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JP3603844B2 - External heat recovery system - Google Patents

External heat recovery system Download PDF

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Publication number
JP3603844B2
JP3603844B2 JP2001389694A JP2001389694A JP3603844B2 JP 3603844 B2 JP3603844 B2 JP 3603844B2 JP 2001389694 A JP2001389694 A JP 2001389694A JP 2001389694 A JP2001389694 A JP 2001389694A JP 3603844 B2 JP3603844 B2 JP 3603844B2
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Japan
Prior art keywords
air
heat
heat pump
outside
conditioner
Prior art date
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Expired - Lifetime
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JP2001389694A
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Japanese (ja)
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JP2003185291A (en
Inventor
恵一 木村
和行 笠原
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木村工機株式会社
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Priority to JP2001389694A priority Critical patent/JP3603844B2/en
Publication of JP2003185291A publication Critical patent/JP2003185291A/en
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02ATECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
    • Y02A30/00Adapting or protecting infrastructure or their operation
    • Y02A30/27Relating to heating, ventilation or air conditioning [HVAC] technologies
    • Y02A30/274Relating to heating, ventilation or air conditioning [HVAC] technologies using waste energy, e.g. from internal combustion engine
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02BCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
    • Y02B30/00Energy efficient heating, ventilation or air conditioning [HVAC]
    • Y02B30/52Heat recovery pumps, i.e. heat pump based systems or units able to transfer the thermal energy from one area of the premises or part of the facilities to a different one, improving the overall efficiency

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  • Air Conditioning Control Device (AREA)

