JPH0252939A - Radiant air-conditioning apparatus - Google Patents

Radiant air-conditioning apparatus

Info

Publication number
JPH0252939A
JPH0252939A JP20241788A JP20241788A JPH0252939A JP H0252939 A JPH0252939 A JP H0252939A JP 20241788 A JP20241788 A JP 20241788A JP 20241788 A JP20241788 A JP 20241788A JP H0252939 A JPH0252939 A JP H0252939A
Authority
JP
Japan
Prior art keywords
air
space
air conditioner
radiant
air conditioning
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
JP20241788A
Other languages
Japanese (ja)
Inventor
Koji Morioka
森岡 宏次
Masanobu Saito
正信 斎藤
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Taikisha Ltd
Original Assignee
Taikisha Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Taikisha Ltd filed Critical Taikisha Ltd
Priority to JP20241788A priority Critical patent/JPH0252939A/en
Publication of JPH0252939A publication Critical patent/JPH0252939A/en
Pending legal-status Critical Current

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Abstract

PURPOSE:To eliminate waste of air-conditioning expenses by dividing the back space into a plurality of spaces each separated by a partition from each adjacent space and by providing an air conditioner or air conditioners in a layout to permit the air-conditioning temperature in each space to be set and changed independent of the other spaces and stop the air-conditioning, when the radiant air conditioning becomes partially unnecessary in the air-conditioned space, through the space which is at the back of the part not requiring air conditioning. CONSTITUTION:Each of a plurality of spaces 3 is connected either to a separate air conditioner A by a duct 29 or jointly in parallel to one unit of air conditioner A by a duct 29 each space with a flow-adjusting means 30 which permits the supply of conditioned air to each space 3 to be changed and controlled separately from the others. In separating the space at the back of radiant heat transferring devices 2 into a plurality of spaces 3, the number of the separated spaces 3, their shapes, dimensions, locations, and the like are set according to such aspects of the air-conditioned space 1 as the distribution of the air conditioning load and its changes.

Description

【発明の詳細な説明】 〔産業上の利用分野〕 本発明は、空調対象域の天井、側壁、床の少なくとも一
部を板状の放射伝熱体で形成し、その放射伝熱体の背部
空間内の空気を加熱又は冷却する空調器を設けた放射式
空調装置に関する。
[Detailed Description of the Invention] [Industrial Application Field] The present invention is directed to forming at least part of the ceiling, side walls, and floor of an air-conditioned area with a plate-shaped radiant heat transfer body, and The present invention relates to a radiant air conditioner equipped with an air conditioner that heats or cools air in a space.

〔従来の技術〕[Conventional technology]

従来、第6図に示すように、天井を形成する放射伝熱体
(2)の背部空間(31)を、−室構造に形成して、空
調器(A)で背部空間(31)内の空気を加熱又は冷却
し、その加熱又は冷却された空気により放射伝熱体(2
)の全体をほぼ一定温度に加熱又は冷却するように構成
していた。
Conventionally, as shown in Fig. 6, the back space (31) of the radiant heat transfer body (2) forming the ceiling is formed into a -chamber structure, and the back space (31) is heated by an air conditioner (A). Air is heated or cooled, and the heated or cooled air causes a radiant heat transfer body (2
) was configured to be heated or cooled to a substantially constant temperature.

〔発明が解決しようとする課題〕[Problem to be solved by the invention]

しかし、同一の放射伝熱体(2)に臨む空調対象域(1
)において部分によって空調負荷が相違する場合、放射
伝熱体(2)の全体がほぼ一定であると、部分によって
は熱く感じたりあるいは寒く感じたりし、−層の改良の
余地があった。
However, the air conditioning target area (1) facing the same radiant heat transfer body (2)
), when the air conditioning load differs depending on the part, if the entire radiant heat transfer body (2) is almost constant, some parts will feel hot or cold, and there is room for improvement in the - layer.

