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Heat transfer and pressure drop in rectangular channel with compound roughness of V-shaped ribs and deepened scales

机译:V形肋和加深鳞片的复合粗糙度在矩形通道中的传热和压降

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摘要

A novel heat transfer enhancement (HTE) roughness with V-shaped ribs and deepened scales is devised. Performances of heat transfer and pressure drop in a rectangular channel fitted with such HTE surfaces are experimentally examined for both forward and backward flows in the Re range of 1000-30000. Relative to the smooth-walled pipe flow conditions, HTE ratios for the present test channel with forward and backward flows, respectively, reach 9.5-13.6 and 9-12.3 for laminar flows and 6.8-6.3 and 5.7-4.3 for turbulent flows. Comparisons of heat transfer data, pressure-drop measurements and thermal performance factors with previous results collected from varieties of HTE devices demonstrate the superiorities of this compound HTE device. The decrease of HTE ratio as Re increases for turbulent flows, which is a common setback for several HTE elements, is almost diminished in the channel fitted with present compound HTE surfaces. Experimental correlations of heat transfer and friction coefficient for the tested channel with forward and backward flows are derived for design applications.
机译:设计了具有V形肋和加深水垢的新型传热增强(HTE)粗糙度。实验研究了在装有这种HTE表面的矩形通道中,对于Re范围为1000-30000的正向和反向流动,其传热和压降性能均得到了验证。相对于光滑壁管的流动条件,当前测试通道的前向和后向流动的HTE比率对于层流分别为9.5-13.6和9-12.3,对于湍流分别为6.8-6.3和5.7-4.3。从各种HTE设备收集的传热数据,压降测量值和热性能因子与以前的结果进行比较,证明了这种复合HTE设备的优越性。在湍流中,随着Re的增加,HTE比率的降低(这是几种HTE元件的常见挫折)在装有本发明HTE复合表面的通道中几乎减小了。为设计应用推导了被测通道的热传递和摩擦系数与正向和反向流动的实验相关性。

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