JP2010210131A - Air conditioner - Google Patents

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JP2010210131A
JP2010210131A JP2009055849A JP2009055849A JP2010210131A JP 2010210131 A JP2010210131 A JP 2010210131A JP 2009055849 A JP2009055849 A JP 2009055849A JP 2009055849 A JP2009055849 A JP 2009055849A JP 2010210131 A JP2010210131 A JP 2010210131A
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air
room temperature
suction
temperature sensor
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Shingo Nishioka
真吾 西岡
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Fujitsu General Ltd
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Fujitsu General Ltd
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<P>PROBLEM TO BE SOLVED: To provide a ceiling-embedded air conditioner equipped with an outside air taking-in device capable of correctly detecting room temperature without being affected by outside air temperature. <P>SOLUTION: The air conditioner is composed of a body 1 equipped with a blower 4 and a heat exchanger 5 at an air passage connecting an air suction part 2 and an air blowout part 3, a decorative panel 9 equipped with a suction port 7 and a plurality of blowout ports 8 corresponding to the body 1, a take-in port 10 provided between the body 1 and the decorative panel 9 for taking in the outside air, an air suction passage 13a for guiding the taken outside air and sucked air to the air suction part 2, a spacer 13 for taking in the outside air equipped with an air blowout passage 13b which communicates the air blowout part 3 and the blowout ports 8, an electrical equipment part 11 provided for the body 1 or the spacer 13, and a first room temperature sensor 12'. A second room temperature sensor 12 is installed below the take-in port 10 provided for the spacer 13 and on a suction side of the air suction passage 13a to be switched to the first room temperature sensor 12'. <P>COPYRIGHT: (C)2010,JPO&INPIT

Description

本発明は、外気取込装置を備えた天井埋込型の空気調和機に関する。   The present invention relates to a ceiling-embedded air conditioner equipped with an outside air intake device.

従来の天井埋込型の空気調和機は、図1に示すc部のように、室内空気を吸い込むための空気吸込部2をなすベルマウス14の側方に設けられた電装品箱11や、または図3に示すように、ベルマウス14の内側には、室温を検出するための第一の室温センサ12’が搭載されており、この第一の室温センサ12’で検出した温度に基づいて空気調和するようにしている。   A conventional ceiling-embedded air conditioner includes an electrical component box 11 provided on the side of a bell mouth 14 that forms an air suction part 2 for sucking room air, as shown in part c of FIG. Alternatively, as shown in FIG. 3, a first room temperature sensor 12 ′ for detecting the room temperature is mounted inside the bell mouth 14, and based on the temperature detected by the first room temperature sensor 12 ′. I try to harmonize with the air.

なお、図1は天井埋込型の空気調和機を吸込グリルやエアフィルタを取り外して下方から見た図であり、図3は図1に示すA−A断面図である。   1 is a view of a ceiling-embedded air conditioner as viewed from below with the suction grill and air filter removed, and FIG. 3 is a cross-sectional view taken along line AA shown in FIG.

天井埋込型の空気調和機には、近年、吸込口7から室内空気を吸い込むとともに、ダクトDを接続して外気を取り込み、吸い込んだ室内空気と取り込んだ外気とを混合して熱交換器5で熱交換し、吹出口8から室内に吹き出して空気調和を行うようにしたものがある。   In recent years, the ceiling-embedded air conditioner sucks room air from the suction port 7 and connects the duct D to take in outside air, mixes the sucked room air and the taken outside air, and heat exchanger 5 The air is conditioned by air exchange from the air outlet 8 and blown out into the room.

ダクトDは、例えば、空気調和機の本体1を構成する外胴に接続されることによって外気を本体1内に導入する構成でなるものがあり、この場合、吸込口7から吸い込まれた室内空気と外気とが充分に混じりにくいという問題があった。   For example, the duct D is configured to introduce outside air into the main body 1 by being connected to the outer body constituting the main body 1 of the air conditioner. In this case, the room air sucked from the suction port 7 is used. There was a problem that it was difficult to mix well with the outside air.

