A temporal homogenization approach for the numerical simulation of atherosclerotic plaque growth is extended to fully coupled fluid-structure interaction (FSI) simulations. The numerical results indicate that the two-scale approach yields significantly different results compared to a simple heuristic averaging, where only stationary long-scale FSI problems are solved, confirming the importance of incorporating stress variations on small time-scales. In the homogenization approach, a periodic fine-scale problem, which is periodic with respect to the heart beat, has to be solved for each long-scale time step. Even if no exact initial conditions are available, periodicity can be achieved within only 2-3 heart beats by simple time-stepping.
翻译:计算结果显示,与仅解决固定性长期FSI问题的简单超常平均相比,两种尺度方法产生的结果大不相同,这证实了将压力变化纳入小型时间尺度的重要性。在统一方法中,定期对心脏跳动进行定期调整的细度问题必须在每个长期步骤中得到解决。即使没有确切的初始条件,周期性只能通过简单的时间步骤在2-3心脏跳动中实现。