Description

【0001】
【発明の属する技術分野】
本発明は熱回収外調システムに関する。
【0002】
【従来の技術】
従来、室内などに対して換気が必要な空調をする場合、給気された空気は全排気し、排気熱(還気熱)は屋外に捨てられていた。
【0003】
【発明が解決しようとする課題】
そのため、外気処理を行う場合など、ランニングコストがかかり無駄が多かった。そこで、これらの問題点を解決する熱回収外調システムを提供することを目的とする。
【0004】
【課題を解決するための手段】
上記目的を達成するために、本発明は、局所排気を行う屋内ゾーンに対して給排気する熱回収外調システムであって、屋内ゾーンの還気から熱回収して屋外へ排気しかつこの回収熱を利用して屋外からの外気を熱交換して屋内ゾーンへ給気するヒートポンプ式外調機を、備え、このヒートポンプ式外調機と屋外と屋内ゾーンとを給排気自在に連通連結するダクト群に、所定給気量を維持しつつすくなくとも局所排気量相当の回収熱を含む外気量を前記還気に補給してヒートポンプ式外調機へ流す風量調整自在なダンパ機構を、設けたものである。さらに、局所排気量の増減に比例してすくなくともヒートポンプ式外調機への還気量の割合が増減するように自動制御するダンパ機構と、した。さらに、ダクト群のうちで、屋外からヒートポンプ式外調機へ外気を送る外気ダクトと、屋内ゾーンからヒートポンプ式外調機へ還気を送る還気ダクトと、還気ダクトと外気ダクトを連通連結するバイパスダクトと、に夫々風量調整ダンパを設けてダンパ機構を、構成した。
【0005】
【発明の実施の形態】
図1と図2は、本発明の熱回収外調(外気処理空調)システムの一実施例を示している。この熱回収外調システムは、局所排気を行う屋内ゾーンAに対して給排気するもので、屋内ゾーンAの還気(RA)から熱回収して屋外Bへ排気しかつこの回収熱を利用して屋外Aからの外気(OA)を熱交換して屋内ゾーンAへ給気するヒートポンプ式外調機Hを、備えている。このヒートポンプ式外調機Hと屋外Bと屋内ゾーンAとを給排気自在に連通連結するダクト群Cに、所定給気量を維持しつつすくなくとも局所排気量相当の回収熱を含む外気量を前記還気(RA)に補給してヒートポンプ式外調機Hへ流す風量調整自在なダンパ機構Dを、設ける。実線及び点線の白抜き矢印は送風方向を示す。
【0006】
ダクト群Cは、屋外Bからヒートポンプ式外調機Hへ外気(OA)を送る外気ダクト16と、屋内ゾーンAからヒートポンプ式外調機Hへ還気(RA)を送る還気ダクト17と、還気ダクト17と外気ダクト16をその途中で連通連結するバイパスダクト18と、ヒートポンプ式外調機Hから屋内ゾーンAへ給気(SA)を送る給気ダクト19と、ヒートポンプ式外調機Hから屋外Bへ排気(EA)を送る排気ダクト20と、を備える。このダクト群Cのうちで、外気ダクト16と、還気ダクト17と、バイパスダクト18と、に夫々手動又は自動の風量調整ダンパ21、22、23を設けてダンパ機構Dを、構成する。局所排気量が一定の場合は、風量調整ダンパ21、22、23の風量調整を固定し、局所排気量が増減する場合には、局所排気量の増減に比例してすくなくともヒートポンプ式外調機Hへの還気量の割合が増減するようにセンサー等を用いて自動制御するダンパ機構Dと、することができる。
【0007】
ヒートポンプ式外調機Hは、ケーシング1内に、凝縮器2を設けた排気用送風路5と、蒸発器3を設けた外気用送風路6と、冷媒循環回路7と、を備えている。凝縮器2と蒸発器3と圧縮機4などから成る冷媒循環回路7は、図示省略の受液器と膨張弁と冷媒循環方向の切換弁等も有し、凝縮器2及び蒸発器3の吸熱と放熱を切換自在に構成される。ケーシング1には、外気取入口10、給気口11、還気取入口12及び排気口13を形成し、外気取入口10と給気口11を外気用送風路6にて連通連結し、還気取入口12と排気口13を排気用送風路5にて連通連結する。還気取入口12は還気ダクト17や吸込口等を介して屋内ゾーンAと連通連結し、給気口11は給気ダクト19や吹出口等を介して屋内ゾーンAと連通連結する。屋内ゾーンAには局所排気用の排気口やファン、換気扇などを設ける。
【0008】
この熱回収外調システムでは、外気取入口10から取入れた外気(OA)を蒸発器3で熱交換し、必要に応じて加湿器9を作動させて給気口11から所定風量給気し、同時に還気取入口12から取入れた還気(RA)で凝縮器2の循環冷媒を熱交換して吸熱又は放熱(熱回収)しつつ排気口13から屋外へ排気する。局所排気を行う場合、ダンパ機構Dによって、所定給気量を維持しつつすくなくとも局所排気量相当の回収熱(局所排気により不足することとなる還気分の熱量)を含む外気量を、ヒートポンプ式外調機Hへの還気に補給して、全排気時の還気量により凝縮器2で交換できる熱量(風量)をすくなくとも得られるようにし、熱交換能力の低下を防止する。また、換気扇の入切等によって局所排気量が増減する場合には、前述の比例制御のダンパ機構Dを用いることにより、自動的にヒートポンプ式外調機Hへの還気量の割合を増減させて、回収されずに損失する屋内ゾーンAの還気熱量を最小限に抑える。例えば、局所排気量の減少に比例してヒートポンプ式外調機Hへの還気量を増加させ、局所排気量の増加に比例してヒートポンプ式外調機Hへの還気量を減少させる。これに加えて局所排気量の減少に比例して凝縮器2への補助外気量を減少させ、局所排気量の増加に比例して凝縮器2への補助外気量を増加させるも自由で、省エネ化を図れる。
【0009】
なお、ヒートポンプ式外調機Hは図例の構造のものに限定されず、天井設置構造など種々に変更自由である。
【0010】
【発明の効果】
請求項1の発明では、排気熱(還気熱)を利用して外調機を運転できるので熱交換能力が高く小型化できて省エネを図れる。ヒートポンプ式外調機の熱交換能力を高く保ちつつ、給気量に対する局所排気量の割合をより幅広くとることができて熱回収外調システムの利用範囲が広がる。ダンパ機構をダクト側に設けるのでヒートポンプ式外調機の簡素化と小型化が図れて製作が容易となり設置面積が小さくてすむ。
請求項2の発明では、局所排気量が減少したときに、ヒートポンプ式外調機へ送る風量当たりの回収熱量が多い還気を増加させることができるので、ヒートポンプ式外調機の成績係数が上がり省エネとなる。
請求項3の発明では、ダクトに設けるダンパ数が少なくてすみコストダウンを図れる。
【図面の簡単な説明】
【図1】本発明の一実施例を示すシステム図である。
【図2】ヒートポンプ式外調機の断面図である。
【符号の説明】
A 屋内ゾーン
B 屋外
C ダクト群
D ダンパ機構
H ヒートポンプ式外調機
16 外気ダクト
17 還気ダクト
18 バイパスダクト
[0001]
TECHNICAL FIELD OF THE INVENTION
The present invention relates to a heat recovery external conditioning system.
[0002]
[Prior art]
2. Description of the Related Art Conventionally, when performing air conditioning that requires ventilation for a room or the like, the supplied air is completely exhausted, and the exhaust heat (return air heat) is discarded outdoors.
[0003]
[Problems to be solved by the invention]
For this reason, running costs are high and waste is increased in the case of performing outside air processing. Therefore, an object of the present invention is to provide a heat recovery external control system that solves these problems.
[0004]
[Means for Solving the Problems]
