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Copper Tube Coil Immersion Heat Exchanger


Copper Coil tube type heat exchanger,also called copper helical coil heat exchanger, is a serpentine heat exchanger, typically consists by a copper tube which is bent as needed into a desired shape, such as circular, spiral, and the long serpentine. Sometimes,double copper tubes are bent in parallel in order to get better performance.At the both ends,usually are welded with brass joints.It was the first appearance of a heat transfer equipment, simple structure, easy operation.The main advantage is very high heat exchanging efficient. Usually used as immersion heat exchanger.

Product Features:

  • Made from one copper tube;

  • Also available on Aluminium Tube or Stainless Tube.

  • Excellent heat exchanging performance;

  • Available for  circular, spiral, and the long serpentine;

  • Finned tube is also working;

  • Available for various dimensions;

  • Can be welded with brass joints;

  • All items are performed full testing before delivery.



Copper tube coil immersion heat exchanger is used to transfer heat in a wide variety operating conditions. coil immersion heat exchanger is more efficient than shell and tube exchangers for low flow rates. Due to their simple construction they are low in price and convenient to clean on the shell side. Thermal efficiency approximates that a true countercurrent flow type exchanger. Condenserors are used for condensation vapours cooling liquids. Condensers are made by fusing number parallel coils in a glass shell. Copper tube coil immersion heat exchanger is artificial to special requirements as to dimensional tolerances, finish and tempers for use in condensers and heat exchangers. Copper heat exchanger tubes are normally supplied in straight length in annealed half hard temper. It is not only have the stiff tolerances the most dependable dimensions throughout the tube length. The tube surface is clean both inside. Coils are made in different diameters using tubes different bores.

Copper Tube Helical Coil Heat Exchanger
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