または、ダクトDは、例えば、空気調和機の本体1と化粧パネル9との間に設けられたオプションキットである外気取込装置(スペーサ)13に接続されることによって外気を本体1内に導入する構成でなるものがあり、この場合、外気取込装置(スペーサ)13を設けることができるだけの天井フトコロの深さが必要となっているが、吸込口7から吸い込んだ室内空気と、ダクトDから取り込んだ外気とを混合しやすいことから、本体1と、外気取込装置(スペーサ)13と、化粧パネル9とからなるこのタイプのものが多く使用されている。   Alternatively, the duct D is introduced into the main body 1 by being connected to, for example, an external air intake device (spacer) 13 which is an option kit provided between the main body 1 of the air conditioner and the decorative panel 9. In this case, the depth of the ceiling roller that can provide the outside air intake device (spacer) 13 is required, but the room air sucked from the suction port 7 and the duct D Since it is easy to mix the outside air taken in from the main body 1, this type of body comprising the main body 1, the outside air taking-in device (spacer) 13, and the decorative panel 9 is often used.

しかしながら、吸込口7から吸い込んだ室内空気と、ダクトDから取り込んだ外気とが混合することから、ベルマウス14の内側や電装品箱11に搭載されている第一の室温センサ12’が、外気と混合していない室温を正確に検出することができにくくなり、したがって、この第一の室温センサ12’で検出した温度に基づいて室温を快適に空気調和することが困難になっていた。   However, since the room air sucked from the suction port 7 and the outside air taken in from the duct D are mixed, the first room temperature sensor 12 ′ mounted inside the bell mouth 14 or the electrical component box 11 is used as the outside air. Therefore, it is difficult to accurately detect the room temperature that is not mixed with the first room temperature sensor 12 ′. Therefore, it is difficult to comfortably air-condition the room temperature based on the temperature detected by the first room temperature sensor 12 ′.

また、室温を正確に検出できるように、図示はしないが、例えば第一の室温センサ12’を化粧パネル9に設けたような場合には、吸込口7から吸い込んだ室内空気に、ダクトDから取り込んだ外気が混じらない構成になる一方、化粧パネル9の開閉時に、第一の室温センサ12’に配線が引き廻されているため開閉しにくくなったり、配線長が長くなってしまうという問題点を有していた。   Further, although not shown so that the room temperature can be accurately detected, for example, when the first room temperature sensor 12 ′ is provided on the decorative panel 9, the indoor air sucked from the suction port 7 is supplied from the duct D to the room air. On the other hand, when the decorative panel 9 is opened and closed, the wiring is routed to the first room temperature sensor 12 ', which makes it difficult to open and close, and the wiring length becomes long. Had.

または、正確な室温が検出できるように構成したものとして、図4に示すように、室内の壁面aに取り付けられる遠隔制御器bに室内空気を取り入れる導入室cを設けて、この導入室c内に室内空気の温度および/または湿度を検出する検出素子dを収納するとともに、この導入室c内の室内空気を空気調和機eに導く吸気ダクトfを室内の壁面aに埋め込んだことを特徴とするものがあった(例えば、実開昭63ー101740号公報)。   Alternatively, as shown in FIG. 4, an introduction room c for taking in indoor air is provided in a remote controller b attached to the indoor wall surface a as shown in FIG. And a detection element d for detecting the temperature and / or humidity of the room air, and an air intake duct f for guiding the room air in the introduction room c to the air conditioner e is embedded in the wall surface a of the room. (For example, Japanese Utility Model Publication No. 63-101740).

しかしながら、このように、導入室c内に取り入れた室内空気を空気調和機eに導く吸気ダクトfを室内の壁面aに埋め込む場合、作業が大掛かりになって、コスト高になってしまうという問題点を有していた。   However, in this way, when the intake duct f for guiding the room air taken into the introduction chamber c to the air conditioner e is embedded in the wall surface a in the room, the work becomes large and the cost is increased. Had.

実開昭63ー101740号公報Japanese Utility Model Publication No. 63-101740

そこで、本発明は上述した課題を解決するためになされたものであって、その目的は、外気取込装置を備えて、外気温に影響されずに室温を正確に検出できるようにした天井埋込型の空気調和機を提供することにある。   Accordingly, the present invention has been made to solve the above-described problems, and an object of the present invention is to provide a ceiling-buried device equipped with an outside air intake device so that the room temperature can be accurately detected without being affected by the outside air temperature. It is to provide a built-in air conditioner.

上述した目的を達成できるように構成するため、本発明は以下に示す特徴を備えている。   In order to achieve the above-described object, the present invention has the following features.

