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首页> 外文期刊>Pure and Applied Geophysics >Parallel Implementation of Dispersive Tsunami Wave Modeling with a Nesting Algorithm for the 2011 Tohoku Tsunami
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Parallel Implementation of Dispersive Tsunami Wave Modeling with a Nesting Algorithm for the 2011 Tohoku Tsunami

机译:2011年东北海啸与嵌套算法的分散海啸波建模的并行实现

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Because of improvements in offshore tsunami observation technology, dispersion phenomena during tsunami propagation have often been observed in recent tsunamis, for example the 2004 Indian Ocean and 2011 Tohoku tsunamis. The dispersive propagation of tsunamis can be simulated by use of the Boussinesq model, but the model demands many computational resources. However, rapid progress has been made in parallel computing technology. In this study, we investigated a parallelized approach for dispersive tsunami wave modeling. Our new parallel software solves the nonlinear Boussinesq dispersive equations in spherical coordinates. A variable nested algorithm was used to increase spatial resolution in the target region. The software can also be used to predict tsunami inundation on land. We used the dispersive tsunami model to simulate the 2011 Tohoku earthquake on the Supercomputer K. Good agreement was apparent between the dispersive wave model results and the tsunami waveforms observed offshore. The finest bathymetric grid interval was 2/9 arcsec (approx. 5 m) along longitude and latitude lines. Use of this grid simulated tsunami soliton fission near the Sendai coast. Incorporating the three-dimensional shape of buildings and structures led to improved modeling of tsunami inundation.
机译:由于近海海啸观测技术的改进,最近的海啸(例如2004年印度洋和2011年东北海啸)经常观察到海啸传播过程中的分散现象。可以使用Boussinesq模型来模拟海啸的分散传播,但是该模型需要大量的计算资源。但是,并行计算技术已经取得了长足的进步。在这项研究中,我们研究了分散海啸波建模的并行方法。我们新的并行软件可解决球坐标系中的非线性Boussinesq色散方程。使用可变嵌套算法来增加目标区域中的空间分辨率。该软件还可用于预测陆地上的海啸淹没。我们使用色散海啸模型在超级计算机K上模拟了2011年的东北地震。色散波模型结果与海上观测到的海啸波形之间有着明显的一致性。最好的测深网格间隔沿经度和纬度线为2/9 arcsec(约5 m)。该网格的使用模拟了仙台海岸附近的海啸孤子裂变。纳入建筑物和结构的三维形状可以改善海啸淹没的建模。

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