さらに説明すると、例えば外部との熱の出入りが大きい
外壁に近いペリメータゾーンと、外壁から離れて外部と
の熱の出入りが小さいインテリアゾーンとでは、空調負
荷が大巾に相違するため、暖房時にペリメータゾーンが
熱く感じられたり、インテリアゾーンが寒く感じられた
りし、また、冷房時にペリメータゾーンが寒く感じられ
たり、インテリアゾーンが熱く感じられたりし、空調対
象域(1)全体で快適な暖房感あるいは冷房感を実感さ
せることができなかった。
To explain further, for example, the air conditioning load is vastly different between the perimeter zone near the exterior wall, where there is a large amount of heat exchanged with the outside, and the interior zone, which is far from the exterior wall and where the amount of heat exchanged with the exterior is small. The zone may feel hot, the interior zone may feel cold, and during cooling, the perimeter zone may feel cold or the interior zone may feel hot, resulting in a comfortable heating feeling or I couldn't feel the cooling sensation.

さらに、空調対象域(1)の一部又は大部分が放射空調
不要になった場合でも、空調対象域(1)全体に対する
放射空調を継続しなければならず、空調経費の無駄が大
きい。
Furthermore, even if a part or most of the air conditioning target area (1) no longer requires radiant air conditioning, radiant air conditioning must be continued for the entire air conditioning target area (1), resulting in a large waste of air conditioning costs.

本発明の目的は、空調対象域の部分によって空調負荷が
相違しても、空調対象域全体において快適な暖房感や冷
房感を確実に実感できるようにし、また、空調対象域が
部分的に放射空調不要になった時、空調経費の節約を図
れるようにする点にある。
The purpose of the present invention is to make it possible to reliably experience a comfortable feeling of heating or cooling in the entire area to be air conditioned, even if the air conditioning load differs depending on the part of the area to be air conditioned. The purpose is to save air conditioning costs when air conditioning is no longer needed.

〔課題を解決するための手段〕[Means to solve the problem]

本発明の特徴構成は、背部空間内の空気が空調器で加熱
又は冷却されるようになっている放射伝熱体の板面方向
において前記背部空間を隔壁により複数の空間部分に区
画し、 前記複数の空間部分の空調温度を各別に設定変更できる
状態で前記空調器を設置したことにあり、その作用・効
果は次の通りである。
A characteristic configuration of the present invention is that the back space is divided into a plurality of space portions by a partition wall in the direction of the plate surface of the radiant heat transfer body in which the air in the back space is heated or cooled by an air conditioner; The air conditioner is installed in such a way that the air conditioning temperature of a plurality of spaces can be set and changed individually, and its functions and effects are as follows.

〔作 用〕[For production]

つまり、空調対象域における空調負荷分布やその変化の
実態に見合って、背部空間内を適当な配置及び個数で隔
壁により複数の空間部分に区画形成する。そして、空調
対象域に空調負荷が大きい場所と小さい場所が生じた時
、空調負荷の大きい場所に面する放射伝熱体部分の背部
に位置する空間部分において、空調器による空調温度を
暖房時には高くかつ冷却時には低くすると共に、空調負
荷の小さい場所に面する放射伝熱体部分の背部に位置す
る空間部分において、空調器による空調温度を暖房時に
低くかつ冷房時に高くする。
In other words, the inside of the back space is divided into a plurality of space portions using partition walls in an appropriate arrangement and number depending on the air conditioning load distribution and its changes in the air conditioning target area. When there are areas where the air conditioning load is high and areas where the air conditioning load is low, the air conditioner will increase the air conditioning temperature during heating in the space located at the back of the radiant heat transfer body facing the area where the air conditioning load is high. In addition, the temperature is lowered during cooling, and the air conditioning temperature by the air conditioner is lowered during heating and higher during cooling in the space located at the back of the radiant heat transfer body portion facing a place with a small air conditioning load.

その結果、放射伝熱体の温度が、空調負荷の大きい空調
対象域部分に臨む箇所では大きい放射空調能力を発揮す
る状態となり、空調負荷の小さい空調対象域部分に臨む
箇所では小さい放射空調能力を発揮する状態となり、空
調対象域全体において空調負荷と放射空調能力のバラン
スを、快適な暖房状態あるいは冷房状態を実感できるよ
うに調整できる。
As a result, the temperature of the radiant heat transfer element becomes such that it exhibits a large radiant air conditioning capacity in locations facing the air conditioning target area with a large air conditioning load, and a small radiant air conditioning capacity in locations facing the air conditioning target area with a low air conditioning load. The balance between the air-conditioning load and the radiant air-conditioning capacity can be adjusted in the entire air-conditioned area so that a comfortable heating or cooling condition can be experienced.

