JPS6015862B2 - Sterile temperature and humidity controlled air production equipment - Google Patents

Sterile temperature and humidity controlled air production equipment

Info

Publication number
JPS6015862B2
JPS6015862B2 JP52031520A JP3152077A JPS6015862B2 JP S6015862 B2 JPS6015862 B2 JP S6015862B2 JP 52031520 A JP52031520 A JP 52031520A JP 3152077 A JP3152077 A JP 3152077A JP S6015862 B2 JPS6015862 B2 JP S6015862B2
Authority
JP
Japan
Prior art keywords
air
heat
water
pipe
humidity
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
JP52031520A
Other languages
Japanese (ja)
Other versions
JPS53117854A (en
Inventor
正彦 泉
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.)
Individual
Original Assignee
Individual
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 Individual filed Critical Individual
Priority to JP52031520A priority Critical patent/JPS6015862B2/en
Publication of JPS53117854A publication Critical patent/JPS53117854A/en
Publication of JPS6015862B2 publication Critical patent/JPS6015862B2/en
Expired legal-status Critical Current

Links

Classifications

    • 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
    • Y02A50/00TECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE in human health protection, e.g. against extreme weather
    • Y02A50/20Air quality improvement or preservation, e.g. vehicle emission control or emission reduction by using catalytic converters

Landscapes

  • Central Air Conditioning (AREA)
  • Cold Air Circulating Systems And Constructional Details In Refrigerators (AREA)
  • Food Preservation Except Freezing, Refrigeration, And Drying (AREA)
  • Freezing, Cooling And Drying Of Foods (AREA)

Description

【発明の詳細な説明】 この発明は、無菌鋼温調湿空気製造装置に関する。[Detailed description of the invention] The present invention relates to a sterile steel temperature-controlled air production device.

特に、この発明の目的は、冷蔵庫、温室則ち温蔵庫又は
エアコンに利用でき、コンパクトで温度湿度制御を確実
正確に行なうことができる無菌調温調湿空気製造装置を
提供することである。以下、図面を参照してこの発明の
実施例を説明する。図面に於いて、矢印Aは空気の流れ
を示し、矢印Bは水の流れを示し、更に矢印Cはフレオ
ン等の冷媒の流れを示す。室1は部分的に図示されてい
る。明確に分かるようにするために図面は図解的に図示
されており、実際上は諸部品は集められて全体的にコン
パクトに配置されるものである。まず最初に室1が冷蔵
庫に利用される場合について説明する。
In particular, it is an object of the present invention to provide a compact, sterile temperature-controlled and humidity-controlled air production device that can be used in refrigerators, greenhouses, or air conditioners, and is compact and capable of reliably and accurately controlling temperature and humidity. Embodiments of the present invention will be described below with reference to the drawings. In the drawings, arrow A indicates the flow of air, arrow B indicates the flow of water, and arrow C indicates the flow of refrigerant such as Freon. Chamber 1 is only partially illustrated. For the sake of clarity, the drawings are shown diagrammatically, and in practice the parts are grouped together in a compact overall arrangement. First, a case where chamber 1 is used as a refrigerator will be explained.

