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A volume-of-fluid method for simulation of compressible axisymmetric multi-material flow

机译:用于模拟可压缩轴对称多材料流动的流体体积法

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摘要

A two-dimensional Eulerian hydrodynamic method for the numerical simulation of inviscid compressible axisymmetric multi-material flow in external force fields for the situation of pure fluids separated by macroscopic interfaces is presented. The method combines an implicit Lagrangian step with an explicit Eulerian advection step. Individual materials obey separate energy equations, fulfill general equations of state, and may possess different temperatures. Material volume is tracked using a piecewise linear volume-of-fluid method. An overshoot-free logically simple and economic material advection algorithm for cylinder coordinates is derived, in an algebraic formulation. New aspects arising in the case of more than two materials such as the material ordering strategy during transport are presented. One- and two-dimensional numerical examples are given. (c) 2006 Elsevier B.V. All rights reserved.
机译:提出了一种二维欧拉流体力学方法,用于在宏观界面分离的纯流体情况下,在外力场中无粘性可压缩轴对称多材料流的数值模拟。该方法将隐式拉格朗日步骤与显式欧拉对流步骤结合在一起。各个材料遵循不同的能量方程式,满足一般的状态方程式,并且可能具有不同的温度。使用分段线性流体体积方法跟踪材料体积。用代数公式推导了用于圆柱坐标的无过冲的逻辑上简单且经济的材料对流算法。介绍了在两种以上物料情况下出现的新方面,例如运输过程中的物料订购策略。给出了一维和二维数值示例。 (c)2006 Elsevier B.V.保留所有权利。

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