Two phase flows that include phase transition, especially phase creation, with a sharp interface remain a challenging task for numerics. We consider the isothermal Euler equations with phase transition between a liquid and a vapor phase. The phase interface is modeled as a sharp interface and the mass transfer across the phase boundary is modeled by a kinetic relation. Existence and uniqueness results were proven in Ref. \cite{Hantke2019a}. Using sharp interfaces for simulating nucleation and cavitation results in the grid containing tiny cells that are several orders of magnitude smaller than the remaining grid cells. This forces explicit time stepping schemes to take tiny time steps on these cells. As a remedy we suggest an explicit implicit domain splitting where the majority of the grid cells is treated explicitly and only the neighborhood of the tiny cells is treated implicitly. We use dual time stepping to solve the resulting small implicit systems. Our numerical results indicate that the new scheme is robust and provides significant speed-up compared to a fully explicit treatment.
翻译:包括阶段过渡( 特别是阶段创建) 的两阶段流, 包括阶段过渡( 特别是阶段创建), 并有一个尖锐的界面, 对数字组来说仍是一项艰巨的任务 。 我们认为, 异热电极方程式在液态和蒸汽阶段之间具有阶段过渡。 相片界面建模为尖锐的界面, 而跨阶段边界的大规模转移则以动能关系为模型。 Ref.\ cite{ Hantke2019a} 证明了存在和独特性的结果。 使用尖锐的界面模拟核分离和蒸发结果, 在网格中包含数个规模小于剩余电网格细胞的微小细胞。 这迫使明确的时间步骤计划在这些细胞上采取微小的时间步骤。 作为补救措施,我们建议了明确的隐蔽域分割, 在那里对大多数电网格细胞进行明确处理, 并且只对小细胞的周围进行暗中处理。 我们用双倍时间步骤来解决由此产生的小隐含的系统。 我们的数字结果显示, 新计划是强大的, 并且提供了显著的快速的加速, 而不是完全明确的处理 。