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Numerical investigation of falling film evaporation of multi-effect desalination plant

机译:多效淡化装置降膜蒸发的数值研究

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In this study, a numerical investigation is performed to improve the heat transfer and pressure drop of falling film evaporator using multiphase flow formulations in Eulerian-Eulerian approach. A finite volume method code is used for solving the governing equations including continuity, energy and Reynolds averaged Navier-Stokes equations (RANS) with the k-ε turbulence model. Also, the heat and mass transfer during the phase change is taken into account. The effects of temperature difference, arrangement of tubes and tube pitch on the average heat transfer coefficient, the net vapor production and pressure drop across the tube bundles are presented. The results show that increase of temperature difference increases vaporization rate, heat transfer coefficient and pressure drop along the tube bundle. It is also found that the heat transfer coefficient for vertical arrangement of tubes is larger than that of horizontal arrangement.
机译:在这项研究中,进行了数值研究,以改进的降膜蒸发器的传热和压降,采用了欧拉-欧拉方法的多相流公式。有限体积方法代码用于用k-ε湍流模型求解控制方程,包括连续性,能量和雷诺平均Navier-Stokes方程(RANS)。而且,考虑了相变过程中的热量和质量传递。提出了温度差,管的布置和管间距对平均传热系数,净蒸汽产量和管束两端的压降的影响。结果表明,温度差的增加会增加沿管束的蒸发速率,传热系数和压降。还发现管的垂直布置的传热系数大于水平布置的传热系数。

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