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An adaptive ALE scheme for non-ideal compressible fluid dynamics over dynamic unstructured meshes

机译:动态非结构化网眼非理想可压缩流体动力学的自适应ALE方案

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This paper investigates the application of mesh adaptation techniques in the non-ideal compressible fluid dynamic (NICFD) regime, a region near the vapor-liquid saturation curve where the flow behavior significantly departs from the ideal gas model, as indicated by a value of the fundamental derivative of gasdynamics less than one. A recent interpolation-free finite-volume adaptive scheme is exploited to modify the grid connectivity in a conservative way, and the governing equations for compressible inviscid flows are solved within the arbitrary Lagrangian-Eulerian framework by including special fictitious fluxes representing volume modifications due to mesh adaptation. The absence of interpolation of the solution to the new grid prevents spurious oscillations that may make the solution of the flow field in the NICFD regime more difficult and less robust. Non-ideal gas effects are taken into account by adopting the polytropic Peng-Robinson thermodynamic model. The numerical results focus on the problem of a piston moving in a tube filled with siloxane MD4M, a simple configuration which can be the core of experimental research activities aiming at investigating the thermodynamic behavior of NICFD flows. Several numerical tests involving different piston movements and initial states in 2D and 3D assess the capability of the proposed adaption technique to correctly capture compression and expansion waves, as well as the generation and propagation of shock waves, in the NICFD and in the non-classical regime.
机译:本文研究了网格适应技术在非理想可压缩流体动态(NICFD)方案中的应用,蒸汽饱和曲线附近的区域,其中流动行为显着地从理想的气体模型中脱离,如此值所示Gasdynamics的基本衍生物不到一个。利用最近的无插值有限卷自适应方案以维护方式修改电网连接,并且通过包括代表由于网眼的体积修改的特殊虚拟助理,可以在任意拉格朗日 - 欧拉群框架内解决了可压缩反应流的控制方程适应。对新网格的解决方案的不存在防止了寄生振荡,其可以使NICFD制度中的流场的解决方案更加困难,更稳健。通过采用多细胞彭罗宾逊热力学模型,考虑了非理想的气体效应。数值结果侧重于活塞在填充硅氧烷MD4M的管中移动的问题,这是一种简单的构造,这是实验研究活动的核心,旨在研究NICFD流动的热力学行为。涉及不同活塞运动的数值测试和2D和3D中的初始状态评估所提出的适应技术的能力,以正确捕获压缩和扩展波,以及冲击波,在NICFD和非古典中的产生和传播政权。

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