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Computations Of Homogeneous-equilibrium Two-phase Flows With Accurate And Efficient Shock-stable Schemes

机译:精确有效的冲击稳定方案计算均相平衡两相流

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摘要

For accurate and efficient computations of compressible gas-liquid two-phase mixture flows, the AUSMPW+ and RoeM schemes (for which the accuracy, efficiency, and robustness have been successfully demonstrated in gas dynamics) are extended to two-phase flows at all speeds. From the mixture equations of state, a new shock-discontinuity-sensing term suitably scaled for two-phase flows is derived and its performance is validated. In addition, several numerical difficulties appearing in the development of the two-phase AUSMPW+ and RoeM schemes are analyzed and successfully cured. The two-phase AUSMPW+ and RoeM schemes are then efficiently preconditioned for the simulation of all Mach number flows by employing the existing AUSM or Harten-Lax-van Leer with contact restoration types of preconditioning strategies. Various gas-liquid two-phase flows, from highly compressible to nearly incompressible flow conditions, are tested. The numerical results show the accurate and robust behavior of the proposed schemes for all speeds of two-phase flows.
机译:为了准确有效地计算可压缩气液两相混合物流量,将AUSMPW +和RoeM方案(已在气体动力学中成功证明了准确性,效率和鲁棒性)扩展为所有速度下的两相流。从状态混合方程中,导出了适用于两相流的新的冲击不连续性传感项,并对其性能进行了验证。此外,分析并成功解决了两相AUSMPW +和RoeM方案开发中出现的一些数值困难。然后,采用现有的AUSM或Harten-Lax-van Leer以及接触恢复类型的预处理策略,对两相AUSMPW +和RoeM方案进行有效的预处理,以模拟所有马赫数流。测试了从高度可压缩到几乎不可压缩的各种气液两相流。数值结果表明,所提出的方案对于两相流的所有速度都具有精确和鲁棒的性能。

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