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Effect of axial conduction on the heat transfer in micro-channels

机译:轴向传导对微通道传热的影响

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Experimental and numerical analysis were performed to evaluate heat transfer characteristics of water flowing through triangular silicon micro-channels with hydraulic diameter of 160 μm in the range of Reynolds number Re = 3.2-64. It was shown that as the bulk water temperature, as well as the temperature of the heated wall, do not change linearly along the channel. The experimental results of temperature distribution on the heated wall agree with the numerical predictions. The behaviour of the Nusselt number along the channel has a singular point. At this point, the difference between the temperatures on the wall and the bulk water becomes negative and the flux changes the sign and is directed from the fluid to the wall. The singular point shifts closer to the channel outlet with an increase of the Reynolds number. It was shown that under conditions of the present study the heat transfer may be described by conventional Navier-Stokes and energy equations as a common basis.
机译:进行了实验和数值分析,以评估流经水力直径为160μm的三角形硅微通道的水在雷诺数Re = 3.2-64范围内的传热特性。结果表明,随着散装水的温度以及加热壁的温度沿通道线性变化。热壁温度分布的实验结果与数值预测吻合。 Nusselt数沿通道的行为具有奇点。此时,壁和大量水之间的温度差变为负数,通量改变符号,并从流体引导至壁。随着雷诺数的增加,奇异点移近通道出口。结果表明,在本研究条件下,传热可以用常规的Navier-Stokes和能量方程式作为通用基础来描述。

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