• Double-flow closed-circuit cooling tower
  • Double-flow closed-circuit cooling tower
  • Double-flow closed-circuit cooling tower
  • Double-flow closed-circuit cooling tower
  • Double-flow closed-circuit cooling tower
  • Double-flow closed-circuit cooling tower
  • Double-flow closed-circuit cooling tower
  • Double-flow closed-circuit cooling tower
Double-flow closed-circuit cooling tower
Double-flow closed-circuit cooling tower
Double-flow closed-circuit cooling tower
Double-flow closed-circuit cooling tower
Double-flow closed-circuit cooling tower
Double-flow closed-circuit cooling tower
Double-flow closed-circuit cooling tower
Double-flow closed-circuit cooling tower
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Double-flow closed-circuit cooling tower


The spray water and wind direction form a compound form, with the wind being divided into two streams: one stream of cold air enters vertically from the top, and the other stream enters horizontally from the side. These streams cross and exchange heat with the falling spray water through the packing material, lowering the spray water temperature. Water droplets carried by the airflow are blocked by the side water collector and drip into the lower tank for recycling and reuse. Due to the thorough mixing of the spray water and cold air, the cooling and temperature reduction are significant, bringing the temperature closer to the wet-bulb temperature.

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Double-flow closed-circuit cooling tower

Double-flow closed-circuit cooling tower


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