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Adaptive Numerical Modeling of Tsunami Wave Generation and Propagation with FreeFem++

机译:海啸波动的自适应数值建模与自由菲姆++传播

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A simplified nonlinear dispersive Boussinesq system of the Benjamin–Bona–Mahony (BBM)-type, initially derived by Mitsotakis (2009), is employed here in order to model the generation and propagation of surface water waves over variable bottom. The simplification consists in prolongating the so-called Boussinesq approximation to bathymetry terms, as well. Using the finite element method and the FreeFem++ software, we solve this system numerically for three different complexities for the bathymetry function: a flat bottom case, a variable bottom in space, and a variable bottom both in space and in time. The last case is illustrated with the Java 2006 tsunami event. This article is designed to be a pedagogical paper presenting to tsunami wave community a new technology and a novel adaptivity technique, along with all source codes necessary to implement it.
机译:本杰明-NONA-MAHONONY(BBM)-TYPE的简化非线性分散BOUSSINESQ系统最初由MITSOTAKIS(2009)衍生,以便在可变底部模拟表面水波的产生和传播。简化包括延长所谓的Bousinesq近似到沐浴术语。使用有限元方法和FreeFem ++软件,我们在数值上以三种不同的复杂性为浴约定功能来解决:平坦的底壳,空间中的可变底部,以及空间和时间内的可变底部。最后一个案例用Java 2006 Tsunami事件说明。本文旨在成为展示海啸波社区的教学论文,一种新技术和新型适应性技术,以及实现它所需的所有源代码。

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