JPH018897Y2 - - Google Patents

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Publication number
JPH018897Y2
JPH018897Y2 JP16256684U JP16256684U JPH018897Y2 JP H018897 Y2 JPH018897 Y2 JP H018897Y2 JP 16256684 U JP16256684 U JP 16256684U JP 16256684 U JP16256684 U JP 16256684U JP H018897 Y2 JPH018897 Y2 JP H018897Y2
Authority
JP
Japan
Prior art keywords
coil
reheating
heat
cooling
air
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.)
Expired
Application number
JP16256684U
Other languages
Japanese (ja)
Other versions
JPS6176232U (en
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 filed Critical
Priority to JP16256684U priority Critical patent/JPH018897Y2/ja
Publication of JPS6176232U publication Critical patent/JPS6176232U/ja
Application granted granted Critical
Publication of JPH018897Y2 publication Critical patent/JPH018897Y2/ja
Expired legal-status Critical Current

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  • Central Air Conditioning (AREA)

Description

【考案の詳細な説明】 本考案は冷房冷却時に取得した熱量を更に再熱
機構の熱源として利用し、所望する必要温度と湿
度を常時確実に期待求めると共に、冷却時に要す
る熱量の消費を大巾に節減することをその目的と
する空調機における熱回収システムに関するもの
である。
[Detailed description of the invention] This invention further utilizes the heat acquired during air conditioning cooling as a heat source for the reheating mechanism, thereby reliably obtaining the desired required temperature and humidity at all times, and greatly reducing the consumption of heat required during cooling. The present invention relates to a heat recovery system in an air conditioner whose purpose is to save energy.

通常、室内冷房中において除湿等湿度コントロ
ールを行なう場合、空気を過冷却し、該冷却空気
を再加熱して必要とする温度、湿度の空気の分布
が求められている。
Normally, when performing humidity control such as dehumidification during indoor cooling, air is supercooled and the cooled air is reheated to obtain the required temperature and humidity distribution of the air.

而るに斯かる方法による場合には第1図示の如
く、冷却部Aと再熱部Bの夫々に必要とする熱量
a,bを供給しなければならず該消費熱量がa+
bの多量となり不経済であつた。
However, in the case of using such a method, as shown in the first diagram, the necessary amounts of heat a and b must be supplied to each of the cooling section A and the reheating section B, and the amount of heat consumed is a+
This resulted in a large amount of b, making it uneconomical.

本考案は叙上の欠点に鑑みて、冷却コイルAの
前後部に予冷コイルCおよび再熱コイルBを夫々
縦列状に配置すると共に、前記予冷コイルCと再
熱コイルBをパイプPにて連通し、再熱コイルB
の熱源として前記予冷コイルCによる熱量を利用
しようとするもので再熱部Bに要する熱量を他か
ら求めることも毛頭なく、第2図示の如く冷却に
要する熱量aは冷却部Aのみにて大巾な節減とな
り、以て省エネ対策上、きわめて有効適切な空調
機における熱回収システムを汎く提供しようとす
るものである。
In view of the above-mentioned drawbacks, the present invention arranges a pre-cooling coil C and a reheating coil B in tandem at the front and rear of the cooling coil A, respectively, and communicates the pre-cooling coil C and the reheating coil B with a pipe P. and reheat coil B
Since the amount of heat generated by the pre-cooling coil C is used as a heat source for the reheating section B, there is no need to calculate the amount of heat required for the reheating section B from other sources. The aim is to widely provide a heat recovery system for air conditioners that is extremely effective and suitable for energy saving measures, resulting in significant savings.

以下、本考案の具体例構造を例示する第3図に
付いて詳説すると、 1は予冷ボツクス、2はコイルボツクス、3は
フアンボツクス、4は再熱ボツクス、5はフイル
ターボツクスにて設置場所等に準じて同列上に縦
列状に夫々を配置する。
The following is a detailed description of the structure of a specific example of the present invention with reference to FIG. 3: 1 is a precooling box, 2 is a coil box, 3 is a fan box, 4 is a reheating box, and 5 is a filter box. Arrange them in vertical columns on the same line according to the following.

予冷ボツクス1には予冷コイルC、コイルボツ
クス2には冷却コイルA、再熱ボツクス4には再
熱コイルBを各配設すると共に、前記、予冷コイ
ルCと再熱コイルBをパイプPにて短絡連通し、
予冷コイルCよりの熱媒を再熱コイルB側に送供
或は回収行なわしめるべく形成する。
Precooling coil C is installed in precooling box 1, cooling coil A is installed in coil box 2, and reheating coil B is installed in reheating box 4, and the precooling coil C and reheating coil B are connected by pipe P. short-circuit communication,
It is formed so that the heat medium from the precooling coil C is sent to or recovered from the reheating coil B side.

図示中、符号6は空気取入口、7は加湿器、8
は電動機、9は送風機、10はエリミネータ11
はフイルター等の各機構を示めし、冷却コイルA
には冷水入口A′ならびに冷水出口Aが設けられ
ている。
In the illustration, numeral 6 is an air intake port, 7 is a humidifier, and 8 is a humidifier.
is an electric motor, 9 is a blower, 10 is an eliminator 11
indicates each mechanism such as a filter, cooling coil A
is provided with a cold water inlet A' and a cold water outlet A.

