首页> 外文期刊>Nanoscale and microscale thermophysical engineering >JOULE HEATING EFFECTS IN ELECTROKINETICALLY DRIVEN FLOW THROUGH RECTANGULAR MICROCHANNELS: AN ANALYTICAL APPROACH
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JOULE HEATING EFFECTS IN ELECTROKINETICALLY DRIVEN FLOW THROUGH RECTANGULAR MICROCHANNELS: AN ANALYTICAL APPROACH

机译:矩形矩形微通道在电动流中的焦耳热效应:一种解析方法

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摘要

This is a theoretical study dealing with mixed electroosmotic and pressure-driven flow of a Newtonian liquid in a rectangular microchannel. Both T and HI thermal boundary conditions are considered and the Debye-Hiickel linearization is invoked. The governing equations are made dimensionless assuming fully developed conditions and then analytically solved using an infinite series solution. The governing factors are found to be the dimensionless Debye-Hiickel parameter, velocity scale ratio, dimensionless Joule heating parameter, and channel aspect ratio. The results indicate that the Nusselt number is an increasing function of the channel aspect ratio, whereas the opposite is true for the velocity scale ratio. In addition, unless a sufficiently high opposed pressure is present, a higher Joule heating rate is generally accompanied by a lower Nusselt number. Moreover, increasing the dimensionless Debye-Hückel parameter gives rise to a higher Nusselt number, unless a high value of the channel aspect ratio with surface heating is considered.
机译:这是一个理论研究,涉及矩形微通道中牛顿液体的电渗和压力驱动混合流。考虑T和HI热边界条件,并调用Debye-Hiickel线性化。在充分发展的条件下,使控制方程变为无量纲,然后使用无穷级数解进行解析求解。发现控制因素是无因次Debye-Hiickel参数,速度比例比,无因次焦耳加热参数和通道长宽比。结果表明,努塞尔数是通道长宽比的增加函数,而速度比例长短则相反。另外,除非存在足够高的反向压力,否则较高的焦耳加热速率通常伴随有较低的努塞尔数。此外,增加无量纲的Debye-Hückel参数会导致更高的Nusselt数,除非考虑到随着表面加热而增大的通道长宽比值。

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