検索 すべて検索

How does the Chiller System Perform the Refrigeration Cycle?

分類業界ニュース 201

How does the Chiller System Perform the Refrigeration Cycle?

 

Process cooling systems may be used in industrial machinery to prevent overheating of the machinery. They are very effective at keeping the product at the optimum temperature, but how do chillers work? Understanding how process chillers work can help in choosing the ideal refrigeration system.

The working principle of the chiller:

Simply put, industrial chillers are primarily used to cool process fluids. Process fluids (usually water or a mixture of water and glycol) are used to cool machinery, equipment, and more. The process fluid absorbs heat from the object being cooled, which is then removed from the fluid by a chiller and transferred to the ambient air.

Refrigeration circuit:

An industrial chiller or glycol chiller system consists of two main circuits: the refrigeration circuit and the fluid circuit. The refrigeration circuit consists of four parts: compressor, condenser, expansion valve and evaporator. The refrigeration circuit removes heat from the process fluid. Fluid circuits typically consist of fluid reservoirs, pumps, filters and heat exchangers. The fluid circuit carries the process fluid around the object being cooled.

Refrigeration cycle steps:

The refrigeration circuit is the most technical part of how a chiller works. The refrigeration cycle utilizes the principles of thermodynamics to efficiently transfer heat from one area to another. During operation of the chiller, heat is extracted from the fluid being cooled and transferred to the ambient air.

コンプレッサー

The refrigeration cycle starts with the compressor. The low-pressure low-temperature refrigerant in liquid state will be compressed into high-pressure high-temperature gas.

condenser

The gas then flows through coils in the condenser. In the condenser, air or water will flow through the coils and remove heat from the refrigerant. As the refrigerant loses heat, it will begin to condense until all the gas has condensed into a liquid.

膨張弁

After leaving the condenser, the liquid passes through an expansion valve. The expansion valve restricts the flow of refrigerant. As the high pressure liquid passes through the expansion valve, it begins to enter the evaporator.

蒸発器

The evaporator is where the refrigerant begins to evaporate back into a gas. When the refrigerant evaporates, it becomes very cold and absorbs a lot of heat. The process fluid will interact with the refrigerant in the evaporator. Heat is removed from the fluid and transferred to the refrigerant. The refrigerant will then enter the compressor and the cycle begins again.

私たちは、最高級のオンタイムデリバリーをお約束 温度制御機器プロンプトが表示さに裏打ちされ、慎重アフターサービス。 ご相談ください 詳細はこちら!

 


ウォーターチラー

温度制御範囲:-150℃~+50

 

 


ダイナミック温度制御システム

温度制御範囲:-120°C~+350°C

 

 

 


自動車用テスト・チラー

温度制御範囲:-40℃~+100

 

 

 


半導体テストチラー

温度制御範囲:-85℃~+250

 

 

 


工業用冷蔵庫

温度制御範囲:-150℃~-10

 

著作権情報はlneya-online.comに帰属します。詳細はメールにてお問い合わせください: lilia@lneya.com

または、下記のWhatsAppまたはWeChatのQRコードをスキャンしてお問い合わせください。 

WhatsAPP WeChat

スキャン

前へ 次ページ
無料見積もりプラン

ロード...

购物车

X

我的足迹

X
キーワードウォーター・チラー喜びの瓶詰め ウォーター・チラーウォーターチラー