本考案は叙上の機構にて形成されているもので
あつて、予じめ空気取入口6から導入され予冷コ
イルCにて予冷された空気が冷却コイルAにて所
定温度に冷却され、此れが更に再熱コイルBにて
適当に熱交換され理想的な温度と湿度の空気を室
内に供給しようとするものであるが、本考案は空
調機構の冷却コイルA前後に予冷コイルCと再熱
コイルBを設け、該予冷コイルCと再熱コイルB
をパイプPにて連通して形成されているがために
予冷コイルCにて温化状体の温水が前記パイプP
を流通して再熱コイルBに流れ冷却状体の再熱コ
イルBを序々に温暖し、冷却コイルAよりの冷却
空気を適当に再加熱して必要な温度と湿度の空気
分布を室内に供給するものである。
The present invention is formed by the above-mentioned mechanism, in which air is introduced in advance from the air intake port 6 and pre-cooled by the pre-cooling coil C, and is cooled to a predetermined temperature by the cooling coil A. This is then appropriately heat-exchanged by reheating coil B to supply air with ideal temperature and humidity indoors, but the present invention uses precooling coil C and reheating coil before and after cooling coil A of the air conditioning system. A heating coil B is provided, and the precooling coil C and the reheating coil B are provided.
are formed by communicating with each other through a pipe P, so that the warm water in the pre-cooling coil C is heated through the pipe P.
The air flows through the reheating coil B and gradually warms the reheating coil B, which is a cooling body, and appropriately reheats the cooled air from the cooling coil A to supply the air with the necessary temperature and humidity distribution indoors. It is something to do.

また一方、再熱コイルBに流れた温水は該再熱
コイルBの機能に伴つて自然的に冷化され、これ
が再たび一方のパイプPを流れて予冷コイルCに
復流する。
On the other hand, the hot water flowing through the reheating coil B is naturally cooled as the reheating coil B functions, and flows through one pipe P again to flow back to the precooling coil C.

以上の如く本考案に係る熱回収システム機構は
前記冷→温→冷サイクルによる自動的連続繰返え
しの作用によつて第1図、第2図の対比図面にて
明らかなる通り再熱コイルBの熱源は予冷コイル
Cよりの熱量を利用するものであるから必要とす
る熱量は冷却コイルAのみとなり、故に従来の再
熱用としての熱量は全く必要とすることもなく以
て使用熱量が大巾に節減でき得る等の省エネ効果
を有し、而も構造簡単故障皆無であり、既設の空
調機にも容易に併設可能である等種々の利点を併
せ有するものである。
As described above, the heat recovery system mechanism according to the present invention utilizes the automatic continuous repetition of the cold→warm→cold cycle to produce a reheating coil as shown in the comparative drawings of FIGS. 1 and 2. Since the heat source of B uses the heat amount from the pre-cooling coil C, the amount of heat required is only the cooling coil A, so the amount of heat used for conventional reheating is not required at all, and the amount of heat used is reduced. It has a variety of advantages, including the ability to save energy by a large amount, its simple structure, no failures, and the ability to be easily installed in existing air conditioners.

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

第1図は従来空冷機構における熱量使用説明
図、第2図は本考案熱回収システムの場合の同上
説明図、第3図は同上、具体例構造を示す概略図
である。 符号の説明、A……冷却コイル、B……再熱コ
イル、C……予冷コイル、P……バイパスパイ
プ。
FIG. 1 is an explanatory diagram of the use of heat in a conventional air cooling mechanism, FIG. 2 is an explanatory diagram of the heat recovery system of the present invention, and FIG. 3 is a schematic diagram showing a specific example structure of the same. Explanation of symbols: A: cooling coil, B: reheating coil, C: precooling coil, P: bypass pipe.

Claims (1)

【実用新案登録請求の範囲】[Scope of utility model registration request] 冷却コイルAの前部に予冷コイルCを、また後
部に再熱コイルBを夫々縦列状に配置すると共に
前記予冷コイルCと再熱コイルBをパイプPにて
連通し、予冷コイルCの熱量を再熱コイルBに流
通行なわしめるべく形成したことを特徴とする空
調機における熱回収システム。
A pre-cooling coil C is arranged in the front of the cooling coil A, and a reheating coil B is arranged in the rear of the cooling coil A, and the pre-cooling coil C and the reheating coil B are connected through a pipe P, so that the amount of heat of the pre-cooling coil C can be reduced. A heat recovery system in an air conditioner, characterized in that the heat recovery system is formed so as to be distributed to a reheating coil B.
JP16256684U 1984-10-26 1984-10-26 Expired JPH018897Y2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP16256684U JPH018897Y2 (en) 1984-10-26 1984-10-26

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP16256684U JPH018897Y2 (en) 1984-10-26 1984-10-26

Publications (2)

Publication Number Publication Date
JPS6176232U JPS6176232U (en) 1986-05-22
JPH018897Y2 true JPH018897Y2 (en) 1989-03-10

Family

ID=30720440

Family Applications (1)

Application Number Title Priority Date Filing Date
JP16256684U Expired JPH018897Y2 (en) 1984-10-26 1984-10-26

Country Status (1)

Country Link
JP (1) JPH018897Y2 (en)

Families Citing this family (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP4651163B2 (en) * 2000-08-10 2011-03-16 株式会社テクノ菱和 Wet film coil type air conditioner
US8151579B2 (en) * 2007-09-07 2012-04-10 Duncan Scot M Cooling recovery system and method
WO2019165133A1 (en) 2018-02-23 2019-08-29 Conservant Systems, Inc. High effciency dehumidification system and method
US11073296B2 (en) 2018-03-09 2021-07-27 Scot Matthew Duncan High efficiency dehumidification system (HEDS)
US12571547B2 (en) 2018-03-09 2026-03-10 Heds Holdings Llc Hybrid geothermal, air source, water source systems

Also Published As

Publication number Publication date
JPS6176232U (en) 1986-05-22

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