In order to achieve the above object, the present invention provides a heat recovery external control system for supplying and exhausting air to an indoor zone that performs local exhaust, which recovers heat from return air in an indoor zone, exhausts the air outside, and A heat pump type external conditioner that exchanges heat with the outside air from outside using heat and supplies air to the indoor zone, and a duct for freely connecting and connecting the heat pump type external conditioner to the outdoor and indoor zones so as to freely supply and exhaust air. The group is provided with a damper mechanism capable of adjusting the air volume which is supplied at least to the return air and supplied to the heat pump type external conditioner by supplying an external air volume including at least a recovered heat equivalent to a local exhaust air volume while maintaining a predetermined air supply amount. is there. In addition, a damper mechanism that automatically controls at least the proportion of the amount of return air to the heat pump type external conditioner in proportion to the increase and decrease of the local exhaust amount is provided. Furthermore, of the duct group, the outside air duct that sends outside air from outside to the heat pump type outside air conditioner, the return air duct that sends return air from the indoor zone to the heat pump outside air conditioner, and the connection between the return air duct and the outside air duct The damper mechanism is constructed by providing a flow rate adjusting damper for each of the bypass ducts to be used.
[0005]
BEST MODE FOR CARRYING OUT THE INVENTION
1 and 2 show an embodiment of a heat recovery outside air conditioning (outside air processing air conditioning) system of the present invention. This heat recovery external conditioning system supplies and exhausts air to / from the indoor zone A that performs local exhaust. The heat recovery from the return air (RA) in the indoor zone A is exhausted to the outside B, and the recovered heat is used. And a heat pump type external conditioner H that exchanges heat with the outside air (OA) from the outside A to supply the indoor zone A with heat. A duct group C that connects and connects the heat pump type external conditioner H, the outdoor B, and the indoor zone A so as to be able to freely supply and exhaust air is supplied with an external air amount including at least a local exhaust air amount while maintaining a predetermined air supply amount. A damper mechanism D capable of adjusting the amount of air supplied to the return air (RA) and flowing to the heat pump type external conditioner H is provided. Solid and dotted outline arrows indicate the direction of air flow.
[0006]
The duct group C includes an outside air duct 16 that sends outside air (OA) from the outdoor B to the heat pump type external conditioner H, a return air duct 17 that sends return air (RA) from the indoor zone A to the heat pump type external conditioner H, A bypass duct 18 that connects and connects the return air duct 17 and the outside air duct 16 in the middle thereof, an air supply duct 19 that sends air (SA) from the heat pump type external conditioner H to the indoor zone A, and a heat pump type external conditioner H And an exhaust duct 20 for sending exhaust (EA) from the outside to the outdoor B. In the duct group C, the outside air duct 16, the return air duct 17, and the bypass duct 18 are provided with manual or automatic air volume adjustment dampers 21, 22, and 23, respectively, to constitute a damper mechanism D. When the local exhaust volume is constant, the air volume adjustment of the air volume adjusting dampers 21, 22, and 23 is fixed, and when the local exhaust volume increases and decreases, at least the heat pump type external conditioner H is proportional to the increase and decrease of the local exhaust volume. A damper mechanism D that automatically controls using a sensor or the like so as to increase or decrease the ratio of the amount of returned air to the damper.
[0007]
The heat pump type external conditioner H includes, in a casing 1, an exhaust air passage 5 provided with a condenser 2, an outside air air passage 6 provided with an evaporator 3, and a refrigerant circulation circuit 7. The refrigerant circulation circuit 7 including the condenser 2, the evaporator 3, the compressor 4, and the like also includes a not-shown liquid receiver, an expansion valve, a switching valve for circulating the refrigerant, and the like. And heat radiation can be switched. The casing 1 is formed with an outside air intake 10, an air supply port 11, a return air intake 12, and an exhaust port 13. The outside air intake 10 and the air supply port 11 are connected to each other through an outside air ventilation path 6, and the casing 1 is returned. The air intake port 12 and the exhaust port 13 are connected to each other through the exhaust air passage 5. The return air inlet 12 is connected to and communicates with the indoor zone A via a return air duct 17 and an inlet, and the air supply port 11 is connected to and communicates with the indoor zone A via an air supply duct 19 and an outlet. The indoor zone A is provided with an exhaust port for local exhaust, a fan, a ventilation fan, and the like.
