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An Efficient and Robust Tsunami Model on Unstructured Grids. Part I: Inundation Benchmarks

机译:非结构化网格上的高效鲁棒海啸模型。第一部分:浸水基准

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A modern multi-purpose baroclinic circulation model (SELFE) has been recently extended to include the ability to simulate tsunami propagation and inundation. The core model is based on the 3-D nonlinear shallow-water wave (NSW) equations, which are solved on unstructured grids, using the finite-element method. A semi-implicit method is used to solve all equations to enhance numerical stability, thus bypassing the most stringent CFL restriction on the time step. Further aided algorithmically by an Eulerian-Lagrangian solution of the advection terms in the momentum equation and by a simple yet effective inundation algorithm, SELFE is very efficient and robust in both quasi-2-D (with two vertical layers) and 3-D modes. A quasi-2-D version of the model is being used to update and expand the characterization of tsunami hazards along the Oregon coast. As a part of a rigorous testing procedure that includes multiple types of coastal problems, we present in this paper a quantitative assessment of performance of the quasi-2-D SELFE for two challenging open benchmark problems proposed in the 3rd International Workshop on Long-wave Runup Models. Satisfactory results are obtained for both problems.
机译:最近扩展了现代多功能斜斜环流模型(SELFE),以包括模拟海啸传播和淹没的能力。核心模型基于3-D非线性浅水波(NSW)方程,该方程使用有限元方法在非结构网格上求解。半隐式方法用于求解所有方程,以增强数值稳定性,从而绕过了时间步长上最严格的CFL限制。通过动量方程中对流项的欧拉-拉格朗日解和简单但有效的淹没算法在算法上进一步辅助,SELFE在准2-D(具有两个垂直层)和3-D模式下都非常高效且强大。该模型的准2-D版本用于更新和扩展俄勒冈州沿海海啸危害的特征。作为包括多种类型海岸问题的严格测试程序的一部分,我们在本文中对3 rd中提出的两个具有挑战性的开放基准问题的准2-D SELFE性能进行了定量评估。 sup>国际长波运行模型研讨会。对于这两个问题均获得令人满意的结果。

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