また、空調対象域が部分的に放射空調不要になれば、そ
の放射空調不要部分に面する放射伝熱体部分の背部に位
置する空間部分に対する空調を停止して、空調経費の無
駄を無くすことができる。
Additionally, if a part of the air conditioning target area no longer requires radiant air conditioning, air conditioning for the space located at the back of the radiant heat transfer body facing the area that does not require radiant air conditioning can be stopped, thereby eliminating wasteful air conditioning costs. Can be done.

〔発明の効果〕〔Effect of the invention〕

その結果、例えばペリメータゾーンとインテリアゾーン
の空調負荷差が大きい場合、インテリジェントビルのよ
うに比較的大きな空調負荷が点在している場合などのよ
うに、空調対象域の部分によって空調負荷が相違しても
、空調対象域全体において快適な暖房感や冷房感を確実
に実感でき、そして、残業による人の部分点在が生じた
場合、会議室などの一時使用が多い場所が存在する場合
などのように、空調対象域が部分的に放射空調不要にな
った時に空調経費の節約を図れ、性能及び運転経費面に
おいて一段と優れた放射式空調装置を提供できるように
なった。
As a result, the air conditioning load differs depending on the area to be air conditioned, for example, when there is a large difference in air conditioning load between the perimeter zone and the interior zone, or when relatively large air conditioning loads are scattered like in an intelligent building. However, it is possible to reliably experience a comfortable feeling of heating or cooling throughout the air-conditioned area, and it can be Thus, when the area to be air-conditioned partially requires no radiant air-conditioning, it is possible to save on air-conditioning costs and to provide a radiant-type air conditioner that is even better in terms of performance and operating costs.

〔実施例〕〔Example〕

次に実施例を示す。 Next, examples will be shown.

第1図及び第2図に示すように、空調対象域(1)の天
井をアルミ板などから成る板状の放射伝熱体(2)で形
成し、放射伝熱体(2)の上方に形成した背部空間を、
放射伝熱体(2)の板面方向において縦横に多数の空間
部分(3)に隔壁(4)で区画し、空間部分(3)の内
部夫々に各別の第1空調器(A)及び第2空調器(B)
を設けてある。
As shown in Figures 1 and 2, the ceiling of the air-conditioned area (1) is formed with a plate-shaped radiant heat transfer body (2) made of an aluminum plate, etc. The formed back space,
A large number of space parts (3) are divided vertically and horizontally in the plate surface direction of the radiant heat transfer body (2) by partition walls (4), and separate first air conditioners (A) and Second air conditioner (B)
is provided.

第1空調器(A)により空間部分(3)内の空気を加熱
又は冷却することによって、放射伝熱体(2)を部分的
に加熱冷却すると共に、第1空調器(A)の出力調整に
より空間部分(3)の空調温度を各別に設定変更できる
ように構成し、放射伝熱体(2)と空調対象域(1)の
人体との間における放射伝熱によって暖房や冷房を実行
する放射式空調装置を形成してある。
By heating or cooling the air in the space (3) by the first air conditioner (A), the radiant heat transfer body (2) is partially heated and cooled, and the output of the first air conditioner (A) is adjusted. The configuration is such that the air conditioning temperature of each space part (3) can be set and changed individually, and heating and cooling are performed by radiant heat transfer between the radiant heat transfer body (2) and the human body of the air conditioning target area (1). A radiant air conditioner is formed.

第2空調器(B) により空調対象域(1)の空気を循
環流動させると共に加熱又は冷却できるように構成し、
空調対象域(1)の対流による暖房や冷房を併せ実行で
きるようにしてある。
The second air conditioner (B) is configured to circulate and flow the air in the air-conditioned area (1) and to heat or cool the air.
Heating and cooling of the air-conditioned area (1) by convection can also be performed.

第3図に示すように、第1空調器(A)夫々において、
空気循環用ファン(5)と熱交換器(6)を設け、高温
熱運搬流体を供給する温熱供給路(7)、低温熱運搬流
体を提供する冷熱供給路(8)、及び、排出路(9)を
熱交換器(6)に接続し、第1空調器(A)を暖房状態
、冷房状態及び停止状態に切換えるための開閉弁(Vl
)、 (v2)、並びに、第1空調器の出力調整のため
の流量調節弁(V3)。
As shown in FIG. 3, in each of the first air conditioners (A),
An air circulation fan (5) and a heat exchanger (6) are provided, and a hot heat supply path (7) that supplies a high temperature heat transfer fluid, a cold heat supply path (8) that provides a low temperature heat transfer fluid, and a discharge path ( 9) to the heat exchanger (6), and an on-off valve (Vl) for switching the first air conditioner (A) to a heating state, a cooling state, and a stop state.
), (v2), and a flow rate control valve (V3) for adjusting the output of the first air conditioner.

