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首页> 外文期刊>Biofouling >Impact of the surface roughness of AISI 316L stainless steel on biofilm adhesion in a seawater-cooled tubular heat exchanger-condenser
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Impact of the surface roughness of AISI 316L stainless steel on biofilm adhesion in a seawater-cooled tubular heat exchanger-condenser

机译:AISI 316L不锈钢的表面粗糙度对海水冷却管式热交换器-冷凝器中生物膜附着力的影响

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摘要

The present study evaluated biofilm growth in AISI 316L stainless steel tubes for seawater-cooled exchanger-condensers that had four different arithmetic mean surface roughness values ranging from 0.14 mu m to 1.2 mu m. The results of fluid frictional resistance and heat transfer resistance regarding biofilm formation in the roughest surface showed increases of 28.2% and 19.1% respectively, compared with the smoothest surface. The biofilm thickness taken at the end of the experiment showed variations of up to 74% between the smoothest and roughest surfaces. The thermal efficiency of the heat transfer process in the tube with the roughest surface was 17.4% greater than that in the tube with the smoothest surface. The results suggest that the finish of the inner surfaces of the tubes in heat exchanger-condensers is critical for improving energy efficiency and avoiding biofilm adhesion. This may be utilised to reduce biofilm adhesion and growth in the design of heat exchanger-condensers.
机译:本研究评估了用于海水冷却的交换冷凝器的AISI 316L不锈钢管中生物膜的生长,该冷凝器具有四种不同的算术平均表面粗糙度值,范围从0.14μm到1.2μm。与最光滑表面相比,与最粗糙表面上的生物膜形成有关的流体摩擦阻力和传热阻力结果分别增加了28.2%和19.1%。实验结束时采集的生物膜厚度显示,最光滑和最粗糙的表面之间的变化高达74%。表面最粗糙的管子的传热过程的热效率比表面最光滑的管子的传热效率高17.4%。结果表明,热交换器冷凝器中管子内表面的光洁度对于提高能源效率和避免生物膜粘附至关重要。在热交换器-冷凝器的设计中,这可用于减少生物膜的粘附和生长。

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