[0008]
In this heat recovery external conditioning system, the external air (OA) taken in from the external air inlet 10 is heat-exchanged in the evaporator 3, and the humidifier 9 is operated as necessary to supply a predetermined air volume from the air supply port 11, At the same time, the circulating refrigerant in the condenser 2 is heat-exchanged with the return air (RA) taken in from the return air inlet 12 to absorb heat or radiate heat (heat recovery) and exhaust the air from the exhaust port 13 to the outside. In the case of performing local exhaust, the outside air amount including at least the recovered heat equivalent to the local exhaust amount (the amount of heat of the return air which becomes insufficient due to the local exhaust) is maintained by the damper mechanism D while maintaining the predetermined air supply amount. The return air to the conditioner H is replenished so that the amount of heat (air flow) that can be exchanged in the condenser 2 can be obtained at least by the return air amount at the time of full exhaust, thereby preventing a decrease in heat exchange capacity. In addition, when the local exhaust volume increases or decreases due to turning on / off of a ventilation fan or the like, the ratio of the return air volume to the heat pump type external conditioner H is automatically increased or decreased by using the above-described damper mechanism D of the proportional control. Thus, the amount of return air heat in the indoor zone A that is not recovered and lost is minimized. For example, the amount of return air to the heat pump type external conditioner H is increased in proportion to the decrease in the local exhaust amount, and the amount of return air to the heat pump type external conditioner H is reduced in proportion to the increase in the local exhaust amount. In addition, the amount of auxiliary external air to the condenser 2 is reduced in proportion to the decrease in the local exhaust amount, and the amount of auxiliary external air to the condenser 2 is increased in proportion to the increase in the local exhaust amount. Can be achieved.
[0009]
The heat pump type external conditioner H is not limited to the structure shown in the figure, but can be freely changed in various ways such as a ceiling installation structure.
[0010]
【The invention's effect】
According to the first aspect of the present invention, since the outside air conditioner can be operated using the exhaust heat (return air heat), the heat exchange capacity is high, the size can be reduced, and energy can be saved. While keeping the heat exchange capacity of the heat pump type external conditioner high, the ratio of the local exhaust gas amount to the supply air amount can be made wider, and the use range of the heat recovery external control system can be expanded. Since the damper mechanism is provided on the duct side, the heat pump type external conditioner can be simplified and downsized, the manufacturing can be facilitated, and the installation area can be reduced.
According to the second aspect of the present invention, when the local exhaust air volume is reduced, the return air having a large amount of recovered heat per air flow sent to the heat pump external air conditioner can be increased. It saves energy.
According to the third aspect of the present invention, the number of dampers provided in the duct is small, and the cost can be reduced.
[Brief description of the drawings]
FIG. 1 is a system diagram showing one embodiment of the present invention.
FIG. 2 is a sectional view of a heat pump type external conditioner.
[Explanation of symbols]
A Indoor zone B Outdoor C Duct group D Damper mechanism H Heat pump type external conditioner 16 External air duct 17 Return air duct 18 Bypass duct

