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Single-phase laminar and turbulent heat transfer in smooth and rough microtubes

机译:光滑和粗糙微管中的单相层流和湍流传热

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摘要

An experimental campaign was carried out studying laminar and turbulent heat transfer in uniformly heated smooth glass and rough stainless steel microtubes from 0.5 mm down to 0.12 mm. Heat transfer in turbulent regime proved to be coherent—within experimental accuracy—with the classic Gnielinski correlation for the Nus-selt number. For the laminar case, an anomalous drop in Nusselt number for decreasing Reynolds number was observed in the smooth glass tubes. As the stainless steel tubes manifested relatively normal diabatic behaviour in this regime (apart from the evident influence of the thermal development region that increases heat transfer above the thermally fully developed value), the explanation of this unexpected diminution of the Nusselt number must be sought in the dispersion of heat, put in externally through the thin film deposited on the glass tube outer surface, to peripheral attachments to the test section. This distorts the measured energy balance of the experiment, especially as the convective force of the fluid diminishes, resulting in lower Nusselt numbers at lower Reynolds numbers.
机译:开展了一项实验活动,研究了均匀加热的光滑玻璃和粗糙的不锈钢微管(从0.5毫米降至0.12毫米)中的层流和湍流传热。在实验精度范围内,湍流状态下的传热与Nus-selt数的经典Gnielinski相关性被证明是连贯的。对于层流情况,在光滑的玻璃管中观察到努塞尔数的异常下降以减小雷诺数。由于不锈钢管在这种情况下表现出相对正常的绝热行为(除了热发展区域的明显影响,使传热增加至超过热充分发展的值),必须寻求有关努塞尔数这种意外减小的解释。热量的散布通过沉积在玻璃管外表面的薄膜从外部进入,并附在测试部分的外围。这扭曲了实验中测得的能量平衡,特别是当流体的对流力减小时,导致在较低的雷诺数下较低的努塞尔数。

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