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Closed Circuit Cooling Tower

Closed Circuit Cooling Tower
Closed Circuit Cooling Tower
Closed Circuit Cooling Tower
Closed Circuit Cooling Tower
Closed Circuit Cooling Tower
 

Closed Circuit Cooling Tower Trade Information

  • Minimum Order Quantity
  • 1 Unit
  • Payment Terms
  • Cash Against Delivery (CAD), Cash Advance (CA), Cash in Advance (CID), Cheque
  • Delivery Time
  • 1 Days
  • Main Domestic Market
  • Gujarat
 

About Closed Circuit Cooling Tower

A closed-circuit cooling towercools a process fluid without it coming into direct contact with the atmosphere by circulating it through a coil, while a separate water circuit is sprayed over the coils to provide evaporative cooling. This setup keeps the primary process fluid clean and uncontaminated by external elements like dirt or pollutants. It is suitable for applications where the fluid is sensitive to contamination or when the risk of freezing must be mitigated with additives like glycol.
How it works
  • Two separate fluid circuits:A closed-circuit tower has two distinct circuits.
    • Primary circuit:This is a closed loop that contains the process fluid (e.g., water, or water and glycol) and circulates it inside a tube bundle or coil.
    • Secondary circuit:This is an external, open circuit where recirculating water is sprayed over the outside of the coils.
  • Heat transfer:Heat from the primary process fluid is transferred through the coil walls to the secondary spray water.
  • Evaporative cooling:Fans draw air through the spray water, causing some of it to evaporate. This evaporation removes heat from the water, which in turn cools the coils and the process fluid inside them.
  • Contamination prevention:The process fluid never comes into contact with the air or the external spray water, preventing contamination and allowing for additives like glycol to be used without leaving residue in the system.
Key advantages
  • Keeps fluid clean:The primary fluid remains pure, which is essential for processes like food production or when it's critical to maintain its chemical and physical characteristics.
  • Reduces freezing risk:Adding antifreeze (glycol) to the process fluid is possible, making it suitable for cold climates.
  • Simpler system:It can be a more efficient and simpler alternative to a system using an open cooling tower and a separate heat exchanger.
  • High efficiency:Closed-loop systems can be highly efficient, especially when designed to work with a hybrid system that can switch between wet and dry cooling modes.
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