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Fully-developed thermal transport in combined electroosmotic and pressure driven flow of power-law fluids in microchannels

机译:在微通道中幂律流体的电渗流和压力驱动流的结合中充分开发的热传输

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Thermally fully-developed heat transfer has been analyzed for combined electroosmotic and pressure driven flow of power-law fluid in a microchannel. Analytical expressions for transport parameters are presented in terms of the flow behavior index, the length scale ratio (ratio of Debye length to half channel height), dimensionless pressure gradient, and Joule heating parameter (ratio of Joule heating to surface heat flux). Closed form solutions are obtained for some specific values of the flow behavior index, while numerical solutions are presented for general cases. The results show that the temperature variation across the channel increases with increasing the pressure gradient. To reduce the length scale ratio is found to decrease the temperature variation, particularly for shear-thinning fluids. To increase the Joule heating parameter is to enlarge the temperature variation in the channel, especially for shear-thickening fluids. The Nusselt number can be increased by decreasing the length scale ratio due to the electroos motic effect. Also, the Nusselt number increases with decreasing the values of flow behavior index and dimensionless pressure gradient.
机译:对于微通道中幂律流体的电渗流和压力驱动流的组合,已经对热充分发展的传热进行了分析。输运参数的解析表达式以流动行为指数,长度比例比(德拜长度与半通道高度之比),无因次压力梯度和焦耳加热参数(焦耳加热与表面热通量的比率)表示。对于某些特定的流动行为指标值,可以获得封闭形式的解,而对于一般情况,则提供了数值解。结果表明,通道两端的温度变化随着压力梯度的增加而增加。发现减小长度比例比可以减小温度变化,特别是对于剪切稀化流体。增加焦耳加热参数是为了增大通道中的温度变化,特别是对于剪切增稠流体。由于电渗效应,可以通过减小长度比例来增加努塞尔数。而且,随着流动行为指数和无量纲压力梯度的值减小,努塞尔数增加。

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