首页> 外文会议>International conference on nanochannels, microchannels and minichannels;ICNMM2010 >PARAMETRIC STUDY OF A TRANSIENT LIQUID FLOW IN A MICROCHANNEL OF SQUARE CROSS-SECTION
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PARAMETRIC STUDY OF A TRANSIENT LIQUID FLOW IN A MICROCHANNEL OF SQUARE CROSS-SECTION

机译:方形截面微通道中瞬态液体流动的参数研究

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Time-dependent laminar liquid flow and thermal characteristics in a square cross-section microchannel were numerically investigated using computational fluid dynamics code. In the numerical model developed the upper and bottom microchannel substrate properties, Joule healing caused by applying electric potential, pressure driven flow, electroosmosis, heat transfer coefficients on the microchannel bottom wall and variations in the liquid thermophysical properties were all taken into account. Liquid flow velocity distribution and temperature fields were calculated by solving both Navier-Stokes and energy equations, and electric field distribution was determined based on their electric potential. The results obtained demonstrate the impact that applied potential, pressure difference, heat transfer coefficient and microchannel dimensions have on liquid flow and thermal behaviors in a square microchannel. Finally, the results with the model developed were then compared with those of a liquid having constant thermophysical properties.
机译:使用计算流体力学代码对方形截面微通道中随时间变化的层流和热特性进行了数值研究。在开发的上,下微通道基底特性的数值模型中,考虑了因施加电势,压力驱动的流动,电渗,微通道底壁上的传热系数以及液体热物理特性的变化而引起的焦耳愈合。通过求解Navier-Stokes和能量方程来计算液体流速分布和温度场,并根据它们的电势确定电场分布。获得的结果证明了施加的电势,压差,传热系数和微通道尺寸对方形微通道中的液体流动和热行为的影响。最后,将开发的模型的结果与具有恒定热物理性质的液体的结果进行比较。

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