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Size effect on microscale single-phase flow and heat transfer

机译:尺寸对微米级单相流动和传热的影响

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The present discussion will focus on the size effect induced by the variation of dominant factors and phenomena in the flow and heat transfer as the device scale decreases. Due to the larger surface to volume ratio for microchannels and microdevices, factors related to surface effects have more impact to microscale flow and heat transfer. For example, surface friction induced flow compressibility makes the fluid velocity profiles flatter and leads to higher friction factors and Nusselt numbers; surface roughness is likely responsible for the early transition from laminar to turbulent flow and the increased friction factor and Nusselt number; the relative importance of viscous force modifies the correlation between Nu and Ra for natural convection in a microenclosure and, other effects, such as channel surface geometry, surface electrostatic charges, axial heat conduction in the channel wall and measurement errors, could lead to different flow and heat transfer behaviors from that at conventional scales.
机译:当前的讨论将集中在由器件尺寸减小引起的流动和传热中主要因素和现象的变化所引起的尺寸效应。由于微通道和微设备的表面积与体积之比较大,因此与表面效应有关的因素对微米级流动和传热的影响更大。例如,表面摩擦引起的流动可压缩性使流体速度分布更平坦,并导致更高的摩擦因数和Nusselt数。表面粗糙度可能是导致层流向湍流早期过渡以及摩擦系数和Nusselt数增加的原因。粘性力的相对重要性改变了微外壳中自然对流的Nu和Ra之间的相关性,其他影响(例如通道表面几何形状,表面静电荷,通道壁中的轴向热传导和测量误差)可能导致流量不同和传热行为与常规规模相比。

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