier (2) in the longitudinal direction. The pneumatic system according to claim 3, 4, 5, 6, 7, 8 or 9, wherein the air gap is formed at a predetermined pitch, and the opening (9) of the attracting and mixing radiation case (16) is opposed to the protrusion (98). Attracting radiation unit.
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Cited By (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2012007766A (en) * 2010-06-23 2012-01-12 Kimura Kohki Co Ltd Air conditioning device of air/heat-source heat pump type
JP2012026611A (en) * 2010-07-21 2012-02-09 Kimura Kohki Co Ltd Variable air quantity blowing device
JP2013092330A (en) * 2011-10-27 2013-05-16 Sakura Prolink:Kk Air heat exchange system and air heat exchanger using the system
JP2013096647A (en) * 2011-11-01 2013-05-20 Sakura Prolink:Kk Air heat exchanger with built-in cooling and heating coil
JP2014084107A (en) * 2012-10-23 2014-05-12 Visteon Global Technologies Inc Belt-like ventilation system for vehicle
JP2015117928A (en) * 2014-02-07 2015-06-25 輝明 村上 Windless air-conditioning method in building for playing badminton or table tennis and apparatus used for the same
CN105627439A (en) * 2016-02-15 2016-06-01 深圳倍真科技有限公司 Ceiling transmission-type cold and hot radiation air conditioner

Families Citing this family (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103528173A (en) * 2012-07-05 2014-01-22 苏州市创建空调设备有限公司 Low temperature strip-type air port and heating and ventilation equipment comprising low temperature strip-type air port
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EP3726153A1 (en) * 2019-03-29 2020-10-21 Kimura Kohki Co., Ltd. Air conditioning system

Citations (20)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5061047A (en) * 1973-10-01 1975-05-26
JPS5289230A (en) * 1976-01-15 1977-07-26 Vinz Siegfried Room heating and cooling system for highhstorey building
JPS5579952A (en) * 1978-12-14 1980-06-16 Hitachi Ltd Cold air discharge grill in air-conditioning duct in vehicle
JPS59142345A (en) * 1983-02-02 1984-08-15 Matsushita Electric Ind Co Ltd Flow direction controlling device
JPS62228832A (en) * 1986-03-31 1987-10-07 Kojima Press Co Ltd Air flow deflecting device of air conditioning duct
JPS62192169U (en) * 1986-05-27 1987-12-07
JPS63503401A (en) * 1985-11-13 1988-12-08 ケ−ドウブラント トミイ Air supply device
JPH0163949U (en) * 1987-10-20 1989-04-25
JPH04366330A (en) * 1991-06-12 1992-12-18 Taikisha Ltd Induction type blowing device
JPH0544965A (en) * 1991-08-13 1993-02-23 Takasago Thermal Eng Co Ltd Cooling/heating equipment utilizing radiant heat
JPH0582620U (en) * 1992-04-14 1993-11-09 株式会社ゼクセル Air conditioning grill for automobiles
JPH0719533A (en) * 1993-06-29 1995-01-20 Jdc Corp Radiant panel for ceiling type cooling/heating
JPH07145959A (en) * 1993-11-19 1995-06-06 Hibiya Eng Ltd Ceiling ventilation type air conditioner
JPH08159521A (en) * 1994-10-04 1996-06-21 Kansai Electric Power Co Inc:The Air cooling and heating system
JPH1183150A (en) * 1997-09-03 1999-03-26 Takasago Thermal Eng Co Ltd Line type air outlet
JP2002243260A (en) * 2001-02-19 2002-08-28 Daikin Ind Ltd Air conditioner
JP2003322386A (en) * 2002-04-26 2003-11-14 Kimura Kohki Co Ltd Heat-pump type air conditioner
JP2007101165A (en) * 2005-09-30 2007-04-19 Tornex Inc Force-fed air uniform flow blowoff device
JP2007225199A (en) * 2006-02-23 2007-09-06 Matsushita Electric Works Ltd Heating/cooling device
JP4792101B2 (en) * 2009-06-09 2011-10-12 木村工機株式会社 Pneumatic radiant laminar flow unit

