Robust integration of real gas models into a pressure-based coupled solver

L. Hanimann, L. Mangani, E. Casartelli, D. Vogt
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引用次数: 1

Abstract

Today’s most common standard for compressible computational fluid dynamics is based on the ideal gas state equation. However, real gas modeling is fundamental for a wide range of applications. When expanding into the thermodynamic region of non-ideal gas, performance predictions based on ideal gas assumption are no longer valid. Therefore, more accurate models are desired for an improved classification of fluid properties. While there is a wast amount of literature about possible improvements when using real gas state equations in a numerical framework, little is known considering the actual implementation. This article will therefore focus on the robust integration of real gas flow physics in an in-house, coupled, pressure-based solver. We will point out the main difference to a numerical framework purely based on perfect gas. Final validation is given using a two stage radial compressor setup to demonstrate the generality of the chosen approach.
真实气体模型的鲁棒集成到基于压力的耦合求解器中
今天最常见的可压缩计算流体动力学标准是基于理想气体状态方程。然而,真实的气体建模是广泛应用的基础。当扩展到非理想气体热力学区域时,基于理想气体假设的性能预测不再有效。因此,需要更精确的模型来改进流体性质的分类。虽然关于在数值框架中使用真实气体状态方程时可能的改进有大量的文献,但考虑到实际实现,人们知之甚少。因此,本文将重点介绍在内部,耦合的,基于压力的求解器中真实气体流动物理的强大集成。我们将指出它与纯粹基于完美气体的数值框架的主要区别。最后用两级径向压缩机装置进行验证,以证明所选方法的通用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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