(v4)を温熱供給路(7)と冷熱供給路(8)の夫々
に設けてある。また、空調対象域(1)の空気をファン
ク5)に送る吸気路(31)を設けてある。
(v4) is provided in each of the hot heat supply path (7) and the cold heat supply path (8). Further, an intake passage (31) is provided to send air from the air-conditioned area (1) to the funk 5).

空間部分(3)に各別に臨む放射伝熱体部分(2a)の
温度を検出する第1センサー(Sl)を設け、運転状態
切換器(10)、設定器(11)、第1センサー(Sl
)からの情報に基づいてファン(5)、開閉弁(L)、
 (V2)及び流量調節弁(V3)、 (V4)を操作
する第1制御装置(12)を設け、運転状態切換器(1
0)により下記暖房状態、冷房状態、運転停止状態を選
択できるようにしてある。
A first sensor (Sl) is provided to detect the temperature of the radiant heat transfer body part (2a) facing each space part (3), and an operating state switch (10), a setting device (11), and a first sensor (Sl) are provided.
) based on the information from the fan (5), on-off valve (L),
(V2) and the flow rate control valves (V3) and (V4).
0) allows the following heating state, cooling state, and operation stop state to be selected.

(イ)暖房状態 ファン(5)を作動させ、温熱供給路(7)の開閉弁(
vl)を開き、冷熱供給路(8)の開閉弁(V2)を閉
じ、第1センサー(Sl)の検出温度を設定器(11)
からの設定温度範囲に維持するために温熱供給路(7)
の流量調節弁(v3)を自動操作する。
(a) The heating state fan (5) is operated, and the opening/closing valve (
Vl), close the on-off valve (V2) of the cold heat supply path (8), and set the detected temperature of the first sensor (Sl) to the setting device (11).
Heat supply path (7) to maintain the set temperature range from
Automatically operate the flow rate control valve (v3).

(ロ)冷房状態 ファン(5)を作動させ、冷熱供給路(8)の開閉弁(
v2)を開き、温熱供給路の開閉弁(Vl)を閉じ、第
1センサー(Sl)の検出温度を設定器(11)からの
設定温度範囲に維持するために冷熱供給路(8)の流■
調節弁(v4)を自動操作する。
(b) The cooling state fan (5) is operated, and the on-off valve (
V2) is opened, the on-off valve (Vl) of the heat supply path is closed, and the flow of the cold heat supply path (8) is adjusted to maintain the detected temperature of the first sensor (Sl) within the set temperature range from the setting device (11). ■
Automatically operate the control valve (v4).

(ハ)運転停止状態 ファン(5)を停止し、両開閉弁(v、)、 (V2)
を閉じる。
(c) Stopped operation Fan (5) is stopped and both open/close valves (v, ), (V2)
Close.

ワイヤレスリモコン(13a)からの情報を運転状態切
換器(10)と設定器(11)に伝達する受信部(14
)を放射伝熱体部分(2a)の開口から空調対象域(1
)に向けて設けてある。
A receiver (14) transmits information from the wireless remote controller (13a) to the operating state switch (10) and setting device (11).
) from the opening of the radiant heat transfer body part (2a) to the air conditioned area (1
).

要するに、放射伝熱体部分(2a)夫々において、その
下方に位置する人が快適な放射空調感を実感できるよう
に放射伝熱体部分(2a)の温度をリモコン操作で設定
すると、空調対象域(1)の部分によって空調負荷が相
違しても、空調対象域(1)全体において快適な放射暖
房感や放射冷房感を実感できるように構成してある。ま
た、放射空調の不要な部分の上方に位置する放射伝熱体
部分(2a)に対する第1空調器(A)を停止して、放
射空調の運転経費を節約できるように構成してある。
In short, in each radiant heat transfer body part (2a), if the temperature of the radiant heat transfer body part (2a) is set by remote control so that the person located below can experience a comfortable feeling of radiant air conditioning, the air conditioning target area Even if the air conditioning load differs depending on the area (1), the structure is such that a comfortable feeling of radiant heating or cooling can be felt in the entire air-conditioned area (1). Further, the first air conditioner (A) for the radiant heat transfer body portion (2a) located above the portion where radiant air conditioning is not required is stopped, thereby saving operating costs of radiant air conditioning.

