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Drilling into Seismogenic Zone And Exploration Geophysics

机译:钻入地震区和勘探地球物理

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摘要

Geological observation have been carried out on faults which appeared on the earth's surface after earthquakes, although fault failures were initiated and propagated in the deep underground. Similarly, seismic studies were based on simplified fault plane models, although seismic ruptures had radiated seismic waves at depths deeper than a few kilometers along faults of unknown plane surface properties. These days, various seismic inversion studies indicate that fault planes are not uniform so that seismic signals generated at a fault plane are functions of space and time. These facts clearly imply that studies need to he made in depths for investigating parameters differing the generated earthquake signals at the fault plane from a simple fault rupturing process. There is, indeed, a necessity to conduct a joint study on earthquake faults in terms of their kinematics from multidisciplinary point of view for further studying earthquakes in geological settings of fault planes and eventually in their generation mechanisms. Drilling would provide a clue to correlate physical properties of rocks surrounding earthquake faults with earthquake generation/propagation mechanisms. After reviewing what would be necessary to understand fault behavior in seismology, we concluded the following: (1) Understanding fluid flow around fault planes is of importance as in exploration geophysics, (2) Property mapping is an indispensable method even for seismological studies, (3) Logging tools must be optimized in their calibration or in response function for rocks in seismogenic zones, (4) Parameters for scaling and constitutive laws need to be considered as an application of the future exploration target, and (5) long-term monitoring is strongly needed to monitor possible changes in physical properties in an earthquake generation cycle.
机译:虽然发生故障故障并在地下地下发生故障,但在地球表面出现的故障上进行了地质观察。类似地,地震研究基于简化的故障平面模型,尽管抗震性破裂在沿未知平面表面特性的故障更深于几公里的深度辐射地震波。如今,各种地震反演研究表明故障平面不均匀,使得在故障平面处产生的地震信号是空间和时间的函数。这些事实清楚地暗示,研究需要深入研究,用于调查与简单故障破裂过程中的故障平面上产生的地震信号不同的参数。实际上,从多学科观点来看,有必要对他们的运动学进行动力学进行地震断层的联合研究,以进一步研究故障飞机地质环境中的地震,最终在其发电机制中。钻井将提供一种线索,以通过地震产生/传播机制将岩石围绕岩石的物理性质相关联。审查在地震学中有必要了解故障行为后,我们得出结论:(1)了解故障飞机周围的流体流动在勘探地球物理中具有重要性,(2)房地产映射甚至是用于地震学研究的不可或缺的方法,( 3)伐木工具必须在校准或响应功能中优化,用于岩石的岩石中的岩石中的岩石,(4)缩放和本构法的参数需要被视为未来勘探目标的应用,并且(5)长期监测强烈需要在地震生成周期中监控物理性质的可能变化。

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