We present a highly scalable 3D fully-coupled Earth & ocean model of earthquake rupture and tsunami generation. We model seismic, acoustic and surface gravity wave propagation in elastic (Earth) and acoustic (ocean) materials sourced by physics-based non-linear earthquake dynamic rupture. Complicated geometries, including high-resolution bathymetry, coastlines and segmented earthquake faults are discretized by adaptive unstructured tetrahedral meshes. A Discontinuous Galerkin discretization with ADER local time-stepping (ADER-DG) yields petascale computational efficiency and high-order accuracy in time and space. We compare the 3D fully-coupled approach to a benchmark problem for 3D-2D linked models that use 2D shallow-water modeling. We present a large-scale fully-coupled model of the 2018 Sulawesi events that links the dynamics from supershear earthquake faulting to elastic and acoustic waves in Earth and ocean to tsunami gravity wave propagation in the narrow Palu Bay. And we demonstrate scalability and performance of the MPI+OpenMP parallelization on three petascale supercomputers.
翻译:我们展示了高度可扩缩的地震断裂和海啸生成三维完全相联的地球和海洋模型。我们模拟了以物理和非线性地震动态破裂为源的弹性(地球)和声学(海洋)材料的地震、声学和地表重力波传播。复杂的地貌,包括高分辨率测深、海岸线和断裂式地震断层,通过适应性强的无结构四面藻分解而分离。与ADER当地时间跨行(ADER-DG)不连续的加亮分解,在时间和空间上产生浮标的计算效率和高度级精确度。我们比较了3D完全相联的3D方法与使用2D浅水模型的3D相联模型的基准问题。我们展示了2018 Sulawesi事件的一个大规模全相联模型,该模型将超听地震断层断层与地球和海洋的弹性和声波与狭窄的Palu湾的海啸重力波波相连接。我们展示了MP号+SOOSMP的三次级同步模型的可伸缩性和性。