下部中央にベルマウスからなる空気吸込部を、同空気吸込部の外側に複数の空気吹出部を夫々備え、これら空気吸込部と空気吹出部とを結ぶ空気通路に送風機と熱交換器とを備えた本体と、前記空気吸込部に対応する吸込口と、前記空気吹出部に対応する複数の吹出口とを備えた化粧パネルと、前記本体と前記化粧パネルとの間に設けられ、ダクトを接続して外気を取り込む取込口と、同取込口から取り込んだ外気と前記吸込口から吸い込んだ空気とを前記空気吸込部に導く空気吸込路と、前記空気吹出部と前記吹出口とを連通する空気吹出路とを備えた外気取込用のスペーサと、前記本体または前記スペーサに備えた電装部および第一の室温センサとからなり、
前記スペーサに備えた取込口よりも下位部であって前記空気吸込路の吸込側に、前記第一の室温センサと切替え可能に第二の室温センサが設けられてなることを特徴としている。
An air suction part consisting of a bell mouth is provided at the center of the lower part, a plurality of air blowing parts are provided outside the air suction part, and a blower and a heat exchanger are provided in an air passage connecting the air suction part and the air blowing part. A decorative panel provided with a main body, a suction port corresponding to the air suction portion, and a plurality of air outlets corresponding to the air blowing portion; and a duct connected between the main body and the decorative panel. The intake port for taking in the outside air, the air suction path for guiding the outside air taken in from the intake port and the air sucked in from the suction port to the air suction portion, and the air outlet portion and the outlet port in communication with each other Comprising a spacer for taking in outside air having an air blowing path, an electrical component provided in the main body or the spacer, and a first room temperature sensor,
A second room temperature sensor is provided below the intake port provided in the spacer and on the suction side of the air suction path so as to be switchable with the first room temperature sensor.

また、下部中央にベルマウスからなる空気吸込部を、同空気吸込部の外側に複数の空気吹出部を夫々備え、これら空気吸込部と空気吹出部とを結ぶ空気通路に送風機と熱交換器とを備えた本体と、前記空気吸込部に対応する吸込口と、前記空気吹出部に対応する複数の吹出口とを備えた化粧パネルと、前記本体と前記化粧パネルとの間に設けられ、ダクトを接続して外気を取り込む取込口と、同取込口から取り込んだ外気と前記吸込口から吸い込んだ空気とを前記空気吸込部に導く空気吸込路と、前記空気吹出部と前記吹出口とを連通する空気吹出路とを備えた外気取込用のスペーサと、前記本体または前記スペーサに備えた電装部および第一の室温センサとからなり、
前記スペーサに備えた取込口よりも下位部であって前記空気吸込路の吸込側に、前記第一の室温センサに替えて第二の室温センサが設けられてなることを特徴としている。
In addition, an air suction portion made of a bell mouth is provided at the lower center, and a plurality of air blowing portions are provided outside the air suction portion, respectively, and a blower and a heat exchanger are connected to an air passage connecting the air suction portion and the air blowing portion. A decorative panel provided with a main body provided with a suction port corresponding to the air suction portion, and a plurality of air outlets corresponding to the air blowing portion, and a duct provided between the main body and the decorative panel. An intake port that takes in outside air by connecting the air, an air intake path that guides outside air taken in from the intake port and air sucked in from the intake port to the air suction portion, the air outlet portion, and the outlet port Comprising a spacer for taking in outside air having an air blowing path communicating with the main body or the electrical equipment provided in the spacer and the first room temperature sensor,
A second room temperature sensor is provided in place of the first room temperature sensor on the suction side of the air suction path, which is lower than the intake port provided in the spacer.

前記ベルマウスの側方に前記電装部が設けられ、同電装部に対向して前記第二の室温センサが設けられるとともに、同第二の室温センサの側方に前記取込口が設けられてなることを特徴としている。   The electric part is provided on the side of the bell mouth, the second room temperature sensor is provided to face the electric part, and the intake port is provided on the side of the second room temperature sensor. It is characterized by becoming.

また、前記第二の室温センサに前記外気が当たりにくくする遮風体が設けられてなることを特徴としている。   In addition, the second room temperature sensor is provided with a wind shield that makes it difficult for the outside air to hit.

本発明によれば、外気取込装置を備えて、外気温に影響されずに室温を正確に検出できるようにした天井埋込型の空気調和機を提供できる。   According to the present invention, it is possible to provide a ceiling-embedded air conditioner that includes an outside air intake device and that can accurately detect room temperature without being affected by outside air temperature.