Family Cites Families (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP3883195B2 (en) * 2003-08-08 2007-02-21 株式会社竹中工務店 Replacement ventilation air conditioning system combined with radiant cooling air conditioning system
CN1789828A (en) * 2004-12-13 2006-06-21 乐金电子(天津)电器有限公司 Triangular wall-hanging indoor unit of air conditioner
CN100529561C (en) * 2007-11-27 2009-08-19 西安工程大学 Replacement ventilation and radiation cold/heat feeding composite air conditioner system

Patent Citations (20)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5061047A (en) * 1973-10-01 1975-05-26
JPS5289230A (en) * 1976-01-15 1977-07-26 Vinz Siegfried Room heating and cooling system for highhstorey building
JPS5579952A (en) * 1978-12-14 1980-06-16 Hitachi Ltd Cold air discharge grill in air-conditioning duct in vehicle
JPS59142345A (en) * 1983-02-02 1984-08-15 Matsushita Electric Ind Co Ltd Flow direction controlling device
JPS63503401A (en) * 1985-11-13 1988-12-08 ケ−ドウブラント トミイ Air supply device
JPS62228832A (en) * 1986-03-31 1987-10-07 Kojima Press Co Ltd Air flow deflecting device of air conditioning duct
JPS62192169U (en) * 1986-05-27 1987-12-07
JPH0163949U (en) * 1987-10-20 1989-04-25
JPH04366330A (en) * 1991-06-12 1992-12-18 Taikisha Ltd Induction type blowing device
JPH0544965A (en) * 1991-08-13 1993-02-23 Takasago Thermal Eng Co Ltd Cooling/heating equipment utilizing radiant heat
JPH0582620U (en) * 1992-04-14 1993-11-09 株式会社ゼクセル Air conditioning grill for automobiles
JPH0719533A (en) * 1993-06-29 1995-01-20 Jdc Corp Radiant panel for ceiling type cooling/heating
JPH07145959A (en) * 1993-11-19 1995-06-06 Hibiya Eng Ltd Ceiling ventilation type air conditioner
JPH08159521A (en) * 1994-10-04 1996-06-21 Kansai Electric Power Co Inc:The Air cooling and heating system
JPH1183150A (en) * 1997-09-03 1999-03-26 Takasago Thermal Eng Co Ltd Line type air outlet
JP2002243260A (en) * 2001-02-19 2002-08-28 Daikin Ind Ltd Air conditioner
JP2003322386A (en) * 2002-04-26 2003-11-14 Kimura Kohki Co Ltd Heat-pump type air conditioner
JP2007101165A (en) * 2005-09-30 2007-04-19 Tornex Inc Force-fed air uniform flow blowoff device
JP2007225199A (en) * 2006-02-23 2007-09-06 Matsushita Electric Works Ltd Heating/cooling device
JP4792101B2 (en) * 2009-06-09 2011-10-12 木村工機株式会社 Pneumatic radiant laminar flow unit

Cited By (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2012007766A (en) * 2010-06-23 2012-01-12 Kimura Kohki Co Ltd Air conditioning device of air/heat-source heat pump type
JP2012026611A (en) * 2010-07-21 2012-02-09 Kimura Kohki Co Ltd Variable air quantity blowing device
JP2013092330A (en) * 2011-10-27 2013-05-16 Sakura Prolink:Kk Air heat exchange system and air heat exchanger using the system
JP2013096647A (en) * 2011-11-01 2013-05-20 Sakura Prolink:Kk Air heat exchanger with built-in cooling and heating coil
JP2014084107A (en) * 2012-10-23 2014-05-12 Visteon Global Technologies Inc Belt-like ventilation system for vehicle
JP2015117928A (en) * 2014-02-07 2015-06-25 輝明 村上 Windless air-conditioning method in building for playing badminton or table tennis and apparatus used for the same
CN105627439A (en) * 2016-02-15 2016-06-01 深圳倍真科技有限公司 Ceiling transmission-type cold and hot radiation air conditioner

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