室1から回収された空気はパイプ2を経てファン3によ
りパイプ4からサイクロン式熱交換器5に送込まれる。
サイクロン式熱交換器5の熱交換チャンバ39に於いて
空気は、多数の噂霧口15から頃霧された冷却水によっ
て冷却されると共に飽和湿度にされ、パイプ6を通って
サイクロン式脱水分離器7に送込まれる。冷却され飽和
湿度にされた空気はサイクロン式脱水分離器7で脱水分
離される。飽和湿度で冷却され且つ脱水された空気はパ
イプ8を通って冷蔵庫則ち室1に送込まれる。脱水され
た水はバルブ12、パィプ11を通って排水される。パ
イプ8とパイプ2とはバイパス用パイプ9により連結さ
れており、所望に応じてバルブ13を開いて空気をバイ
パスさせることができる。バルブ37を備えたパイプ1
0はサイクロン式脱水分離器7に連結されており、無菌
状態にされた蒸気又は熱風をサイクロン式脱水分離器7
に吹込むことができ、装置全体を殺菌処理する場合、又
は送込まれる空気を議温調湿する場合に利用される。サ
イクロン式熱交換器5の周囲は水タンク24で囲まれて
いる。この場合、水タンク24には冷水が入れられてい
る。水タンク24にはバルブ36を備えた補給水パイプ
35を通じて水が補給される。水タンク24内の水はこ
こで冷却されてポンプ38によってパイプ25から噴霧
用パイプ14に送込まれる。続いて、冷水は噴愛用パイ
プ14に設けられた多数の頃霧口15から熱交換チャン
バ39に頃霧され、室1から送込まれてきた空気を冷却
し飽和温度にする。空気と熱交換された水はパイプ16
を通って炉過器17に送込まれる。炉過器17には排水
用パイプ18及び送洗用パイプ43が連結されており、
所望に応じてバルブ19及び42を開いて炉過器17を
洗浄することができる。水は炉過器17からパイプ20
、バルブ22、ポンプ21及びパイプ23を経て再び水
タンク24に送込まれ、この流れを操返えして循環させ
られる。水タンク24には安全弁41及び排水パイプ2
6、排水用バルブ27が設けられている。水タンク24
内には熱交換用パイプ34が図示のように螺旋状に配置
されている。熱交換用パイプ34はパイプ28及び33
を介して冷凍器29に連結されており、冷却パイプとし
て働らき、水タンク24内の水を冷却する。冷却器29
にはパイプ32及び30を介して放熱パイプ31に連絡
されている。放熱パイプ31は断熱層40を介してサイ
クロン式熱交換器5の周囲を囲むように図示のように螺
旋状に配置されている。次に、室1を温蔵庫則ち温室と
して利用する場合について説明する。
Air recovered from the chamber 1 is sent through a pipe 2 to a cyclone heat exchanger 5 by a fan 3 through a pipe 4.
In the heat exchange chamber 39 of the cyclone heat exchanger 5, the air is cooled and brought to saturated humidity by cooling water sprayed from a number of atomizer ports 15, and then passed through the pipe 6 to the cyclone dehydration separator. Sent to 7. The cooled and saturated air is dehydrated and separated in a cyclone type dehydrator separator 7. The cooled and dehydrated air with saturated humidity is sent through pipe 8 to the refrigerator or room 1. The dehydrated water is drained through a valve 12 and a pipe 11. The pipe 8 and the pipe 2 are connected by a bypass pipe 9, and the valve 13 can be opened to bypass air as desired. Pipe 1 with valve 37
0 is connected to a cyclone type dehydration separator 7, and the sterile steam or hot air is transferred to the cyclone type dehydration separator 7.
It is used when sterilizing the entire device or controlling the temperature and humidity of the air being blown in. The cyclone heat exchanger 5 is surrounded by a water tank 24. In this case, the water tank 24 is filled with cold water. The water tank 24 is replenished with water through a replenishment water pipe 35 equipped with a valve 36. The water in the water tank 24 is cooled here and sent through the pipe 25 to the spray pipe 14 by the pump 38. Subsequently, the cold water is sprayed into the heat exchange chamber 39 from a large number of spray ports 15 provided in the spray pipe 14, and the air sent from the chamber 1 is cooled to a saturated temperature. The water that has been heat exchanged with the air is pipe 16.
It is sent to the furnace 17 through the filter. A drainage pipe 18 and a washing pipe 43 are connected to the furnace 17.
Valves 19 and 42 can be opened to clean the furnace 17 as desired. Water flows from the furnace 17 to the pipe 20
, through the valve 22, the pump 21, and the pipe 23, and is again sent to the water tank 24, where this flow is reversed and circulated. The water tank 24 includes a safety valve 41 and a drain pipe 2.
6. A drainage valve 27 is provided. water tank 24
Inside, a heat exchange pipe 34 is arranged spirally as shown. The heat exchange pipe 34 is connected to the pipes 28 and 33.
It is connected to the refrigerator 29 via a cooling pipe, and serves as a cooling pipe to cool the water in the water tank 24. Cooler 29
is connected to a heat dissipation pipe 31 via pipes 32 and 30. The heat radiation pipe 31 is arranged in a spiral shape as shown in the figure so as to surround the cyclone heat exchanger 5 with a heat insulating layer 40 in between. Next, a case will be described in which the room 1 is used as a hot storage, that is, a greenhouse.