本発明による天井埋込型の空気調和機を、吸込グリルやエアフィルタを取り外して下方から見た矢視図である。It is the arrow directional view which removed the suction grille and the air filter from the ceiling embedded type air conditioner by this invention, and was seen from the downward direction. 図1に示すa部の拡大図である。It is an enlarged view of the part a shown in FIG. 本発明による天井埋込型の空気調和機の断面図である。1 is a cross-sectional view of a ceiling-embedded air conditioner according to the present invention. 従来例による天井埋込型の空気調和機の断面図である。It is sectional drawing of the ceiling embedded type air conditioner by a prior art example.

以下、本発明を実施するための形態を、添付図面に基づいた実施例として詳細に説明する。   EMBODIMENT OF THE INVENTION Hereinafter, the form for implementing this invention is demonstrated in detail as an Example based on an accompanying drawing.

本発明による天井埋込型の空気調和機は、実施例1として図1乃至図3に示すように、空気調和機の本体1の下部中央にベルマウス14からなる空気吸込部2が設けられ、空気吸込部2の外側に空気吹出部3が設けられ、これら空気吸込部2と空気吹出部3とを結ぶ空気通路には、ベルマウス14を臨ませた送風ファンおよびファンモータからなる送風機4と、下部にドレンパン6を備えた熱交換器5とが設けられている。   The ceiling-embedded air conditioner according to the present invention, as shown in FIGS. 1 to 3 as Example 1, is provided with an air suction portion 2 composed of a bell mouth 14 in the lower center of the main body 1 of the air conditioner. An air blowing section 3 is provided outside the air suction section 2, and a blower 4 including a blower fan and a fan motor facing the bell mouth 14 is provided in an air passage connecting the air suction section 2 and the air blowing section 3. A heat exchanger 5 having a drain pan 6 at the lower part is provided.

本体1の下部には、ダクトDにより、下部中央の空気吸込部2に向けて外気を取り込めるように構成したスペーサ13が設けられている。   At the lower part of the main body 1, a spacer 13 configured to take in outside air toward the air suction part 2 at the center of the lower part by a duct D is provided.

スペーサ13は、本体1に備えた空気吸込部2に連通する空気吸込路13aと、本体1に備えた空気吹出部3に連通する空気吹出路13bとを備えており、これら空気吸込路13aと空気吹出路13bとは夫々が上下に貫通した構成になっている。   The spacer 13 includes an air suction path 13a communicating with the air suction section 2 provided in the main body 1, and an air blowing path 13b communicating with the air blowing section 3 provided in the main body 1. The air suction path 13a Each of the air blowing paths 13b is configured to penetrate vertically.

スペーサ13の下部には、本体1の下部中央に備えた空気吸込部2と、スペーサ13に備えた空気吸込路13aとに連通する吸込口7を有するとともに、空気吸込部2の外側に備えた空気吹出部3と、スペーサ13に備えた空気吹出路13bとに連通する吹出口8を有する化粧パネル9が設けられており、図3に示すように、本体1と、スペーサ13と、化粧パネル9とで天井埋込型の空気調和機が構成されている。   In the lower part of the spacer 13, the air suction part 7 provided in the center of the lower part of the main body 1 and the air suction path 13 a provided in the spacer 13 are provided, and provided outside the air suction part 2. A decorative panel 9 having an air outlet 8 communicating with an air outlet 3 and an air outlet 13b provided in the spacer 13 is provided. As shown in FIG. 3, the main body 1, the spacer 13, and the decorative panel are provided. 9 is a ceiling-embedded air conditioner.

これにより、図3に示す矢印aのように送風機4によって吸込口7から吸い込まれた室内空気と、図1乃至図3に示す矢印bのようにダクトDにより取り込まれた外気とが、スペーサ13に備えた空気吸込路13aから送風機4を経て熱交換器5に送出され熱交換されて、スペーサ13に備えた空気吹出路13bを経て化粧パネル9に備えた吹出口8に送出され、吸込口7から吸い込まれた室内空気と、フレッシュエアとして取り込まれた外気とが混合したのち熱交換された調和空気として、吹出口8から室内に吹き出されることになる。   Accordingly, the indoor air sucked from the suction port 7 by the blower 4 as indicated by an arrow a shown in FIG. 3 and the outside air taken in by the duct D as indicated by an arrow b shown in FIGS. From the air suction passage 13a provided to the heat exchanger 5 through the blower 4 and sent to the heat exchanger 5 for heat exchange. The room air sucked from 7 and the outside air taken in as fresh air are mixed and then blown into the room from the outlet 8 as conditioned air subjected to heat exchange.

