首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Estimation of Joule heating effect on temperature and pressure distribution in electrokinetic-driven microchannel flows.
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Estimation of Joule heating effect on temperature and pressure distribution in electrokinetic-driven microchannel flows.

机译:估算焦耳加热对电动微通道流动中温度和压力分布的影响。

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摘要

In this study we present simple analytical models that predict the temperature and pressure variations in electrokinetic-driven microchannel flow under the Joule heating effect. For temperature prediction, a simple model shows that the temperature is related to the Joule heating parameter, autothermal Joule heating parameter, external cooling parameter, Peclet number, and the channel length to channel hydraulic diameter ratio. The simple model overpredicted the thermally developed temperature compared with the full numerical simulation, but in good agreement with the experimental measurements. The factors that affect the external cooling parameters, such as the heat transfer coefficient, channel configuration, and channel material are also examined based on this simple model. Based on the mass conservation, a simple model is developed that predicts the pressure variations, including the temperature effect. An adverse pressure gradient is required to satisfy the mass conservation requirement. The temperature effect on the pressure gradient is via the temperature-dependent fluid viscosity and electroosmotic velocity.
机译:在这项研究中,我们提出了简单的分析模型,这些模型可以预测在焦耳热效应下电动微通道流动中的温度和压力变化。对于温度预测,一个简单的模型显示温度与焦耳加热参数,自热焦耳加热参数,外部冷却参数,Peclet数以及通道长度与通道水力直径比有关。与完整的数值模拟相比,简单的模型高估了热产生的温度,但与实验测量结果吻合良好。基于此简单模型,还检查了影响外部冷却参数的因素,例如传热系数,通道配置和通道材料。基于质量守恒,开发了一个简单的模型来预测压力变化,包括温度影响。需要负压梯度以满足质量守恒要求。温度对压力梯度的影响是通过与温度有关的流体粘度和电渗速度来实现的。

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