“U” Tube Heat Exchanger

High Performance, Easy Maintenance

Tanpera U Tube Heat Exchangers are specially designed for processes that require high temperature differences and frequent cleaning. They offer an effective heat transfer solution in demanding industries such as chemicals, energy and petrochemicals.

Description

“U” Tube Heat Exchanger

High Performance, Easy Maintenance

Tanpera U Tube Heat Exchangers are durable and efficient heat exchangers designed to optimize the temperatures of different fluids and save energy. Thanks to its high temperature and pressure resistance, it shows superior performance even in harsh conditions. The U-tube design, which stands out with its ease of cleaning and maintenance, provides flexibility and long life in heat transfer processes.

Working Principle

U Tube Heat Exchangers allow liquid or gaseous fluids to transfer heat by moving in pipes.

  • Fluid Movement: As fluids move along pipes, energy is exchanged between the fluid being heated or cooled.
  • Flexible Structure: The U-tube design tolerates expansion and contraction, providing resistance to thermal stresses.
  • Ease of Cleaning: The pipe design simplifies cleaning and maintenance, reducing operating costs.

Advantages

  1. High Durability: Selection of materials resistant to high temperature and pressure conditions.
  2. Easy Maintenance: Low maintenance costs thanks to the cleanable design of the pipes.
  3. Flexible Use: Suitable for different sectors such as chemicals, energy and petrochemicals.
  4. Energy Efficiency: Reduced energy consumption with optimized heat transfer surfaces.
  5. Long Lifetime: Long-lasting performance thanks to durable construction.

Technical Specifications

Technical Specifications

  • Pressure Resistance: Up to 40 bar.
  • Temperature Resistance: Up to 400°C.
  • Material Options: Stainless steel (AISI 304/316), carbon steel, titanium.
  • Design: Modular structure, easy installation and customization.

Areas of Use

Application Areas

  • Chemical Industry: Cooling and heating of chemical substances.
  • Power Plants: Steam generation and heat recovery.
  • Petrochemistry: Temperature control of high pressure fluids.
  • Cooling Systems: Compressor air cooling and oil cooling systems.
  • Food Industry: Precise heat transfer of liquid products.

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