首页> 外文期刊>International Journal of Heat and Mass Transfer >An elliptic two-phase numerical model of laminar film condensation from a steam-air mixture flowing over a horizontal tube
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An elliptic two-phase numerical model of laminar film condensation from a steam-air mixture flowing over a horizontal tube

机译:来自水平管上的蒸汽-空气混合物的层流膜冷凝的椭圆两相数值模型

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A complete two-phase numerical model of film condensation from a steam-air mixture flowing downward over an isothermal horizontal tube is presented. The model uses the full 2D elliptic Navier-Stokes equations and predicts the full viscous flow and heat and mass transfer in the mixture and in the entire condensate film from the top of the tube to the falling film below the tube. The numerical model implements a dynamically moving non-orthogonal computational grid that tracks the phase interface sharply. An adaptive-grid Eulerian method is followed in which the phase interface is moved at the end of each time step. The model uses a segregated solution method based on a finite volume approach in which fundamental balances of mass, energy, and force are enforced accurately at the phase interface. The results from the new model are compared with available theoretical studies. Finally, new results are presented on the effects of free stream gas mass fraction, free-stream-to-tube temperature difference, upstream Reynolds number, and free-stream pressure on the condensate film development, the local and average heat transfer coefficients, and the total liquid mass flow rate.
机译:提出了由等温水平管向下流动的蒸汽-空气混合物形成的薄膜冷凝的完整两相数值模型。该模型使用完整的2D椭圆Navier-Stokes方程,并预测混合物的全粘性流以及从管顶部到管下方降膜的整个冷凝膜中的传热和传质。数值模型实现了动态移动的非正交计算网格,该网格可以清晰地跟踪相界面。遵循自适应网格欧拉方法,其中在每个时间步长结束时移动相界面。该模型使用基于有限体积方法的隔离求解方法,其中在相界面处精确地实现了质量,能量和力的基本平衡。新模型的结果与可用的理论研究进行了比较。最后,提出了关于自由流气体质量分数,自由流与管之间的温差,上游雷诺数和自由流压力对冷凝膜形成,局部传热系数和平均传热系数的影响的新结果。总液体质量流速。

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