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Anisotropic Rock Properties at the First EGS Collab Testbed

机译:第一个EGS Collab试验台的各向异性岩石性质

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Geophysical characterization of reservoir rocks is crucial for effectively stimulating and monitoring fracture performance in enhanced geothermal systems. Specifically, seismic characterization data can inform more precise hypocenter locations and geomechanical models. In this effort, campaign cross-borehole seismic data were collected as part of a comprehensive characterization suite of the first EGS Collab testbed prior to EGS Collab hydraulic stimulation experiments. The testbed was established in metamorphic, crystalline rock at the 4850 ft deep at the Sanford Underground Research Facility in Lead, South Dakota. We previously reported anisotropic traveltime tomography of the campaign cross-borehole seismic data to reveal a heterogeneous velocity structure and anisotropy and then applied an anisotropic elastic-waveform inversion method to the data to refine velocity heterogeneities and anisotropic parameters within the first EGS Collab testbed. To improve the accuracy and fidelity of the tomography and inversion results, we expanded our study to include all available campaign seismic data in the injection, production and monitoring wells. Additionally, we have obtained a set of 3D high-resolution P-/S-wave velocity and Thomsen anisotropic parameter models for the fracture stimulation regions. The inverted velocity and anisotropic medium parameter models can serve as the base for time-lapse active seismic monitoring and microseismic monitoring during and after the hydraulic stimulation activities at the EGS Collab testbed.
机译:储层岩石的地球物理表征对于有效刺激和监测增强地热系统的断裂性能至关重要。具体地,地震表征数据可以通知更精确的次级次级位置和地质力学模型。在这种努力中,作为在EGSBAB液压刺激实验之前第一个EGS Collab的综合表征套件的一部分收集了竞选交叉钻孔地震数据。该试验台在南达科他州赛德福地下研究设施的4850英尺深的4850英尺深的晶体岩石中建立了变质岩石。我们之前报道了竞选跨钻孔地震数据的各向异性旅行时间断层扫描,以揭示异质速度结构和各向异性,然后将各向异性的弹性波形反转方法施加到数据中以改进第一egs Charlab测试的速度异质性和各向异性参数。为了提高断层扫描和反演结果的准确性和保真度,我们将学习扩展到包括注射,生产和监测井中的所有可用的竞选地震数据。另外,我们已经获得了一组3D高分辨率P-/ S波速度和骨折刺激区的各向异性参数模型。倒置速度和各向异性介质参数模型可以作为延时活动地震监测和微震刺激在EGS Collab试验台的液压刺激活动期间和微震监测的基础。

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