We present an implicit-explicit finite volume scheme for isentropic two phase flow in all Mach number regimes. The underlying model belongs to the class of symmetric hyperbolic thermodynamically compatible models. The key element of the scheme consists of a linearisation of pressure and enthalpy terms at a reference state. The resulting stiff linear parts are integrated implicitly, whereas the non-linear higher order and transport terms are treated explicitly. Due to the flux splitting, the scheme is stable under a CFL condition which determined by the resolution of the slow material waves and allows large time steps even in the presence of fast acoustic waves. Further the singular Mach number limits of the model are studied and the asymptotic preserving property of the scheme is proven. In numerical simulations the consistency with single phase flow, accuracy and the approximation of material waves in different Mach number regimes are assessed.
翻译:我们为所有马赫数数系统中的缺氧性二阶段流动提出了一个隐含的有限体积计划。基本模型属于对称超偏热动力兼容模型的类别。该计划的关键要素包括一个参照状态的压力和 ⁇ 状词线性化。由此产生的硬线性部分被隐含地结合,而非线性较高顺序和运输条件则得到明确处理。由于通量分解,该计划在CFL条件下保持稳定。CFL条件由缓慢物质波的解析决定,即使在快速声波出现的情况下也允许采取大量的时间步骤。还研究了该模型的单项马赫号限制,并证明了该计划的无药性保护属性。在数字模拟中,评估了不同马赫号系统中物质波与单一阶段流、准确性和近似性的一致性。