空気吸込部2をなすベルマウス14の内側には、例えば、図3に示すように第一の室温センサ12’が搭載されるとともに、ベルマウス14の一側方には電装部11が設けられている。   For example, as shown in FIG. 3, a first room temperature sensor 12 ′ is mounted on the inner side of the bell mouth 14 forming the air suction portion 2, and an electrical component 11 is provided on one side of the bell mouth 14. ing.

ベルマウス14の下部にはスペーサ13が設けられており、図1および図3に示すように、ベルマウス14の一側方に設けた電装部11に対向しているベルマウス14の他側方の下位部であって、スペーサ13に備えた室内空気を吸い込む空気吸込路13aの吸込側の側壁には、第二の室温センサ12が設けられている。   A spacer 13 is provided at the lower part of the bell mouth 14, and as shown in FIGS. 1 and 3, the other side of the bell mouth 14 facing the electrical component 11 provided on one side of the bell mouth 14. The second room temperature sensor 12 is provided on the side wall on the suction side of the air suction path 13a for sucking room air provided in the spacer 13.

第二の室温センサ12の両側方となるスペーサ13のコーナ部近傍であって、第二の室温センサ12よりも送風機4に近い位置となる第二の室温センサ12の上位部には、外気を取り込むためのダクトDが接続される取込口10が設けられている。   In the vicinity of the corners of the spacer 13 on both sides of the second room temperature sensor 12 and outside the second room temperature sensor 12, which is closer to the blower 4 than the second room temperature sensor 12, outside air is passed. An intake port 10 to which a duct D for taking in is connected is provided.

これにより、第二の室温センサ12は、送風機4によってダクトDから取り込まれた外気(の流れ)が直接には触れにくい位置に設けられた構成になるので、吸込口7から吸い込まれた室内空気と、ダクトDから取り込まれた外気とに温度差があったとしても、この温度差を有する外気の影響を受けることなく室温を検出できるようになる。   Thereby, since the 2nd room temperature sensor 12 becomes a structure provided in the position where the external air (flow) taken in from the duct D by the air blower 4 is difficult to touch directly, the room air sucked in from the suction inlet 7 Even if there is a temperature difference between the outside air taken in from the duct D, the room temperature can be detected without being affected by the outside air having this temperature difference.

なお、ベルマウス14の内側には、検出した室温に基づいて空気調和するために第一の室温センサ12’が搭載されているが、取り込んだ外気と混じる室内空気の温度を正確に検出できるようにするため、第二の室温センサ12が、スペーサ13に第一の室温センサ12’と切替え可能に、もしくは第一の室温センサ12’に替えて設けられている。   A first room temperature sensor 12 'is mounted inside the bell mouth 14 to harmonize the air based on the detected room temperature. However, the temperature of the room air mixed with the taken outside air can be accurately detected. Therefore, the second room temperature sensor 12 is provided in the spacer 13 so as to be switchable to the first room temperature sensor 12 ′ or in place of the first room temperature sensor 12 ′.

第一の室温センサ12’と切替え可能に設けられた第二の室温センサ12は、第一の室温センサ12’を残したままで、例えば、本体1と化粧パネル9との間に、オプション部品としてスペーサ13を設けてダクトDを接続するような場合、配線を切り替える形でスペーサ13に第二の室温センサ12を設けている。   The second room temperature sensor 12 provided so as to be switchable with the first room temperature sensor 12 ′ is an optional component, for example, between the main body 1 and the decorative panel 9 while leaving the first room temperature sensor 12 ′. When the spacer 13 is provided and the duct D is connected, the second room temperature sensor 12 is provided on the spacer 13 by switching the wiring.

この場合、第一の室温センサ12’に接続されている配線を取り外して、第二の室温センサ12に接続することで物理的に切替えられるように構成してもよいし、または、第一の室温センサ12’に接続されている配線(通電)がOFFになり、第二の室温センサ12に接続されている配線(通電)がONになるように電気的に切替えられる構成にしてもよい。   In this case, the wiring connected to the first room temperature sensor 12 ′ may be removed and connected to the second room temperature sensor 12 so as to be physically switched. The wiring (energization) connected to the room temperature sensor 12 ′ may be turned off, and the wiring (energization) connected to the second room temperature sensor 12 may be electrically switched.

