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ENTROPY MINIMIZATION IN AN EVAPORATING THIN LIQUID FILM IN CAPILLARY TUBES

机译:毛细管蒸发薄液膜中的熵最小化

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An analysis has been provided for the entropy generated for the micro/nano scale heat and mass transfer in a capillary tube in terms of the gradients of velocity, temperature and concentration as well as the physical properties of the fluid. The heat and mass transfer rates are assumed to be uniform on the surface of the capillary tube. The optimum tube diameter that corresponds to the minimization of entropy generated and minimization of fluid flow resistance is about one millimeter. We have applied the method of thermodynamic optimization to capillary driven systems.
机译:在速度,温度和浓度的梯度和流体的物理性质方面,已经为毛细管中的微/纳米垢热量和质量传递产生的熵以及流体的物理性质提供了分析。假设热量和传质速率在毛细管的表面上是均匀的。对应于熵的最小化产生和最小化流体流动阻力的最佳管直径约为一毫米。我们已经应用了热力学优化对毛细管驱动系统的方法。

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