第4図に示すように、第2空調器(B)夫々において、
空気循環用ファン(15)と熱交換器(16)を設け、
そのファン(15)によって空調対象域(1)の空気を
吸込む第1吸気路(17)、背部空間(3)の空気を吸
込む第2吸気路(18)、両級気路(17)。
As shown in FIG. 4, in each of the second air conditioners (B),
An air circulation fan (15) and a heat exchanger (16) are provided,
A first intake passage (17) that sucks air from the air-conditioned area (1) by the fan (15), a second intake passage (18) that sucks air from the back space (3), and a double air passage (17).

(18)からの空気を混合して空調対象域(1)に吹出
す吹出口(19)を設け、第1及び第2吸気路(17)
、 (18)夫々に吸気量調節用ダンパー(19a)。
An air outlet (19) is provided to mix the air from (18) and blow it out to the air-conditioned area (1), and the first and second intake passages (17)
, (18) respectively dampers (19a) for adjusting the intake air amount.

(19tl)を設けてある。高温熱運搬流体を供給する
温熱供給路(20)、低温熱運搬流体を供給する冷熱供
給路(21)、及び、排出路(22)を熱交換器(16
)に接続し、熱交換器(16)を暖房状態、冷房状態及
び停止状態に切換するための開閉弁(VS)。
(19tl) is provided. A heat supply path (20) that supplies a high temperature heat transfer fluid, a cold supply path (21) that supplies a low temperature heat transfer fluid, and a discharge path (22) are connected to a heat exchanger (16).
) for switching the heat exchanger (16) between a heating state, a cooling state, and a stop state.

(v6)、並びに1、熱交換器(16)の出力調整のた
めの流量調節弁(vt)、 (va)を温熱供給路(2
0)と冷熱供給路(21)に設けてある。
(v6), and 1, a flow rate control valve (vt) for adjusting the output of the heat exchanger (16), and (va) the heat supply path (2).
0) and the cold/heat supply path (21).

第1吸気路(17)の空気温度を検出する第2センサー
(S2)を設け、運転状態切換器(23)、設定器(2
4)、第2センサー(S2)からの情報に基づいてファ
ン(15)、ダンパー(19a)、(19b) 、開閉
弁(VS)、 (Vt+)及び流量調節弁(vt)、 
(V8)を操作する第2制御装置(25)を設け、運転
状態切換器(23)により下記暖房状態、冷房状態、運
転停止状態を選択できるようにしてある。
A second sensor (S2) is provided to detect the air temperature in the first intake passage (17), and an operating state switch (23) and a setting device (2) are provided.
4), fan (15), damper (19a), (19b), on-off valve (VS), (Vt+), and flow control valve (vt), based on information from the second sensor (S2),
A second control device (25) for operating the air conditioner (V8) is provided, and the following heating state, cooling state, and operation stop state can be selected by means of an operating state switch (23).

(イ)第1暖房状態 第1空調器(A)の暖房時に、ファン(15)を作動さ
せ、両開閉弁(VS)、 (VS)を閉じ、第2センサ
ー(S2)の検出温度を設定器(24)からの設定温度
範囲に維持するために、両ダンパー(19a)、 (1
9b)を自動操作する。
(B) First heating state When the first air conditioner (A) is heating, the fan (15) is operated, the double opening/closing valve (VS) is closed, and the temperature detected by the second sensor (S2) is set. Both dampers (19a), (1
9b) is automatically operated.

(ロ)第2暖房状態 ファン(15)を作動させ、第1吸気路(17)のダン
パー(19a)と温熱供給路(20)の開閉弁(V、)
を開き、第2吸気路(18)のダンパー(19b) と
冷熱供給路(21)の開閉弁(v6)を閉じ、第2セン
サー(S2)の検出温度を設定器(24)からの設定温
度範囲に維持するために、温熱供給路ζ2o)の流量調
節弁(V、)を自動操作する。
(b) The second heating state fan (15) is operated, and the damper (19a) of the first intake path (17) and the on-off valve (V,) of the heat supply path (20) are activated.
, close the damper (19b) of the second intake path (18) and the on-off valve (V6) of the cold supply path (21), and set the detected temperature of the second sensor (S2) to the set temperature from the setting device (24). In order to maintain the temperature within this range, the flow rate control valve (V, ) of the heat supply path ζ2o) is automatically operated.