なお、第一の室温センサ12’と、第二の室温センサ12とを電気的に切替え可能にした場合、例えば、第一の室温センサ12’の配線(通電)をONにして、ダクトDにより空気吸込路13aに取り込まれた外気と、吸込口7から空気吸込路13aに吸い込まれた室内空気とが混合した空気の温度を検出できるようにしてもよく、または、第二の室温センサ12の配線(通電)をONにして、空気吸込路13aに吸い込まれた室内空気の温度を検出できるようにしてもよい。   When the first room temperature sensor 12 ′ and the second room temperature sensor 12 can be electrically switched, for example, the wiring (energization) of the first room temperature sensor 12 ′ is turned ON and the duct D is used. You may enable it to detect the temperature of the air which the outside air taken in into the air suction path 13a and the room air sucked into the air suction path 13a from the suction inlet 7 are mixed, or the second room temperature sensor 12 The wiring (energization) may be turned on so that the temperature of the indoor air sucked into the air suction passage 13a can be detected.

室内を目標温度に空気調和する際、第二の室温センサ12で検出した室温に基づいて図示しない圧縮機や送風機4が図示しない制御部で制御されるが、その際、実際には外気と室内空気との混合空気が熱交換器5で熱交換される構成であることから、外気と室内空気とが混合した空気の温度を第一の室温センサ12’で検出して、図示しない圧縮機や送風機4を図示しない制御部で制御することにより最適な熱交換が行え、目標温度に対する室温を第二の室温センサ12で管理しているので最適な制御が行えるようになる。   When the room is air-conditioned to the target temperature, the compressor and the blower 4 (not shown) are controlled by a control unit (not shown) based on the room temperature detected by the second room temperature sensor 12. Since the mixed air with the air is configured to exchange heat with the heat exchanger 5, the temperature of the air mixed with the outside air and the room air is detected by the first room temperature sensor 12 ′, and a compressor (not shown) Optimal heat exchange can be performed by controlling the blower 4 by a control unit (not shown), and since the room temperature with respect to the target temperature is managed by the second room temperature sensor 12, optimal control can be performed.

また、図1に示すa部のように第二の室温センサ12を設ける代わりに、第一の室温センサ12’を取り外して、この取り外した第一の室温センサ12’を図1のa部に示すスペーサ13に設けるようにしてもよいし、または、第一の室温センサ12’を取り外したままの状態で、新たに、図1のa部に示すスペーサ13に室温を検出する専用のセンサとして第二の室温センサ12を設けるようにしてもよい。   Further, instead of providing the second room temperature sensor 12 as shown in part a of FIG. 1, the first room temperature sensor 12 ′ is removed, and the removed first room temperature sensor 12 ′ is replaced with part a of FIG. As a dedicated sensor for detecting the room temperature in the spacer 13 shown in part a of FIG. 1 with the first room temperature sensor 12 ′ removed, the spacer 13 may be provided. A second room temperature sensor 12 may be provided.

スペーサ13に設けられた第二の室温センサ12は、図3に示すように、スペーサ13に備えた外気取込用の取込口10よりも下位部であって、室内空気が吸い込まれる空気吸込路13aの吸込側の側壁に配置されている。   As shown in FIG. 3, the second room temperature sensor 12 provided in the spacer 13 is a lower part than the intake port 10 for taking in outside air provided in the spacer 13. It arrange | positions at the side wall by the side of the suction | inhalation of the path | route 13a.

このため、送風機4によって、吸込口7から室内空気が吸い込まれ、取込口10から外気が取り込まれた際、送風機4に対し、第二の室温センサ12よりも取込口10が近距離に配置された構成になるので、第二の室温センサ12が、取込口10から取り込まれた外気の温度を検出してしまう恐れはない。   For this reason, when the indoor air is sucked in from the suction port 7 by the blower 4 and the outside air is taken in from the intake port 10, the intake port 10 is closer to the blower 4 than the second room temperature sensor 12. Since it becomes the arrangement | positioning structure, there is no possibility that the 2nd room temperature sensor 12 may detect the temperature of the external air taken in from the intake port 10. FIG.

