Imposition methods of interface conditions for the second-order wave equation with non-conforming grids is considered. The spatial discretization is based on high order finite differences with summation-by-parts properties. Previously presented solution methods for this problem, based on the simultaneous approximation term (SAT) method, have shown to introduce significant stiffness. This can lead to highly inefficient schemes. Here, two new methods of imposing the interface conditions to avoid the stiffness problems are presented: 1) a projection method and 2) a hybrid between the projection method and the SAT method. Numerical experiments are performed using traditional and order-preserving interpolation operators. Both of the novel methods retain the accuracy and convergence behavior of the previously developed SAT method but are significantly less stiff.
翻译:考虑第二波方程式与不兼容网格的接口条件的定位方法; 空间离散基于按部和部分列的高度定序差异; 以前提出的解决这一问题的解决方案方法,以同时近似值(SAT)方法为基础,显示其具有显著的僵硬性; 这可能导致效率极低的计划; 这里提出了两种新的方法,强制采用接口条件以避免僵硬性问题:(1) 预测方法;(2) 预测方法与SAT方法之间的混合; 数字实验是使用传统的和保留订单的内插操作器进行的; 两种新方法都保留了以前开发的SAT方法的准确性和趋同性,但明显不那么僵硬。