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Numerical Modeling and Simulation of Condensation Heat Transfer in a Bundle of Transport Membrane Tubes for Waste Heat and Water Recovery

机译:用于废热和水回收束输送膜管中冷凝热传递的数值模拟与仿真

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In this paper, a numerical study has been carried out to investigate the heat and mass transfer with condensation in a transport membrane tube bundle, which is used for recovering both heat and water from combustion flue gas. The tube wall is made of a specially designed porous material that is able to extract condensate liquid from the flue gas. The flue gas investigated consists of one condensable water vapor (H_2O) and three noncondensable gases (CO_2, O_2, and N_2). A simplified multi-species transport model was developed for the heat and mass transfer of flue gas. The condensation-evaporation process was simulated as a two-step chemical reaction. The RNG two-equation turbulence model was used for the turbulent flow. The numerical study was conducted within ranges of Reynolds number of 1.0×10~3 - 7×10~4 based on hydraulic diameter of flue gas channel, and 6.4×10~0 - 3.3×10~2 based on inner diameter of the water tube. Flue gas inlet temperature is within the range of 333.2 - 360.9 K, while the water inlet temperature is within the range of 293.9 - 316.7 K. Numerical results were compared with experimental data obtained in a parallel effort. It has been found that the developed multi-species transport model was able to predict the flue gas heat and mass transfer in the tube bundle with fairly good accuracy. The heat and mass depletion levels decrease with the increase of the flue gas Reynolds numbers. A new Nusselt number correlation was developed for flue gas convection in the tube bundle. Detailed results about temperature, mass fraction, enthalpy, and skin fraction factors are also presented and discussed.
机译:在本文中,已经进行了一种数值研究,以研究传送膜管束中的冷凝热量和质量传递,其用于从燃烧烟道气中回收热量和水。管壁由专门设计的多孔材料制成,能够从烟道气中提取冷凝液。研究的烟道气由一种可冷凝水蒸气(H_2O)和三种不可调味的气体(CO_2,O_2和N_2)组成。开发了一种简化的多种传输模型,用于烟道气的热量和传质。将冷凝蒸发过程模拟为两步化学反应。 RNG两方程湍流模型用于湍流。基于烟道气通道的液压直径,基于烟道气通道的液压直径和基于水的内径的6.4×10〜0-3×10〜2进行数值研究。管子。烟道气体入口温度在333.2-360.9 k的范围内,而进水温度在293.9-116.7k的范围内。与并行努力获得的实验数据进行了数值结果。已经发现,开发的多种传输模型能够以相当好的精度预测管束中的烟气热量和质量传递。随着烟道气雷诺数的增加,热量和质量耗尽水平降低。为管束中的烟气对流开发了一种新的培养数相关。还提出和讨论了关于温度,质量分数,焓和皮肤分数因子的详细结果。

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