Claims (3)

局所排気を行う屋内ゾーンに対して給排気する熱回収外調システムであって、前記屋内ゾーンの還気から熱回収して屋外へ排気しかつこの回収熱を利用して前記屋外からの外気を熱交換して前記屋内ゾーンへ給気するヒートポンプ式外調機を、備え、このヒートポンプ式外調機と前記屋外と前記屋内ゾーンとを給排気自在に連通連結するダクト群に、所定給気量を維持しつつすくなくとも局所排気量相当の回収熱を含む外気量を前記還気に補給して前記ヒートポンプ式外調機へ流す風量調整自在なダンパ機構を、設けたことを特徴とする熱回収外調システム。A heat recovery air conditioning system for supplying and exhausting air to an indoor zone that performs local exhaust, wherein the heat is recovered from the return air of the indoor zone, exhausted to the outside, and the recovered heat is used to remove the outside air from the outdoor. A heat pump type external air conditioner for exchanging heat and supplying air to the indoor zone, and a predetermined air supply amount to a group of ducts for connecting and connecting the heat pump type external air conditioner to the outdoor and indoor zones so as to be able to supply and exhaust air freely. Characterized in that a damper mechanism capable of adjusting the amount of air supplied to the heat pump type external conditioner by supplying at least the outside air including the recovered heat equivalent to the local exhaust amount to the return air while maintaining Tone system. 局所排気量の増減に比例してすくなくともヒートポンプ式外調機への還気量の割合が増減するように自動制御するダンパ機構と、した請求項1記載の熱回収外調システム。2. The heat recovery external conditioning system according to claim 1, further comprising a damper mechanism for automatically controlling the proportion of the amount of return air to the heat pump type external conditioner to increase or decrease at least in proportion to the increase or decrease of the local exhaust amount. ダクト群のうちで、屋外からヒートポンプ式外調機へ外気を送る外気ダクトと、屋内ゾーンから前記ヒートポンプ式外調機へ還気を送る還気ダクトと、前記還気ダクトと前記外気ダクトを連通連結するバイパスダクトと、に夫々風量調整ダンパを設けてダンパ機構を、構成した請求項1又は2記載の熱回収外調システム。Among the group of ducts, an outside air duct that sends outside air from outside to a heat pump type outside air conditioner, a return air duct that sends return air from an indoor zone to the heat pump outside air conditioner, and communication between the return air duct and the outside air duct The heat recovery external control system according to claim 1 or 2, wherein a damper mechanism is provided by providing an air volume adjusting damper to each of the bypass ducts to be connected.
JP2001389694A 2001-12-21 2001-12-21 External heat recovery system Expired - Lifetime JP3603844B2 (en)

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JP3603844B2 true JP3603844B2 (en) 2004-12-22

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Publication number Priority date Publication date Assignee Title
JP5113501B2 (en) * 2007-11-27 2013-01-09 高砂熱学工業株式会社 Building layout
JP2011075116A (en) * 2009-09-29 2011-04-14 Sanyo Electric Co Ltd Outside air treating air conditioner
JP5449950B2 (en) * 2009-09-29 2014-03-19 三洋電機株式会社 Outside air treatment air conditioner
JP6425705B2 (en) * 2016-12-29 2018-11-21 木村工機株式会社 Air conditioning system

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