(ハ)第1冷房状態 第1空調器(A)の冷房時に、上記第1暖房状態と同様
に動作する。
(c) First cooling state When the first air conditioner (A) is cooling, it operates in the same manner as in the first heating state.

(ニ)第2冷房状態 ファン(15)を作動させ、第1吸気路(17)のダン
パー(19a)と冷熱供給路(21)の開閉弁(v6)
を開き0、第2吸気路(18)のダンパー(19b) 
 と温熱供給路(20)の開閉弁(VS)を閉じ、第2
センサー(S2)からの検出温度を設定器(24)から
の設定温度範囲に維持するために、冷熱供給路(21)
の流量調節弁(v8)を自動操作する。
(d) Activate the second cooling state fan (15), and operate the damper (19a) of the first intake path (17) and the on-off valve (v6) of the cold heat supply path (21).
Open 0, the damper (19b) of the second intake path (18)
and the on-off valve (VS) of the heat supply path (20) are closed, and the second
In order to maintain the detected temperature from the sensor (S2) within the set temperature range from the setting device (24), the cold heat supply path (21)
Automatically operate the flow rate control valve (v8).

(ホ)運転停止状態 ファン(15)を停止し、第2吸気路(18)のダンパ
ー(19b)及び両開閉弁(VS)、 (VS)を閉じ
る。
(E) Stopping the fan (15) and closing the damper (19b) and both on-off valves (VS) of the second intake path (18).

ワイヤレスリモコン(13b)からの情報を運転状態切
換器(23)と設定器(24)に伝達する受信部(26
)を放射伝熱体部分(2b)の開口から空調対象域(1
)に向けて設けてある。
A receiving section (26) transmits information from the wireless remote control (13b) to the operating state switch (23) and setting device (24).
) from the opening of the radiant heat transfer body part (2b) to the air conditioned area (1
).

要するに、放射伝熱体部分(2a)の下方夫々において
、そこに位置する人が快適な対流空調感を実感できるよ
うに吹出空気の温度をリモコン操作で設定すると、空調
対象域(1)の部分によって空調負荷が相違しても、空
調対象域(1)全体において快適な対流暖房感や対流冷
房感を実感できるように構成してある。また、放射暖房
や放射冷房に対して対流暖房や対流冷房を適当に組合わ
せることによって、最適の空調実感が得られるように構
成してある。さらに、対流空調の不要な部分に対する第
2空調器(B)を停止して、対流空調の運転経費を節約
できるように構成してある。
In short, if the temperature of the blown air is set by remote control in each of the lower parts of the radiant heat transfer body part (2a) so that people located there can experience a comfortable convection air conditioning feeling, the air conditioning target area (1) Even if the air conditioning load differs depending on the area, the system is configured so that a comfortable convective heating or convection cooling feeling can be felt in the entire air-conditioned area (1). Furthermore, by appropriately combining convection heating and convection cooling with radiant heating and cooling, the system is configured to provide the optimum air conditioning experience. Furthermore, the second air conditioner (B) for areas where convection air conditioning is not required is stopped, thereby saving operating costs for convection air conditioning.

第1図に示すように、温風又は冷風を供給する第3空調
器(C)をファン付給気路(27)で空調対象域(1)
に接続し、ファン付排気路(28)を空調対象域(1)
に接続し、空調対象域(1)全体に対する対流暖房ある
いは対流冷房、換気、調湿などを実行できるように構成
してある。
As shown in Figure 1, the third air conditioner (C) that supplies hot or cold air is connected to the air conditioning area (1) using the fan-equipped air supply path (27).
Connect the fan exhaust passage (28) to the air conditioning area (1)
The air conditioner is connected to the air conditioner and is configured to perform convection heating or convection cooling, ventilation, humidity control, etc. for the entire air-conditioned area (1).

〔別実施例〕[Another example]

次に別実施例を説明する。 Next, another embodiment will be described.

