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Enhanced Surface Element Cooler with High-Fin Tubing

The enhanced surface element cooler operates on the principle of allowing the heat medium or refrigerant to pass through the inner cavity of the metal pipe while the air to be treated.

Excellent performance is achieved by using a thin wall copper tube to pass through double-sided aluminum fins, high finned tubes, middle finned tubes, and low finned tubes, all of which have high heat transfer efficiency and low water resistance.

Excellent performance is achieved by using a thin wall copper tube to pass through double-sided aluminum fins, high finned tubes, middle finned tubes, and low finned tubes, all of which have high heat transfer efficiency and low water resistance.

According to the height of the fins, finned tubes can be classified as high, medium, or low finned tubes. High finned tubes are the most widely used air heat exchangers. Most air heat exchangers use seamless steel tubes as the base tubes and high finned tubes as the heat exchange elements. Fins are typically utilized outside the tubes, with air or flue gas flowing through the finned tubes while water, oil, steam, and refrigerant typically pass through the tube side.
1. The low-finned tube, whose fin height is barely 1-2mm, is directly extruded from the tube material. In a shell and tube heat exchanger, a common low finned tube measures 1.6 mm. The contact thermal resistance of the finned tube does not need to be taken into account.
2. Shell and tube heat exchangers and other pressure vessel equipment frequently use medium finned tubes, which are about 3.2 mm in diameter.
3. Depending on the working circumstances, the high finned tubes heights range from 6.4 to 25 mm and are typically utilized for air heat exchangers.
Many industrial applications use air heat exchangers with high finned tubes as the heat exchanger parts. Such heat exchangers are frequently utilized when the fluid is under high pressure on one side or when the heat transfer coefficient is significantly greater on the other side. For instance, in gas-liquid heat exchangers, the liquid sides heat transfer coefficient is often significantly higher than the gas sides, and the gas side typically has fins added to enhance its heat transfer area.

Enhanced Surface Element Cooler:
Application: Inter- and after cooling for compressed gases e.g. centrifugal compressors
Enhanced Surface Element Cooler Capabilities:
Enhanced Surface Element Cooler Design Pressure: [2 - 90] bars [29-1305] PSIG
Enhanced Surface Element Cooler Design Temp.: [-25 - 200] °C [-13 - 392] °F
Min. Flow Rate: [~ 7000] Nm³/h [~ 4120] scfm
Shell Diameter: [560 - 3500] mm [22 - 138] inch
Materials: CS, SS, CuNi alloys, Titanium, cladded plates, Al and Cu fins.

Enhanced Surface Element Cooler Range of Products
Enhanced Surface Element Cooler is process equipment for the compressor-, chemical- and refinery industry.
OIL CONSOLE Lube-,Seal-, & Control Oil System:
Application: Compressor systems, off-gas expander, process pumps, steam turbines and gas turbines
OIL CONSOLE Lube-,Seal-, & Control Oil System Capabilities:
Max. Flow Lube Oil Sys.: [~ 3600] l/min [~ 952] GPM
Design Pressure: [30] bar [435] psi
Max. Flow Seal Oil Sys.: [~ 250] l/min [~ 66] GPM
Design Pressure: [150] bar [2176] psi
Materials: Carbon Steel, Stainless Steel
Scope: Pumps, filter, accumulator, oil cooler, piping, reservoir, and instrumentation.

Shell & Tube Heat Exchangers:
Shell & Tube Heat Exchangers Application: Cooling or heating for gases and liquids, e.g. Oil cooler, gas cooler, Pre-heater
Shell & Tube Heat Exchangers Capabilities:
Design Pressure: [2 - 250] bars [29 - 3625] PSIG
Design Temp.: [-25 - 350] °C [-13 - 662] °F
Shell Diameter: [80 - 4000] mm [3 - 157] inch
Max. Weight: [100] t
Materials: CS, SS, Duplex, Cu, Admiralty, CuNi alloys, Titanium, cladded plates
Scope: Complete heat exchanger, external or internal moisture separator.

HFT High-Fin Tubing:
Tube Types: Spiral-Wound Wrapped HF, Bi-Metallic HF
Fin Types: I-Fin, G-Fin, L-Fin, E-Fin
Fin Material: Al, Cu , CS
Tube Material: Cu, CuNiAlloy,Admirality, SS, CS, Duplex
Surface Condenser System:
Surface Condenser System Application: Condensing of steam exiting a steam turbine, power generation, chemical industry and marine applications.
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