COOLING SYSTEM USING CO2 COOLANT
PROBLEM TO BE SOLVED: To curb deterioration of cooling performance, when sending CO2 coolant to a load side cooling unit, by preventing generation of flash gas and input heat through inexpensive means.SOLUTION: A cooling system using CO2 coolant comprises: a primary coolant circuit 12; a secondary c...
Gespeichert in:
Hauptverfasser: | , , , |
---|---|
Format: | Patent |
Sprache: | eng ; jpn |
Schlagworte: | |
Online-Zugang: | Volltext bestellen |
Tags: |
Tag hinzufügen
Keine Tags, Fügen Sie den ersten Tag hinzu!
|
Zusammenfassung: | PROBLEM TO BE SOLVED: To curb deterioration of cooling performance, when sending CO2 coolant to a load side cooling unit, by preventing generation of flash gas and input heat through inexpensive means.SOLUTION: A cooling system using CO2 coolant comprises: a primary coolant circuit 12; a secondary coolant circuit 14 which is connected to the primary coolant circuit 12 through a cascade condenser 24; and a receiver 30 which stores the CO2 coolant (secondary coolant) liquefied by the cascade condenser 24 and performs gas-liquid separation thereof. The secondary coolant circuit 14 has: an outward passage 14a which introduces the liquefied CO2 coolant into a load side cooling unit 16; and a return passage 14b which returns the CO2 coolant in a gas-liquid mixed state after cooling a cooled object to the receiver 30. The outward passage 14a and the return passage 14b in a section between a liquid pump 34 installed on the outward passage 14a and the load side cooling unit 16 are configured to be double pipes 40A having double walls. The outward passage 14a is connected to an inner flow passage F1 of the double pipe 40A and the return passage 14b is connected to an outer flow passage F2 of the double pipe 40A.
【課題】CO2冷媒を負荷側冷却器に送る場合に、低コスト化な手段でフラッシュガスの発生や入熱等をなくし、冷却能力のロスを抑制する。【解決手段】一次冷媒回路12と、一次冷媒回路12とカスケードコンデンサ24を介して接続された二次冷媒回路14と、カスケードコンデンサ24で液化されたCO2冷媒(二次冷媒)を貯留し気液分離するレシーバ30とを備えている。二次冷媒回路14はCO2冷媒液を負荷側冷却器16に導入する往路14aと、負荷側冷却器16で被冷却物を冷却した後の気液混合状態のCO2冷媒をレシーバ30に戻す復路14bとからなる。往路14aに設けられた液ポンプ34と負荷側冷却器16との間の領域で、往路14aと復路14bとは二重壁で形成された二重管40Aで構成されている。往路14aは二重管40Aの内側流路F1に接続され、復路14bは外側流路F2に接続されている。【選択図】図1 |
---|