放射伝熱体(2)は天井、側壁、床の少なくとも一部を
形成するように配置すればよく、また、材質、構造、形
状、その他において適当に変更できる。
The radiant heat transfer body (2) may be arranged so as to form at least a portion of the ceiling, side walls, or floor, and may be appropriately changed in material, structure, shape, etc.

放射伝熱体(2)の背部空間内の空気を加熱又は冷却す
るに、第5図(イ)に示すように、複数の空間部分(3
)夫々に各別の空調器(A)をダクト (29)で接続
したり、あるいは、第5図(ロ)に示すように、複数の
空間部分(3)に1台の空調器(A)をダクト (29
)で並列接続し、空間部分(3)夫々への調温空気供給
量を各別に変更設定する流量調整手段(30)を設けて
もよく、要するに、複数の空間部分(3)の空調温度を
各別に設定変更できる状態で空調器(A)を配置してあ
ればよい。また、空調器(A)の具体構成、自動制御構
成、操作構成は公知手段から適当に選定できる。
To heat or cool the air in the back space of the radiant heat transfer body (2), as shown in FIG.
) Each air conditioner (A) can be connected to each other with a duct (29), or one air conditioner (A) can be connected to multiple spaces (3) as shown in Figure 5 (b). Duct (29
) may be connected in parallel to each other, and a flow rate adjustment means (30) may be provided to change and set the temperature-controlled air supply amount to each of the space sections (3) separately. It is sufficient if the air conditioners (A) are arranged in such a way that the settings can be changed individually. Further, the specific configuration, automatic control configuration, and operation configuration of the air conditioner (A) can be appropriately selected from known means.

放射伝熱体(2)の背部空間を複数の空間部分(3)に
区画するに、空間部分(3)の個数、形状、寸法、配置
等は空調対象域(1)の空調負荷分布やその変化などの
実態に応じて適当に選定すればよい。また、隔壁り4)
は気密構造であっても、通気を適度に許容する構造であ
ってもよい。
When dividing the back space of the radiant heat transfer body (2) into a plurality of space parts (3), the number, shape, dimensions, arrangement, etc. of the space parts (3) are determined based on the air conditioning load distribution of the air conditioning target area (1) and its It may be selected appropriately depending on the actual situation such as changes. Also, bulkhead 4)
may have an airtight structure or may have a structure that allows adequate ventilation.

放射式空調装置は暖房専用、冷房専用、冷暖房切換用の
いずれであってもよく、また、空調対象域(1)の種類
は不問である。
The radiant air conditioner may be used only for heating, only for cooling, or for switching between heating and cooling, and the type of air conditioning target area (1) is not limited.

第2空調器(B)及び第3空調器(C)は具体構成、制
御構成、操作構成において公知手段から適当に選定でき
、また一部あるいは全部を省略してもよい。
The second air conditioner (B) and the third air conditioner (C) can be appropriately selected from known means in terms of specific configuration, control configuration, and operation configuration, and some or all of them may be omitted.

尚、特許請求の範囲の項に図面との対照を便利にする為
に符号を記すが、該記入により本発明は添付図面の構造
および方法に限定されるものではない。
Note that although reference numerals are written in the claims section for convenient comparison with the drawings, the present invention is not limited to the structures and methods shown in the accompanying drawings.

【図面の簡単な説明】[Brief explanation of the drawing]

第1図ないし第4図は本発明の実施例を示し、第1図は
全体概念図、第2図は第1図の■−■線矢視図、第3図
は第1空調器の概念図、第4図は第2空調器の概念図で
ある。第5図(イ)、 (0)は本発明の各別の実施例
を示す概念図である。 第6図は従来例の概念図である。 (A)・・・・・・空調器、(1)・・・・・・空調対
象域、(2)・・・・・・放射伝熱体、(3)・・・・
・・空間部分、(4)・・・・・・隔壁、(29)・・
・・・・ダクト、(30)・・・・・・流量調整手段。
1 to 4 show embodiments of the present invention, FIG. 1 is an overall conceptual diagram, FIG. 2 is a view taken along the line ■-■ in FIG. 1, and FIG. 3 is a conceptual diagram of the first air conditioner. FIG. 4 is a conceptual diagram of the second air conditioner. FIGS. 5(A) and 5(0) are conceptual diagrams showing different embodiments of the present invention. FIG. 6 is a conceptual diagram of a conventional example. (A)...Air conditioner, (1)...Air conditioning target area, (2)...Radiation heat transfer body, (3)...
...Space part, (4)...Partition wall, (29)...
...Duct, (30) ...Flow rate adjustment means.

