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首页> 外文期刊>Journal of Mechanical Science and Technology >Lattice Boltzmann simulation of condensation over different cross sections and tube banks
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Lattice Boltzmann simulation of condensation over different cross sections and tube banks

机译:格子Boltzmann在不同横截面和管堤上仿真凝结

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AbstractIn this paper a two-phase Lattice Boltzmann model, capable of handling large density jumps, is used to simulate the vapor filmwise condensation and dew drop sprinkling, outside different horizontal geometries. These geometries include circle, rectangle, square, and a bank of circular and rectangular tubes. In order to calculate the temperature field a passive scalar approach is combined with the Lattice Boltzmann framework and the flow field is assumed to be affected by temperature under the hypothesis of Boussinesq. Additionally, the effect of phase-change on velocity field is taken into account by adding a suitable source term to the pressure-momentum distribution equation. To simplify the model, it is assumed that the vapor remains at the saturation temperature and the amount of heat transferred through the interface is the only driving force for condensation. To demonstrate the validity of the model, the results are compared with a variety of analytical, numerical and experimental data. The validated model then is employed to study the influence of different parameters such as vapor temperature, Stefan number and Archimedes number on vapor condensation outside multiple cross sections. Finally, the condensate inundation and mean heat transfer coefficients are analyzed in horizontal tube banks.
机译:<标题>摘要 ara>在本文中,一种能够处理大密度跳跃的两相晶格Boltzmann模型,用于模拟蒸汽胶片冷凝和露水喷洒,外部不同的水平几何形状。这些几何形状包括圆形,矩形,正方形和一组圆形和矩形管。为了计算温度场,无源标量方法与晶格Boltzmann框架相结合,并且假设流场在Boussinesq的假设下受到温度的影响。另外,通过向压力动量分布方程添加合适的源极来考虑相变对速度场的影响。为了简化模型,假设蒸汽在饱和温度下仍然在饱和温度下,通过界面传递的热量是用于冷凝的唯一驱动力。为了证明模型的有效性,将结果与各种分析,数值和实验数据进行比较。然后,采用验证的模型来研究不同参数如蒸汽温度,斯特凡数和前沿数的影响,以在多个横截面外的蒸汽冷凝下的蒸汽凝结。最后,在水平管库中分析了冷凝物淹没和平均传热系数。

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