While traditional approaches to prevent the carbuncle phenomenon in gas dynamics simulations increase the viscosity on entropy and shear waves near shocks, it was quite recently suggested to instead decrease the viscosity on the acoustic waves for low Mach numbers. The goal is to achieve what, in this paper, we call Mach number consistency: for all waves, the numerical viscosity decreases with the same order of the Mach number when the Mach number tends to zero. We take the simple approach that was used for the proof of concept together with the simple model for the increased numerical viscosity on linear waves and investigate the possibilities of combining both in an adaptive manner while locally maintaining Mach number consistency.
翻译:虽然在气体动态模拟中防止碳球现象的传统方法增加了在靠近冲击的环球和剪切波上的粘度,但最近又建议减少声波对低马赫数字的粘度,目的是实现本文中所称的马赫号一致性:在所有波中,当马赫号为零时,数字粘度随马赫号的相同顺序而下降。我们采用用于证明概念的简单方法,同时采用线性波中增加数字粘度的简单模型,并研究在当地保持马赫号一致性的同时以适应方式将两者结合起来的可能性。