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ASME SA192 Serrated Finned Tube For Boiler and Heat Exchanger
ASME SA192 Serrated Finned Tubes are specialized heat transfer components widely used in industries such as power generation, petrochemical, and refineries. These tubes are designed to enhance heat exchange efficiency by increasing the surface area available for heat transfer. Their serrated (or segmented) fins provide additional turbulence to the surrounding fluid, improving thermal performance.
Key Features:
1. Material Standard:
The base tube complies with the ASME SA192 specification, which is designed for high-pressure boiler applications. It is known for its excellent thermal conductivity, high strength, and superior performance under extreme conditions.
2. Serrated Fins:
Serrated fins are segmented or notched fins that enhance heat transfer by increasing turbulence. Compared to plain fins, serrated fins provide greater efficiency in heat exchange processes.
3. Heat Transfer Efficiency:
The serrated design significantly improves the heat transfer rate by disrupting laminar flow and promoting better heat exchange between the fluid and the finned surface.
4. Corrosion Resistance:
Depending on the application, the fin material can be selected to resist corrosion, making these tubes suitable for harsh environments.
5. Durability and Performance:
These tubes are designed to withstand high temperatures and pressures, making them ideal for demanding applications such as boilers, heat exchangers, and economizers.
Advantages:
· Enhanced Heat Transfer: Serrated fins provide an improved surface area for better thermal performance.
· Compact Design: The increased efficiency allows for smaller, more compact equipment designs.
· Cost Efficiency: Improved thermal performance reduces operational energy costs.
· Long Service Life: Durable materials ensure longevity even under extreme operating conditions.
Applications:
· Boilers: For efficient heat transfer in high-pressure steam applications.
· Economizers: To recover waste heat and improve overall thermal efficiency in power plants.
· Heat Exchangers: For a variety of industrial processes where efficient heat transfer is required.
· Petrochemical Industry: For cooling and heating applications in refineries and chemical plants.