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首页> 外文期刊>Computers & Chemical Engineering >Modeling non-ideal vapor-liquid phase equilibrium, mass and energy transfer in a binary system via augmentation of computational fluid dynamical methods
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Modeling non-ideal vapor-liquid phase equilibrium, mass and energy transfer in a binary system via augmentation of computational fluid dynamical methods

机译:通过增加计算流体动力学方法对二元系统中的非理想汽液相平衡,质量和能量传递进行建模

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摘要

A numerical method has been derived to model dynamically varying vapor-liquid phase equilibrium for non-ideal binary systems by augmenting the existing constitutive equations of computational fluid dynamics (CFD). Mass transfer during condensation and vaporization is modeled via equivalently varying source and sink terms; this mass transfer is governed by chemical potential at the liquid-vapor interface. Mass transfer resulting from the chemical potential field is determined by solving the Maxwell-Stefan and energy equations for a time variable pressure, momentum and temperature distribution. Condensation and evaporation are simulated within a multiphase Eulerian framework in such a manner that the components undergoing phase change map the non-ideal phase equilibrium diagram locally at steady state. Equilibrium is assumed at the phase boundary during transient mass transfer prior to reaching global steady conditions.
机译:通过增加现有的计算流体动力学(CFD)本构方程,已经推导了一种数值方法来为非理想的二元系统动态地改变汽-液相平衡建模。冷凝和汽化过程中的传质是通过等效变化的源和汇项来模拟的。这种传质由液-气界面处的化学势控制。化学势场产生的传质是通过求解随时间变化的压力,动量和温度分布的麦克斯韦-斯特凡和能量方程式来确定的。在多相欧拉框架内模拟凝结和蒸发,使经历相变的组分在稳态时局部映射非理想相平衡图。在达到整体稳定状态之前,在瞬态传质过程中假定在相边界处达到平衡。

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