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Steam & Water Thermic Fluid Heaters

Supplier : Spac Power Engineering

Key Features of Steam & Water Thermic Fluid Heaters
  • Good heat-transfer coefficient of heat carrier with temperature handling in system up to 300?C
  • Rapid start-up of heating action
  • Absolute control of temperatures regulating accuracy + I %
  • No overheating at heat consumer as a result of precise temperature control
  • Centralised unit for several consumption points
  • Steam-less heat carriers for perfectly normal load on system [which is even less expensive]
  • Designed to ensure no explosion possible within the system
  • Heat carriers employed remain pump-able at normal temperature ensuring no risk of freezing [Systems can therefore be installed/ used for cooling purposes in open air]
  • Superior designs make it technically possible to install systems whose heat carrier will serve both for heating & for cooling
  • No sedimentation occurring during circulation
  • No losses in volume of circulating heat carrier due to enclosed circuit
  • Vertical/ horizontal type of construction
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Product Profile of Steam & Water Thermic Fluid Heaters
Spac Power Engineering manufactures Steam & Water Thermic Fluid Heaters. Spac Power Engineering is an ISO 9001:2001 certified manufacturer of industrial high pressure boilers, stainless steel reaction vessels, heaters and burners. Steam & Water Thermic Fluid Heaters are Based on unique design concept that retrieve heat from exhaust gases.

Key Features of Steam & Water Thermic Fluid Heaters
  • Good heat-transfer coefficient of heat carrier with temperature handling in system up to 300?C
  • Rapid start-up of heating action
  • Absolute control of temperatures regulating accuracy + I %
  • No overheating at heat consumer as a result of precise temperature control
  • Centralised unit for several consumption points
  • Steam-less heat carriers for perfectly normal load on system [which is even less expensive]
  • Designed to ensure no explosion possible within the system
  • Heat carriers employed remain pump-able at normal temperature ensuring no risk of freezing [Systems can therefore be installed/ used for cooling purposes in open air]
  • Superior designs make it technically possible to install systems whose heat carrier will serve both for heating & for cooling
  • No sedimentation occurring during circulation
  • No losses in volume of circulating heat carrier due to enclosed circuit
  • Vertical/ horizontal type of construction
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