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Heat Transfer in Trapezoidal Microchannels of Various Aspect Ratios

机译:各种纵横比的梯形微通道中的热传递

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摘要

Heat transfer in the thermal entrance region of trapezoidal microchannels is investigated for hydrodynamically fully developed, single-phase, laminar flow with no-slip conditions. Three-dimensional numerical simulations were performed using a finite-volume approach for trapezoidal channels with a wide range of aspect ratios. The sidewall angles of 54.7 degrees and 45 degrees are chosen to correspond to etch-resistant planes in the crystal structure of silicon. Local and average Nusselt numbers are reported as a function of dimensionless length and aspect ratio. The effect of Prandtl number upon the thermal entrance condition is explored. The fully developed friction factors are computed and correlated as a function of channel aspect ratio. Correlations are also developed for the local and average Nusselt numbers in the thermal entrance region as a function of a dimensionless axial length variable.
机译:研究了梯形微通道热入口区域的传热,以研究在流体动力学上充分发展的单相层流在无滑移条件下的情况。使用有限体积方法对具有宽高比范围的梯形通道进行了三维数值模拟。选择54.7度和45度的侧壁角以对应于硅的晶体结构中的抗蚀刻平面。据报道,局部和平均Nusselt数是无量纲长度和纵横比的函数。探索了Prandtl数对热进入条件的影响。计算出充分发展的摩擦系数,并将其与通道纵横比的函数相关联。还针对热入口区域中的局部和平均努塞尔数建立了相关性,这些相关性是无因次轴向长度变量的函数。

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