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Hybrid Galerkin numerical modelling of elastodynamics and compressible Navier–Stokes couplings: applications to seismo-gravito acoustic waves

机译:弹性动力学和可压缩Navier–Stokes耦合的混合Galerkin数值建模:在地震引力声波中的应用

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摘要

We introduce a hybrid Galerkin modelling tool for the nonlinear acoustic and gravity wave propagation in planetary atmospheres coupled through topography to a solid medium. We rely on a 2-D spectral-element technique to model linear visco-elastic solid media and couple it to a discontinuous Galerkin method for the atmosphere modelled by the fully nonlinear Navier–Stokes equations. Significant benefits of such a method are, first, its versatility because it handles both acoustic and gravity waves in the same simulation, second, it enables one to observe nonlinear effects as convection or wave-breaking and, finally, it allows one to study the impact of ground-atmosphere coupling for waves propagating from seismic sources. Simulations are performed for 2-D isothermal atmosphere models with complex wind and viscosity profiles. We validate the computations by comparing them to finite-difference solutions, already validated in a previous paper. Specific benchmark validation cases are considered for both acoustic and gravity waves subject to viscosity variations, wind duct and nonlinear wave breaking. We apply this tool to study acoustic and gravity waves generated by a strong seismic source and its nonlinear breaking in the upper atmosphere.
机译:我们介绍了一种混合Galerkin建模工具,用于在通过地形耦合到固体介质的行星大气中进行非线性声波和重力波传播。我们依靠二维频谱元素技术对线性粘弹性固体介质进行建模,并将其耦合到由完全非线性Navier–Stokes方程建模的大气的不连续Galerkin方法。这种方法的显着优点是,首先,它的多功能性是因为它可以在同一模拟中同时处理声波和重力波,其次,它使人们能够观察到对流或破碎波等非线性效应,最后,它使人们可以研究非线性地-气耦合对地震波传播的影响针对具有复杂风和粘度曲线的二维等温大气模型进行了仿真。我们通过将计算与之前论文中已经验证过的有限差分解决方案进行比较来验证计算结果。考虑了声波和重力波在粘度变化,风道和非线性波折断下的特定基准验证案例。我们使用此工具来研究由强震源产生的声波和重力波及其在高层大气中的非线性破坏。

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