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Digital twins of multiscale 3D heterogeneous geological objects: 3D simulations and seismic imaging of faults, fractures and caves

机译:多尺度3D异构地质对象的数字双胞胎:3D模拟和故障的地震成像,裂缝和洞穴

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Numerical simulation of seismic waves' propagation and imaging in a three-dimensional multiscale geological media is one of the main trends in the development of modern geophysics. We present the work flow for construction of the 3D digital twin of some real geological object. This object is cavernous fractured carbonate reservoir near the Riphean roof. One of the main features of this object is the presence of the family of faults filled with tectonic breccia. To simulate them, in particular, their interiors and surrounding damaged areas, we simulate paleotectonic processes with the use of 3D discrete elements technique. This simulation we do by GPU parallelization. Next, when the fine digital geological model is done, we perform 3D finite-difference simulation of the seismic waves' propagation and get the full 3D synthetic data set. To do this simulation we use an original technique based on local grid refinement in time and space. To be able to deal with huge amount of input/output data we use High-Performance Computing (HPC) systems with parallel architecture and hybrid parallelization strategy by simultaneous use of MPI and OpenMP. The final step is validation of our original multiscale algorithm for seismic imaging, which suppresses specular reflection, but accumulates weak scattered/diffracted waves. This approach opens the way to the reconstruction of subseismic geological objects, like fractures, fracture corridors and clusters of caves. To construct these images we use HPC with parallel architecture and MPI+OpenMP programming.
机译:地震波在三维多尺度地质媒体中的地震波传播和成像的数值模拟是现代地球物理发展的主要趋势之一。我们介绍了一些真实地质对象的3D数字双胞胎建设的工作流程。该目的是岩石屋顶附近的海绵体碎屑储层。该目的的主要特征之一是存在填充构造Breccia的故障系列的存在。为了模拟它们,特别是它们的内部和周围受损区域,我们通过使用3D离散元件技术来模拟古莲工艺。我们通过GPU并行化进行了此模拟。接下来,当完成精细数字地质模型时,我们执行地震波传播的3D有限差分仿真并获得完整的3D合成数据集。为此,我们使用基于当地网格精制的原始技术及时的时间和空间。为了能够处理大量的输入/输出数据,我们通过同时使用MPI和OpenMP,使用具有并行架构和混合并行化策略的高性能计算(HPC)系统。最后一步是验证我们对地震成像的原始多尺度算法,其抑制镜面反射,但累积弱散射/衍射波。这种方法打开了对岩层地质物体的重建的方式,如裂缝,断裂走廊和洞穴簇。要构建这些图像,我们使用HPC与并行架构和MPI + OpenMP编程。

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