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熱伝達の高い有効の溶接のボイラーひれ付き管の熱交換器
Heat Transfer Welding Boiler Finned Tube Heat Exchanger High Efficient Technical parameter Medium air, flue gas, thermal oil, water, brine, refrigerant, etc. Temperature standard heat exchanger to 560 ° C by special materials can be higher Pipe materials carbon steel, stainless steel, alloy or special materials Ribs materials carbon steel, stainless steel, non-ferrous metal, alloy or special materials Thermal insulation &Surface treatment according to customers specification
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CS/ボイラー エコノマイザのためのND/ステンレス鋼のボイラーひれ付き管の熱交換器
Boiler Pressure Parts CS/ND/Stainless Steel Boiler Fin Tube Heat Exchanger For Coal-fired Boiler Economizers Product Description Finned tube is used to recover heat from flue gas exhaust of power plant boilers, industrial boilers, industrial kilns and marine power plants, make full use of waster heat, save energy, protect environment and reduce emissions, and improve fuel utilization rate, they are the strengthened heat exchange elements arranged at the tail of the fuel duct
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最もよい価格のコイルのエコノマイザのためのステンレス鋼Hのタイプひれ付き管のSprialのFinned管
Boiler H Type and Spiral Fin Tube Product Description 1.Finned Tube Heat Exchangers consist of a shell and finned tubes assembly. 2.Fins are used to increase the effective surface area of heat exchanger tubing. 3.Finned tubes are used when the heat transfer coefficient on the outside of the tubes is appreciably lower than that on the inside;as in heat transfer from a liquid to a gas,vapor to a gas ,such as steam to air heat exchanger, thermic fluid to air heat exchanger, when
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アルミニウム ステンレス鋼の溶接のFinned管、ひれ付き管のヒーター1年の保証
Aluminum , Stainless Steel Welding Finned Tubes For High Efficient Heat Transfer Introduction of Product Compared to the traditional fin tube or spiral tube,the H-fin tube can greatly expand the heating surface.H-fin Tubes have two steel discs,with fluorescent tubes symmetrically welded together to form fins(fins of butterfly piece)creating a shape that looks somewhat like the letter"H",creating an efficient energy saving, extension heating surface. Standard: ASME Standard Or
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動力火車のための長い寿命のボイラーひれ付き管SSのCSの合金鋼材料
High quality boiler fin tube SS CS Alloy steel material for power station Product Description The finned tube is a heat exchanger.Is to improve the heat exchange efficiency, usually in the heat exchange pipe surface by adding fins, increase the heat exchange pipe surface area (or internal surface area), so as to improve the heat exchange efficiency, such a heat exchange pipe. 1). Add the heat exchange area and reduce the number of tubes, also increase the fume flow section
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二重Hのボイラーひれ付き管NDの鋼鉄38*4裸の管NDの鋼鉄ひれ2の厚さ185の幅GBの標準
Double H Fin Tube ND Steel 38*4 bare tube ND Steel Fins 2 thickness 185 width GB standard Product Description 1.H-fin Tubes have two steel discs,with fluorescent tubes symmetrically welded together to form fins(fins of butterfly piece)creating a shape that looks somewhat like the letter"H",creating an efficient energy saving, extension heating surface. 2.H-fin Tubes also have a high rate of fusion welds and weld tensile strength.H-fin Tube is assembled with the H economizer,
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エコノマイザ、高性能のための高く有効なボイラーH管のひれの熱交換器
High Efficient Boiler H Tube Fin Heat Exchanger For Economizer , High Performance Product Description Our products can be modified according to our customers' needs and the situation.we design and manufacture safe,reliable and efficient H-fin tubes.HD BOILER has also completed stand-alone product quality assurance systems.Production of H-fin tubes are with high heat transfer efficiency, they have flue gas resistance and are designed for a small space. Product H-fin Tube Base
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エコノマイザのためのボイラーH管のひれの熱交換器
Customized Boiler H Tube Fin Heat Exchanger For Economizer , ASME Standard Product Feature 1. the h-type finned tube economizer is used to replace the light tube economizer, which can increase the heat transfer area and reduce the number of pipe arrangement, so as to increase the flue gas flow section and reduce the smoke speed and wear.Since the abrasion speed of the pipe is directly proportional to the flow rate of the flue gas at 3.33 times, if the flue gas velocity