この場合は冷凍器29をヒ−トポンプとして、また放熱
パイプを吸熱パイプとして鰯らかせ、熱交換用パイプ3
4を放熱パィ0プとして働らかせ、これにより水タンク
24内の水は温水にされ、温水が頃霧口15から頃議さ
れ、室1からの空気と熱交換されて、サイクロン式脱水
分離器7から室1へ温風が吹込まれる。更に、本装置は
エアコンとして使用することも夕できる。この場合、主
として冷水の頃霧により熱交換チャンバ39内で一旦空
気を飽和湿度に冷却して、サイクロン式脱水分離器7に
送込み、パイプ10からの熱風必要に応じて蒸気をも含
む熱風を吹込んで空気を調溢認湿して、室1に送込み、
エアコンとして使用する。この方法によると極めて温度
、湿度の制御が簡単で確実に行なうことができる。
In this case, the refrigerator 29 is used as a heat pump, the heat radiation pipe is used as an endothermic pipe, and the heat exchange pipe 3
4 acts as a heat dissipation pipe, whereby the water in the water tank 24 is heated, the hot water is pumped through the mist port 15, and heat exchanged with the air from the chamber 1, resulting in cyclone dehydration and separation. Warm air is blown into chamber 1 from vessel 7. Furthermore, this device can also be used as an air conditioner. In this case, the air is first cooled to saturated humidity in the heat exchange chamber 39 mainly by cold water mist, and then sent to the cyclone type dehydration separator 7, and the hot air from the pipe 10, which also contains steam as necessary, is The air is blown into room 1 to control its humidity, and then
Use as an air conditioner. According to this method, temperature and humidity can be controlled extremely easily and reliably.

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

図面はこの発明による無菌調温調湿空気製造装置の概略
図である。 1…・・・室、5・・・・・・サイクロン式熱交換器、
7・・・・・・サイクロン式脱水分離器、24・・・・
・・水タンク、29・・・・・・冷凍器(又はヒートポ
ンプ)、31・・・・・・放熱パイプ(又は吸熱パイプ
)、34・・・・・・熱交換用パイプ、39・・…・熱
交換チャンバ、40・・・・・・断熱層。
The drawing is a schematic diagram of a sterile temperature-controlled and humidity-controlled air production device according to the present invention. 1... Chamber, 5... Cyclone heat exchanger,
7...Cyclone type dehydration separator, 24...
... Water tank, 29 ... Refrigerator (or heat pump), 31 ... Heat radiation pipe (or heat absorption pipe), 34 ... Heat exchange pipe, 39 ... - Heat exchange chamber, 40... heat insulation layer.

Claims (1)