これにより、第二の室温センサ12が室温を正確に検出できるので、外気温の影響を受けるということがなく、外気温が室内の空気調和に悪影響を及ぼしてしまうということがなくなる。   Thereby, since the 2nd room temperature sensor 12 can detect room temperature correctly, it does not receive to the influence of outside temperature, and it does not have that an outside temperature exerts a bad influence on indoor air conditioning.

また、第二の室温センサ12が、スペーサ13に備えた空気吸込路13aの吸込側に設けられていることから、例えば、開閉可能な化粧パネル9に設けられたような場合に較べて配線長を短くできる。   Further, since the second room temperature sensor 12 is provided on the suction side of the air suction path 13a provided in the spacer 13, for example, the wiring length is longer than that provided in the decorative panel 9 that can be opened and closed. Can be shortened.

また、第二の室温センサ12は、図1および図2に示すように、取込口10から取り込まれた外気の一部が直接に当たりにくくするための遮風体12aが設けられた構成になっている。   As shown in FIGS. 1 and 2, the second room temperature sensor 12 has a configuration in which a wind shield 12 a is provided to make it difficult for a part of the outside air taken in from the intake 10 to directly hit. Yes.

第二の室温センサ12に外気が当たりにくくする遮風体12aを設けたことで、図1および図2に示す矢印bのように取込口10から取り込まれた外気流の一部が、第二の室温センサ12に直接に触れてしまわないように遮風できる構成になる。   By providing the wind shield 12a that makes it difficult for outside air to hit the second room temperature sensor 12, a part of the outside airflow taken in from the intake 10 as indicated by the arrow b shown in FIGS. The room temperature sensor 12 can be shielded from being touched directly.

以上説明したように、本発明による構成であれば、送風機4によってダクトDから取り込まれた外気(の流れ)が、空気吸込路13aの吸込側の側壁に設けられた第二の室温センサ12に直接触れてしまう恐れがないので、吸込口7から吸い込まれた室内空気の温度(室温)を第二の室温センサ12で正確に検出できるようになる。   As described above, with the configuration according to the present invention, the outside air taken in from the duct D by the blower 4 is transferred to the second room temperature sensor 12 provided on the side wall on the suction side of the air suction path 13a. Since there is no fear of direct contact, the temperature (room temperature) of the indoor air sucked from the suction port 7 can be accurately detected by the second room temperature sensor 12.

そのため、外気温に影響されることなく室温を正確に検出できるので、正確に検出した室温に基づいて、室内の快適な空気調和を実現できるようにした天井埋込型の空気調和機を提供できる。   Therefore, since the room temperature can be accurately detected without being affected by the outside air temperature, it is possible to provide a ceiling-embedded air conditioner that can realize comfortable indoor air conditioning based on the accurately detected room temperature. .

1 空気調和機の本体
2 空気吸込部
3 空気吹出部
4 送風機
5 熱交換器
6 ドレンパン
7 吸込口
8 吹出口
9 化粧パネル
D ダクト
10 取込口
11 電装部
12 第二の室温センサ
12’ 第一の室温センサ
12a 遮風体
13 スペーサ
13a 空気吸込路
13b 空気吹出路
14 ベルマウス
DESCRIPTION OF SYMBOLS 1 Body of air conditioner 2 Air suction part 3 Air blowing part 4 Blower 5 Heat exchanger 6 Drain pan 7 Suction port 8 Air outlet 9 Cosmetic panel D Duct 10 Intake port 11 Electrical part 12 2nd room temperature sensor 12 '1st Room temperature sensor 12a Wind shield 13 Spacer 13a Air suction path 13b Air outlet path 14 Bell mouth

Claims (4)

