Manufacturers & Exporters of Flanges, Pipe Fittings & Tube Fittings

Shell & Tube Heat Exchanger

What is Shell & Tube Heat Exchanger?

A Shell and Tube Heat Exchanger is a heat exchanger consisting of a shell (a large outer vessel) and a bundle of tubes within it. The fluid to be heated or cooled flows through the tubes, while the heat exchange fluid (typically water or air) flows around the outside of the tubes within the shell. This design allows for efficient heat transfer between the two fluids.

Shell and Tube Heat Exchanger
Shell and Tube Heat Exchanger

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One notable feature of Shribhairav Metal Corporation is its commitment to rigorous pressure vessel testing. Stringent quality control measures are implemented throughout manufacturing to ensure the vessels meet or exceed ASME standards. This includes non-destructive testing methods such as radiography, ultrasonic testing, and pressure testing to guarantee the structural integrity and safety of the pressure vessels.

Shell and Tube Heat Exchangers are versatile and widely used due to their efficiency, reliability, and adaptability to various industries and applications. The design variations and material choices allow customization based on specific requirements and operating conditions.

Shribhairav Metal Corporation is a prominent manufacturer of top-quality shell and tube heat exchangers. With a strong focus on innovation and precision engineering, Tinita Engineering excels in manufacturing state-of-the-art heat exchange solutions tailored to diverse industrial needs. As esteemed shell and tube heat exchanger manufacturers, our expertise lies in designing robust systems that ensure optimal heat transfer efficiency and durability. Additionally, serving as reliable shell and tube heat exchanger suppliers, we offer a comprehensive range of products to meet the demanding requirements of various sectors, cementing their reputation as a trusted partner in India's industrial ecosystem.

Heat Exchanger specification

  1. Temperature: The permissible temperature range for both the shell and tube sides is usually between 40° C and 150° C. The maximum permissible temperature difference between the shell and tube sides is usually 120° C.
  2. Pressure: The maximum operating pressure is usually 600 bar.
  3. Transfer surface: The transfer surface can range from 0.11 m² to 2.000 m²
  4. Shell diameter: The shell diameter can range from 60 mm to 2.000 mm
  5. Materials: The tubing used in shell and tube heat exchangers is usually made from low carbon steel, Admiralty, copper, copper-nickel, stainless steel, Hastelloy, Inconel, or titanium.

Applications of Shell and Tube Heat Exchangers:

Heat Exchanger fittings are versatile and can be used in various applications across different industries:

  • Chemical Processing: Shell and Tube Heat Exchangers are extensively used in chemical plants to cool or heat liquids and gases involved in reactions.
  • Oil Refining: In the petroleum industry, these heat exchangers are employed to cool hot oil streams or condense vapors during the refining process.
  • Power Generation: hey play a crucial role in power plants for cooling turbine lubricating oil, condensing steam in steam turbines, or preheating feedwater.
  • HVAC Systems: Heating, ventilation, and air conditioning systems exchange heat between refrigerant gases and water or air.
  • Food and Beverage Industry: Shell and Tube Heat Exchangers are used in food processing for pasteurization, sterilization, and cooling of various food products and ingredients.
  • Pharmaceuticals: Pharmaceuticals are used for precise temperature control in pharmaceutical manufacturing processes, ensuring product quality and consistency.

Features of Shribhairav Metal Corporation Heat Exchanger

  • Design: The basic design consists of a cylindrical shell with a bundle of tubes running through it. Depending on the application, the tube bundle is often U-shaped, known as a U-tube shell and tube heat exchanger or straight.
  • Materials: Depending on the fluids and operating conditions, these heat exchangers can be constructed using various materials, including metals such as stainless steel and carbon steel.
  • Tube Arrangement: Tubes can be arranged in parallel or in a triangular or square pattern within the shell. The arrangement affects the heat transfer efficiency and pressure drop.
  • Baffles: Baffles are often used within the shell to direct the flow of the heat exchange fluid, enhancing turbulence and improving heat transfer efficiency.
  • Tube Passes: The number of times the fluid flows through the tube bundle is the number of tube passes. Multiple passes enhance heat transfer but may increase pressure drop.

Shell and Tube Heat Exchanger

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Heat Exchanger Application Industries

Application Industries

Refineries

90%

Oil and Gas Industry

96%

Power Generation

80%

Pharmaceutical Equipment

85%

Pulp & Paper Industry

88%