首页> 外文期刊>International Journal of Heat and Mass Transfer >Analytical solutions of Nusselt number for thermally fully developed flow in microtubes under a combined action of electroosmotic forces and imposed pressure gradients
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Analytical solutions of Nusselt number for thermally fully developed flow in microtubes under a combined action of electroosmotic forces and imposed pressure gradients

机译:电渗力和强加压力梯度共同作用下微管中热充分展开的流的Nusselt数的解析解

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Closed form expressions are developed for Nusselt number variation in a thermally fully developed microtube flow, under a combined influence of electroosmotic forces and imposed pressure gradients. The analysis takes care of the interaction amongst pressure driven convection and Joule heating effects, in order to obtain the pertinent rate of heat transfer. While separate limiting conditions on the asymptotic Nusselt number can be obtained for pure electroosmotic and solely pressure driven flows, relative influences of electrical potential gradients and imposed pressure gradients acting in tandem are also critically analyzed, as a function of the tube radius normalized with respect to the Debye length. Significant insights are also developed regarding the influence of adverse pressure gradients on the thermal transport, in presence of aiding electroosmotic effects.
机译:在电渗力和施加的压力梯度的综合影响下,为热完全展开的微管流中的努塞尔数变化开发了闭式表达式。该分析考虑了压力驱动对流和焦耳热效应之间的相互作用,以便获得相关的传热速率。虽然对于纯电渗流和仅由压力驱动的流可以获得渐近Nusselt数的单独限制条件,但还严格分析了电势梯度和施加的压力梯度串联作用的相对影响,这是相对于标准化的管半径的函数德拜长度。在存在辅助电渗效应的情况下,关于不利压力梯度对热传输的影响也得到了重要的见解。

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