【特許請求の範囲】 1 室から回収された空気に水を噴霧して飽和湿度に調
温するサイクロン式熱交換器及び飽和湿度に調温された
空気を脱水分離し調温調湿できるサイクロン式脱水分離
器を含んでおり、前記サイクロン式熱交換器で噴霧され
た水は回収濾過されそれから前記サイクロン式熱交換器
の熱交換チヤンバの周囲を囲んでいる水タンクに送込ま
れて再び前記サイクロン式熱交換器で噴霧されるように
循環させられ、更に前記水タンク内には熱交換用パイプ
が配置されていることから成ることを特徴とする無菌調
温調湿空気製造装置。 2 前記室は冷蔵庫であり、前記熱交換用パイプは冷凍
器に連結され、循環させられる水は冷水にされ、空気は
飽和湿度に冷却されて前記室に吹込まれることを特徴と
する特許請求の範囲第1項に記載の装置。 3 前記室は温蔵庫であり、前記熱交換用パイプはヒー
トポンプに連結され、循環させられる水は温水にされ、
空気は調温調湿されて前記室に吹込まれることを特徴と
する特許請求の範囲第1項に記載の装置。 4 エアコンに利用できることを特徴とする特許請求の
範囲第1項に記載の装置。 5 前記冷凍器に連結された放熱パイプは断熱層を介し
て前記水タンクの外周に配置されていることを特徴とす
る特許請求の範囲第2項に記載の装置。 6 前記ヒートポンプに連結された吸熱パイプは断熱層
を介して前記水タンクの外周に配置されていることを特
徴とする特許請求の範囲第3項に記載の装置。
[Claims] 1. A cyclone type heat exchanger that sprays water on the air collected from a room to control the temperature to saturated humidity, and a cyclone type that can dehydrate and separate the air whose temperature has been adjusted to saturated humidity to control the temperature and humidity. a dehydration separator, the water atomized by the cyclone heat exchanger is collected, filtered, and then pumped into a water tank surrounding the heat exchange chamber of the cyclone heat exchanger and returned to the cyclone. 1. A sterile temperature-controlled and humidity-controlled air production device, characterized in that the air is circulated in a sprayed manner using a heat exchanger, and a heat exchange pipe is disposed within the water tank. 2. A patent claim characterized in that the chamber is a refrigerator, the heat exchange pipe is connected to a refrigerator, the water to be circulated is turned into cold water, and the air is cooled to saturated humidity and blown into the chamber. Apparatus according to scope 1. 3. The room is a hot storage, the heat exchange pipe is connected to a heat pump, and the water to be circulated is heated,
2. The apparatus according to claim 1, wherein the air is blown into the chamber with its temperature and humidity controlled. 4. The device according to claim 1, which can be used in an air conditioner. 5. The apparatus according to claim 2, wherein the heat radiation pipe connected to the refrigerator is arranged around the outer periphery of the water tank via a heat insulating layer. 6. The device according to claim 3, wherein the heat absorption pipe connected to the heat pump is arranged around the outer periphery of the water tank via a heat insulating layer.
JP52031520A 1977-03-24 1977-03-24 Sterile temperature and humidity controlled air production equipment Expired JPS6015862B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP52031520A JPS6015862B2 (en) 1977-03-24 1977-03-24 Sterile temperature and humidity controlled air production equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP52031520A JPS6015862B2 (en) 1977-03-24 1977-03-24 Sterile temperature and humidity controlled air production equipment

Publications (2)

Publication Number Publication Date
JPS53117854A JPS53117854A (en) 1978-10-14
JPS6015862B2 true JPS6015862B2 (en) 1985-04-22

Family

ID=12333457

Family Applications (1)

Application Number Title Priority Date Filing Date
JP52031520A Expired JPS6015862B2 (en) 1977-03-24 1977-03-24 Sterile temperature and humidity controlled air production equipment

Country Status (1)

Country Link
JP (1) JPS6015862B2 (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS6382176U (en) * 1986-11-18 1988-05-30

Families Citing this family (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
AU531696B2 (en) * 1979-02-20 1983-09-01 Commonwealth Industrial Gases Limited, The Refigeration apparatus
JPS5616042A (en) * 1979-07-20 1981-02-16 Masahiko Izumi Air conditioner capable of removing bacilli
JPS5813979A (en) * 1981-07-20 1983-01-26 泉 正彦 Refrigerator
JPS58214732A (en) * 1982-06-08 1983-12-14 Masahiko Izumi Dust and fungus proof air conditioning apparatus
JPS60118171A (en) * 1983-11-29 1985-06-25 Masahiko Izumi Disinfective hot storage and installation therefor

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS6382176U (en) * 1986-11-18 1988-05-30

Also Published As

Publication number Publication date
JPS53117854A (en) 1978-10-14

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