We develop a computational framework that leverages the features of sophisticated software tools and numerics to tackle some of the pressing issues in the realm of earth sciences. The algorithms to handle the physics of multiphase flow, concomitant geomechanics all the way to the surface of the earth and the complex geometries of field cases with surfaces of discontinuity are stacked on top of each other in a modular fashion which allows for easy use to the end user. The current focus of the framework is to provide the user with tools for assessing seismic risks associated with energy technologies as well as for use in generating forward simulations in inversion analysis from data obtained using GPS and InSAR. In this work, we focus on one critical aspect in the development of the framework: the use of computational geometry in a two-grid method for unstructured tetrahedral meshes
翻译:我们开发了一个计算框架,利用尖端软件工具和数字的特征,解决地球科学领域的一些紧迫问题。处理多相流物理学的算法,同时通往地球表面的地质机械学,以及具有不连续表面的复杂的实地案例的复杂地貌等,都以模块方式堆叠在一起,便于最终用户使用。框架目前的重点是为用户提供工具,用于评估与能源技术有关的地震风险,以及用于利用GPS和InSAR获得的数据进行前向模拟转换分析。在这项工作中,我们侧重于框架开发中的一个关键方面:使用两格方法计算非结构化四面形色素的计算几何方法。