We present an implicit relaxation scheme for the simulation of compressible flows in all Mach number regimes based on a Jin Xin relaxation approach. The main features of the proposed scheme lie in its simplicity and effectiveness. Thanks to the linearity of the flux in the relaxation system, the time-semi discrete scheme can be reformulated in linear decoupled elliptic equations resulting in the same number of unknowns as in the original system. To obtain the correct numerical diffusion in all Mach number regimes, a convex combination of upwind and centred fluxes is applied. The numerical scheme is validated by applying it on a monolithic Eulerian model for non-linear elasticity. Simulations of gas and fluid flows, as well as deformations of compressible solids are carried out to assess the performance of the numerical scheme in accurately approximating material waves in different Mach regimes.
翻译:我们以金新放松方法为基础,为模拟所有马赫数制的压缩流,提出了一个隐含的放松计划;拟议计划的主要特征在于其简单性和有效性;由于放松系统的通量的细微性,时间偏差计划可以用线性分解的椭圆方程式重新拟订,造成与原系统相同的未知数;为了在所有马赫数制中获得正确的数字扩散,应用了上风和中中心通量组合。数字计划通过将其应用于非线性弹性的单体尤利安型模型加以验证。对气体和液体流进行了模拟,对压缩固体进行了变形,以评估数字方案在不同马赫制度下准确接近材料波的性能。