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Microseismic techniques for avoiding induced seismicity during fluid injection

机译:用于避免液体注射过程中诱导地震性的微震技术

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Induced seismicity is inherently associated with underground fluid injections, including during geologic carbon sequestration. If fluids are injected in proximity to a pre-existing fault or fracture system, the resulting elevated pressures can trigger dynamic earthquake slip, which could both damage surface structures and create new migration pathways. The goal of this research is to develop a fundamentally better approach to geological site characterization and early hazard detection. We combine innovative techniques for analyzing microseismic data with a physics-based inversion model to forecast microseismic cloud evolution. The key challenge is that faults at risk of slipping are often too small to detect during the site characterization phase. Our objective is to devise fast-running methodologies that will allow field operators to respond quickly to changing subsurface conditions.
机译:诱导的地震性本质上与地下流体注射有关,包括在地质碳封存期间。如果流体被注入到预先存在的故障或骨折系统附近,则产生的升高的压力可以引发动态地震滑动,这可能损坏表面结构并产生新的迁移途径。该研究的目标是开发出色地质遗址表征和早期危害检测的基本更好的方法。我们将创新技术与基于物理的反演模型进行分析以分析微震数据,以预测微震云进化。关键挑战是,在现场表征阶段期间,在滑倒风险的故障通常太小而无法检测。我们的目标是设计快速运行的方法,允许现场运营商快速回应改变地下条件。

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