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首页> 外文期刊>International communications in heat and mass transfer >Experimental investigation of condensation heat transfer on chlorotriethylsilane coated grooved vertical tube
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Experimental investigation of condensation heat transfer on chlorotriethylsilane coated grooved vertical tube

机译:氯三乙基硅烷包覆的沟槽式立管冷凝水传热的实验研究

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摘要

The role of surface modification technology in augmenting condensation heat transfer from surfaces had been recently of significant interest due its application in various industrial systems. In this work, steam condensation test was conducted to estimate the heat transfer characteristics of bare vertical copper tube, helically grooved vertical copper tube with and without coating. The pitch helical grooves were varied by 3.17 mm, 4.35 mm, 6.35 mm each with depth 0.4 mm and the bare, grooved copper tube coated with chlorotriethylsilane of thickness 150 mu m. Experiments were conducted by varying the degree of sub-cooling from 3.8 degrees C <= Delta T <= 28.5 degrees C. Results showed that helically grooved copper tube outperformed bare copper tube for the range of sub-cooling. Among the grooved copper tubes, tube with pitch of 6.35 mm showed an enhancement in condensation heat transfer coefficient up to 37.1% compared to the bare copper tube at a degree of sub-cooling Delta T = 28 degrees C. Furthermore, coating the grooved copper tube of pitch 6.35 mm chlorotriethylsilane reported a heat transfer improvement of 67.7% at a degree of sub-cooling Delta T = 28 degrees C compared to bare copper. However at low degree of sub-cooling (Delta T <= 17 degrees C) even though similar trend was observed it cannot be quantified due to the large experimental uncertainties.
机译:由于在各种工业系统中的应用,表面改性技术在增强表面冷凝水传热中的作用引起了人们的极大兴趣。在这项工作中,进行了蒸汽冷凝试验以估计裸露的垂直铜管,带涂层和不带涂层的螺旋沟槽垂直铜管的传热特性。螺距螺旋槽的深度分别为3.17 mm,4.35 mm,6.35 mm,深度为0.4 mm,裸露的开槽铜管涂有厚度为150μm的氯三乙基硅烷。通过将过冷度从3.8°C <= Delta T <= 28.5°C改变来进行实验。结果表明,在过冷范围内,螺旋凹槽铜管的性能优于裸铜管。在带槽的铜管中,节距为6.35 mm的管在过冷度Delta T = 28℃下比裸铜管显示出高达37.1%的冷凝传热系数。此外,涂覆带槽的铜相较于裸铜,节距为6.35毫米的氯三乙基硅烷管在过冷度Delta T = 28摄氏度时传热改善了67.7%。但是,在较低的过冷度(Delta T <= 17摄氏度)下,即使观察到相似的趋势,由于实验不确定性大,也无法量化。

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