Bangalore based company offers designing, development, detailed engineering and trouble-shooting services for Vacuum Distillation Systems, Thermic Fluid Heaters, Scrubbers, Solvent Recovery Systems, and Heat Exchangers.

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VACUUM DISTILLATION SYSTEMS
HIGH EFFICIENCY THERMIC FLUID HEATERS
GAS-LIQUID SCRUBBERS
SOLVENT RECOVERY SYSTEMS
HEAT EXCHANGERS

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HEAT EXCHANGERS

HEAT EXCHANGERS
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CHEMIPROR heat exchangers are optimally sized for all applications in the chemical industry like process heating, waste heat recovery, air heating, condensing , etc.

CHEMIPROR shell and tube heat exchangers are one of the process equipments which are abundantly used in the chemical and process industry. Whether it is for heating or cooling a liquid using either steam or hot thermic fluid, shell and tube heat exchangers offer the most versatile modes of heat transfer between two liquids. The versatility also extends to liquids that tend to foul the heat transfer surfaces, which otherwise cannot be heated or cooled in compact plate type heat exchangers.

CHEMIPROR finned tube heat exchangers are optimally designed for heating process air using hot thermic fluid and waste heat recovery from hot exhaust air streams leaving rotogravure printing, laminating and coating machines.

CHEMIPROR double pipe heat exchangers are used for heat exchange with liquid streams at low flowrates where conventional shell and tube heat exchangers cannot conveniently be used due to low heat transfer coefficients arising from low tube side velocities.

Optimized thermal design helps CHEMIPROR heat exchangers perform at minimum operating cost for a given rate of heat transfer between two fluids.

Applications

  • Air heating with hot thermal oil flow through tubes


  • Air cooling with cooling water flow through tubes


  • Gas cooling with cooling water flow through tubes


  • Pressurized water heating with hot thermic oil through tubes


  • Waste heat recovery


Execution of projects involving CHEMIPROR heat exchangers are backed by the following services:

  • Undertake complete design of shell and tube heat exchangers right from single to multiple passes both on tube as well as shell sides.


  • The design and sizing for a heat exchanger is optimized with respect to the pressure drop across the equipment.


  • The general arrangement drawings form the basis of manufacturing them.


  • Such heat exchangers are designed with various materials of construction, viz. carbon steel, stainless steel, hastelloy, glass and other noble alloys.


  • Step by step design using appropriately balanced heat transfer coefficients inside and outside the tubes prevents the use of metal or alloys having higher thermal conductivity like brass, copper, etc.


  • Design of adequate process control systems ensures accurate control of process temperature at the outlets of such heat exchangers.




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