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EXPERIMENTAL ANALYSIS OF MICROCONVECTIVE HEAT TRANSFER IN THE LAMINAR AND TRANSITIONAL REGIONS

机译:层流和过渡区微对流换热的实验分析

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This article details experiments to determine the Nusselt number for laminar and transitional liquid flows (water and FC-72) through rough stainless-steel microtubes of 440-, 280-, and 146-μm inner diameter. Under laminar conditions, the average Nusselt number approaches the fully developed value for uniformly heated tubes as Reynolds decreases. For higher Reynolds, the region of thermal development increases the average connective heat transfer coefficient, which becomes a function of the Reynolds and Prandlt numbers and of the inner diameter-to-heated-length ratio. The effect of roughness is negligible in the laminar regime. Under transition, the average Nusselt steeply increases with Reynolds, more than for conventional pipes.
机译:本文详细介绍了确定通过内径为440-,280-和146-μm的粗糙不锈钢微管的层流和过渡液体流(水和FC-72)的努塞尔数的实验。在层流条件下,随着雷诺数的减少,平均努塞尔数接近均匀加热管的完全展开值。对于较高的雷诺数,热发展区域会增加平均结缔热传递系数,这成为雷诺数和普朗特数以及内径与加热长度之比的函数。在层流状态下,粗糙度的影响可以忽略不计。在过渡期,雷诺兹平均努塞尔特急剧增加,超过了传统管道。

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