下部中央にベルマウスからなる空気吸込部を、同空気吸込部の外側に複数の空気吹出部を夫々備え、これら空気吸込部と空気吹出部とを結ぶ空気通路に送風機と熱交換器とを備えた本体と、前記空気吸込部に対応する吸込口と、前記空気吹出部に対応する複数の吹出口とを備えた化粧パネルと、前記本体と前記化粧パネルとの間に設けられ、ダクトを接続して外気を取り込む取込口と、同取込口から取り込んだ外気と前記吸込口から吸い込んだ空気とを前記空気吸込部に導く空気吸込路と、前記空気吹出部と前記吹出口とを連通する空気吹出路とを備えた外気取込用のスペーサと、前記本体または前記スペーサに備えた電装部および第一の室温センサとからなり、
前記スペーサに備えた取込口よりも下位部であって前記空気吸込路の吸込側に、前記第一の室温センサと切替え可能に第二の室温センサが設けられてなることを特徴とする天井埋込型の空気調和機。
An air suction part consisting of a bell mouth is provided at the center of the lower part, a plurality of air blowing parts are provided outside the air suction part, and a blower and a heat exchanger are provided in an air passage connecting the air suction part and the air blowing part. A decorative panel provided with a main body, a suction port corresponding to the air suction portion, and a plurality of air outlets corresponding to the air blowing portion; and a duct connected between the main body and the decorative panel. The intake port for taking in the outside air, the air suction path for guiding the outside air taken in from the intake port and the air sucked in from the suction port to the air suction portion, and the air outlet portion and the outlet port in communication with each other Comprising a spacer for taking in outside air having an air blowing path, an electrical component provided in the main body or the spacer, and a first room temperature sensor,
The ceiling is characterized in that a second room temperature sensor is provided on the suction side of the air suction passage so as to be switchable with the first room temperature sensor, lower than the intake port provided in the spacer. Embedded air conditioner.
下部中央にベルマウスからなる空気吸込部を、同空気吸込部の外側に複数の空気吹出部を夫々備え、これら空気吸込部と空気吹出部とを結ぶ空気通路に送風機と熱交換器とを備えた本体と、前記空気吸込部に対応する吸込口と、前記空気吹出部に対応する複数の吹出口とを備えた化粧パネルと、前記本体と前記化粧パネルとの間に設けられ、ダクトを接続して外気を取り込む取込口と、同取込口から取り込んだ外気と前記吸込口から吸い込んだ空気とを前記空気吸込部に導く空気吸込路と、前記空気吹出部と前記吹出口とを連通する空気吹出路とを備えた外気取込用のスペーサと、前記本体または前記スペーサに備えた電装部および第一の室温センサとからなり、
前記スペーサに備えた取込口よりも下位部であって前記空気吸込路の吸込側に、前記第一の室温センサに替えて第二の室温センサが設けられてなることを特徴とする天井埋込型の空気調和機。
An air suction part consisting of a bell mouth is provided at the center of the lower part, a plurality of air blowing parts are provided outside the air suction part, and a blower and a heat exchanger are provided in an air passage connecting the air suction part and the air blowing part. A decorative panel provided with a main body, a suction port corresponding to the air suction portion, and a plurality of air outlets corresponding to the air blowing portion; and a duct connected between the main body and the decorative panel. The intake port for taking in the outside air, the air suction path for guiding the outside air taken in from the intake port and the air sucked in from the suction port to the air suction portion, and the air outlet portion and the outlet port in communication with each other Comprising a spacer for taking in outside air having an air blowing path, an electrical component provided in the main body or the spacer, and a first room temperature sensor,
A ceiling-embedded structure characterized in that a second room temperature sensor is provided in place of the first room temperature sensor on the suction side of the air suction path, which is lower than the intake port provided in the spacer. Built-in air conditioner.
前記ベルマウスの側方に前記電装部が設けられ、同電装部に対向して前記第二の室温センサが設けられるとともに、同第二の室温センサの側方に前記取込口が設けられてなることを特徴とする請求項1または請求項2に天井埋込型の空気調和機。   The electric part is provided on the side of the bell mouth, the second room temperature sensor is provided to face the electric part, and the intake port is provided on the side of the second room temperature sensor. The ceiling-embedded air conditioner according to claim 1 or 2, wherein the air conditioner is embedded in a ceiling. 前記第二の室温センサに前記外気が当たりにくくする遮風体が設けられてなることを特徴とする請求項1乃至請求項3の何れかに記載の天井埋込型の空気調和機。   The ceiling-embedded air conditioner according to any one of claims 1 to 3, wherein a wind shield that prevents the outside air from coming into contact with the second room temperature sensor is provided.
JP2009055849A 2009-03-10 2009-03-10 Air conditioner Pending JP2010210131A (en)

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JP2022050948A (en) * 2020-09-18 2022-03-31 ダイキン工業株式会社 Air conditioning ventilation system

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CN107842964A (en) * 2017-10-25 2018-03-27 北京百度网讯科技有限公司 Cooling system for data center
JP2022050948A (en) * 2020-09-18 2022-03-31 ダイキン工業株式会社 Air conditioning ventilation system
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