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Multicomponent transcritical flow simulation based on in situ adaptive tabulation of vapor-liquid equilibrium solutions

机译:基于汽液平衡溶液原位自适应作用的多组分跨临界流模拟

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The studies of transcritical and supercritical injection have attracted much interest in the past 30 years. However, most of them were mainly concentrated on the single-component system, whose critical point is a constant value. To capture the thermophysical properties of multicomponent, a phase equilibrium solver is needed, which is also called a vapor-liquid equilibrium (VLE) solver. But VLE solver increases the computation cost significantly. Tabulation methods can be used to store the solution to avoids a mass of redundant computation. However, the size of a table increases exponentially with respect to the number of components. When the number of species is greater than 3, the size of a table far exceeds the limit of RAM in today's computers. In this research, an online tabulation method based on In Situ Adaptive Tabulation (ISAT) is developed to accelerate the computation of multicomponent fluid. Accuracy and efficiency are analyzed and discussed. The CFD solver used in this research is based on the Pressure-Implicit with Splitting of Operators (PISO) method. Peng-Robinson equation of state is used in phase equilibrium.
机译:跨临界和超临界注射的研究在过去30年中引起了很多兴趣。然而,大多数主要集中在单组分系统上,其临界点是恒定值。为了捕获多组分的热物理性质,需要相位平衡求解器,其也称为蒸气液平衡(VLE)求解器。但VLE求解器显着提高了计算成本。标记方法可用于存储解决方案以避免冗余计算量。然而,表的大小相对于组件的数量呈指数呈指数增长。当物种数量大于3时,表的大小远远超过当今计算机中的RAM的极限。在该研究中,开发了一种基于原位自适应制表(ISAT)的在线表格方法以加速多组分流体的计算。分析并讨论了准确性和效率。本研究中使用的CFD求解器基于具有操作者分裂(PISO)方法的压力隐式。彭 - 罗宾逊的状态方程在相平衡中使用。

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