Claims (1)

【特許請求の範囲】 1、空調対象域(1)の天井、側壁、床の少なくとも一
部を板状の放射伝熱体(2)で形成し、その放射伝熱体
(2)の背部空間内の空気を加熱又は冷却する空調器(
A)を設けた放射式空調装置であって、 前記放射伝熱体(2)の板面方向において前記背部空間
を隔壁(4)により複数の空間部分(3)に区画し、 前記複数の空間部分(3)の空調温度を各別に設定変更
できる状態で前記空調器(A)を設置してある放射式空
調装置。 2、前記複数の空間部分(3)の内部夫々に各別の前記
空調器(A)を配置してある請求項1記載の放射式空調
装置。 3、前記複数の空間部分(3)夫々に各別の前記空調器
(A)をダクト(29)で接続してある請求項1記載の
放射式空調装置。 4、前記複数の空間部分(3)に1台の前記空調器(A
)をダクト(29)で並列接続し、 前記複数の空間部分(3)夫々への調温空気供給量を各
別に変更設定する流量調整手段 (30)を設けてある請求項1記載の放射式空調装置。
[Claims] 1. At least a part of the ceiling, side walls, and floor of the air-conditioned area (1) are formed by a plate-shaped radiant heat transfer body (2), and the space behind the radiant heat transfer body (2) is Air conditioner that heats or cools the air inside (
A), wherein the back space is divided into a plurality of space portions (3) by a partition wall (4) in the plate surface direction of the radiant heat transfer body (2), and the plurality of spaces are A radiant air conditioner in which the air conditioner (A) is installed in such a manner that the air conditioning temperature of the portion (3) can be changed individually. 2. The radiant air conditioner according to claim 1, wherein a separate air conditioner (A) is disposed inside each of the plurality of space portions (3). 3. The radiant air conditioner according to claim 1, wherein a separate air conditioner (A) is connected to each of the plurality of space portions (3) by a duct (29). 4. One air conditioner (A
) are connected in parallel through a duct (29), and further comprising a flow rate adjustment means (30) for individually changing and setting the amount of temperature-controlled air supplied to each of the plurality of space parts (3). Air conditioner.
JP20241788A 1988-08-12 1988-08-12 Radiant air-conditioning apparatus Pending JPH0252939A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP20241788A JPH0252939A (en) 1988-08-12 1988-08-12 Radiant air-conditioning apparatus

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP20241788A JPH0252939A (en) 1988-08-12 1988-08-12 Radiant air-conditioning apparatus

Publications (1)

Publication Number Publication Date
JPH0252939A true JPH0252939A (en) 1990-02-22

Family

ID=16457163

Family Applications (1)

Application Number Title Priority Date Filing Date
JP20241788A Pending JPH0252939A (en) 1988-08-12 1988-08-12 Radiant air-conditioning apparatus

Country Status (1)

Country Link
JP (1) JPH0252939A (en)

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH04273930A (en) * 1991-02-28 1992-09-30 Matsushita Electric Works Ltd Ceiling radiation cooling/heating system
JPH05149586A (en) * 1990-08-03 1993-06-15 Matsushita Electric Works Ltd Ceiling radiation room-cooling/heating system
JP2008051419A (en) * 2006-08-25 2008-03-06 Matsushita Electric Ind Co Ltd Radiation air conditioner
JP2009216339A (en) * 2008-03-12 2009-09-24 Toyota Motor Corp Air conditioner for building and building equipped with it
JP2014081087A (en) * 2012-10-12 2014-05-08 Fujita Corp Radiation air-conditioning system

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH05149586A (en) * 1990-08-03 1993-06-15 Matsushita Electric Works Ltd Ceiling radiation room-cooling/heating system
JPH04273930A (en) * 1991-02-28 1992-09-30 Matsushita Electric Works Ltd Ceiling radiation cooling/heating system
JP2008051419A (en) * 2006-08-25 2008-03-06 Matsushita Electric Ind Co Ltd Radiation air conditioner
JP2009216339A (en) * 2008-03-12 2009-09-24 Toyota Motor Corp Air conditioner for building and building equipped with it
JP2014081087A (en) * 2012-10-12 2014-05-08 Fujita Corp Radiation air-conditioning system

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