首页> 外文会议>International conference on nanochannels, microchannels and minichannels;ICNMM2009 >LAMINAR FORCED CONVECTION IN ANNULAR MICROCHANNELS WITH SLIP FLOW REGIME
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LAMINAR FORCED CONVECTION IN ANNULAR MICROCHANNELS WITH SLIP FLOW REGIME

机译:带滑流的环形微通道中的层流强迫对流

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Fluid flow and heat transfer at microscale have attracted an important research interest in recent years due to the rapid development of microelectromechanical systems (MEMS). Fluid flow in microdevices has some characteristics which one of them is rarefaction effect related with gas flow. In this research, hydrodynamically and thermally fully developed laminar rarefied gas flow in annular microducts is studied using slip flow boundary conditions. Two different cases of the thermal boundary conditions are considered, namely: uniform temperature at the outer wall and adiabatic inner wall (Case A) and uniform temperature at the inner wall and adiabatic outer wall (Case B). Using the previously obtained velocity distribution, energy conservation equation subjected to relevant boundary conditions is numerically solved using fourth order Runge-Kutta method. The Nusselt number values are presented in graphical form as well as tabular form. It is realized that for the case A increasing aspect ratio results in increasing the Nusselt number, while the opposite is true for the case B. The effect of aspect ratio on Nusselt number is more notable at smaller values of Knudsen number, while its effect becomes slighter at large Knudsen numbers. Also increasing Knudsen number leads to smaller values of Nusselt number for the both cases.
机译:近年来,由于微机电系统(MEMS)的快速发展,微尺度的流体流动和传热引起了重要的研究兴趣。微器件中的流体流动具有一些特性,其中之一是与气流有关的稀疏效应。在这项研究中,利用滑流边界条件研究了环状微管中流体动力和热充分发展的层流稀薄气体流。考虑了两种不同的热边界条件,即:外壁和绝热内壁的温度均匀(情况A)和内壁和绝热外壁的温度均匀(情况B)。使用先前获得的速度分布,使用四阶Runge-Kutta方法对受相关边界条件限制的能量守恒方程进行数值求解。 Nusselt值以图形形式和表格形式显示。可以看出,对于情况A,长宽比的增加会导致Nusselt数的增加,而对于情况B则相反。对于较小的Knudsen值,长宽比对Nusselt数的影响更为明显,而其影响变为Knudsen数较大时,则略微偏小。同样,在两种情况下,增加的努森数都会导致较小的努塞尔数值。

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