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GO_3D_OBS: the multi-parameter benchmark geomodel for seismic imaging method assessment and next-generation 3D survey design (version 1.0)

机译:go_3d_obs:用于地震成像方法评估和下一代3D调查设计的多参数基准地理位置(版本1.0)

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Detailed reconstruction of deep crustal targets by seismic methods remains a long-standing challenge. One key to address this challenge is the joint development of new seismic acquisition systems and leading-edge processing techniques. In marine environments, controlled-source seismic surveys at a regional scale are typically carried out with sparse arrays of ocean bottom seismometers (OBSs), which provide incomplete and down-sampled subsurface illumination. To assess and minimize the acquisition footprint in high-resolution imaging process such as full waveform inversion, realistic crustal-scale benchmark models are clearly required. The deficiency of such models prompts us to build one and release it freely to the geophysical community. Here, we introduce GO_3D_OBS – a 3D high-resolution geomodel representing a subduction zone, inspired by the geology of the Nankai Trough. The 175 km × 100 km × 30 km model integrates complex geological structures with a viscoelastic isotropic parameterization. It is defined in the form of a uniform Cartesian grid containing ~ 33.6e9 degrees of freedom for a grid interval of 25?m. The size of the model raises significant high-performance computing challenges to tackle large-scale forward propagation simulations and related inverse problems. We describe the workflow designed to implement all the model ingredients including 2D structural segments, their projection into the third dimension, stochastic components, and physical parameterization. Various wavefield simulations that we present clearly reflect in the seismograms the structural complexity of the model and the footprint of different physical approximations. This benchmark model is intended to help to optimize the design of next-generation 3D academic surveys – in particular, but not only, long-offset OBS experiments – to mitigate the acquisition footprint during high-resolution imaging of the deep crust.
机译:通过地震方法对深层地壳目标的详细重建仍然是一个长期存在的挑战。解决这一挑战的一个关键是新地震采集系统和前沿加工技术的联合开发。在海洋环境中,区域尺度的受控源地震调查通常具有稀疏的海底地震仪阵列(OBS),其提供不完整和下行采样的地下照明。为了评估和最小化高分辨率成像过程中的采集足迹,如全波形反转,清楚地需要现实的地壳级基准模型。这些模型的缺陷提示我们建立一个并自由地将其释放到地球物理社区。在这里,我们介绍了Go_3d_obs - 表示俯冲区域的3D高分辨率地理典,受到南开槽地质的启发。 175公里×100公里×30km型号通过粘弹性各向同性参数化集成了复杂的地质结构。它以均匀笛卡尔栅格的形式定义,该网格含有〜33.6e9自由度为25Ωm的网格间隔。该模型的大小提高了显着的高性能计算挑战,以解决大规模的前向传播模拟和相关的逆问题。我们描述了设计用于实现所有模型成分的工作流程,包括2D结构段,它们投影进入第三维,随机分量和物理参数化。我们提出的各种波场模拟清楚地反映了地震图的模型结构复杂性和不同物理近似的占地面积。该基准模型旨在帮助优化下一代3D学术调查的设计 - 特别是,但不仅是长偏移的OBS实验 - 以减轻深层地壳的高分辨率成像期间的采集足迹。

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