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NUMERICAL INVESTIGATION OF HEAT TRANSFER EFFECTS IN MICROCHANNELS UNDER H_2 BOUNDARY CONDITION

机译:H_2边界条件下微通航中传热效应的数值研究

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Study of fluid flow characteristics at microscale level is gaining importance with shrinking device sizes. Better understanding of fluid flow and heat transfer in microchannels will have important implications in biomedical industry, MEMS, electronic chip cooling, heat exchangers, and microfluidic devices. Also, due to short lengths employed in microchannels, entrance header effects can be significant and needs to be investigated. In this work, three dimensional model of microchannels, with aspect ratios (α=a/b) ranging from 0.1 to 10, are numerically simulated using CFD software, FLUENT. Heat transfer effects in the entrance region of microchannel are presented by plotting average Nusselt number as a function of non-dimensional thermal entrance length x~*. The numerical simulations with both circumferential and axial uniform heat flux (H2) boundary conditions were performed for four wall, three wall and two wall cases. Large numerical data sets, generated in this work for rectangular cross sectional microchannels for three walls and two walls H_2 boundary condition, can provide better understanding and insight into the transport processes in the microchannel.
机译:微尺度流体流动特性研究了与收缩装置尺寸的重要性。更好地理解微通道中的流体流量和热传递将对生物医学行业,MEMS,电子芯片冷却,换热器和微流体装置具有重要意义。此外,由于微通道中使用的短长度,入口标题效应可能是显着的并且需要进行调查。在这项工作中,使用CFD软件,流畅的CFD软件进行数值模拟0.1至10的宽高比(α= A / B)的微通道的三维模型。通过根据非尺寸热入口长度X〜*的函数绘制平均衬布数来提出微通道入口区域中的传热效应。具有圆周和轴向均匀热通量(H2)边界条件的数值模拟用于四壁,三壁和两个壁壳。对于三壁的矩形横截面微通道和两个壁H_2边界条件,在这项工作中产生的大型数值数据集,可以更好地理解和洞察微通道中的传输过程。

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