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首页> 外文期刊>Izvestiya. Physics of the solid earth >On the Dynamics of the Seasonal Components of Induced Seismicity in the Koyna-Warna Region, Western India
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On the Dynamics of the Seasonal Components of Induced Seismicity in the Koyna-Warna Region, Western India

机译:论印度西部Koyna-Warna地区诱导地震性季节性成分的动态

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摘要

The spatial and time dynamics are analyzed for the seasonal components of induced seismicity in the Koyna-Warna region of Western India. The peculiarities of the variations in these components are compared to the changes in the local tectonic regime inferred from the focal mechanism data of the earthquakes. Based on this, the hypotheses about the probable nature of the dynamics in the seasonal components of seismicity are suggested. It is noted that the variations in the seasonal seismic activity after the impoundment of the Koyna reservoir in the north are caused by the spatial migration of the induced seismicity and activation of the normal faults in the south. It is hypothesized that the process of fracture migration from the north to the south at this stage advanced the diffusion of the fluid from the Koyna reservoir, and as the water front reached the southern zone of normal faulting, this caused reactivation of the seasonal seismicity. An explanation is suggested for the stronger response of the seasonal activity in the region of Warna reservoir compared to the Koyna area: in contrast to Koyna, filling the Warna reservoir was geographically close to the area of activated seismicity. It is shown that the localization and sizes of the areas of the instantaneous and delayed components in the seasonal activity of the induced seismicity are determined by the localization and sizes of the areas of high stresses created by the increase in the pore pressure in highly permeable fault zones.
机译:在印度西部Koyna-Warna地区诱导地震性的季节性成分分析了空间和时间动态。将这些组分的变化的特性与从地震局灶性机制数据推断的局部构造方案的变化进行比较。基于这一点,提出了关于地震性季节性分量中动态的可能性的假设。注意,北方Koyna储层蓄水后季节性地震活动的变化是由诱导地震性的空间迁移引起的,南方南部的正常断层。假设北部到南部的断裂过程在本阶段提出了流体从koyna水库的扩散,并且随着水的前线达到正常断裂的南部区域,这导致了季节性地震的重新激活。与Koyna地区相比,在警报储层区域对季节性活动的响应更强的解释:与Koyna相比,填充警报储层在地理上靠近活性地震面积。结果表明,诱导地震性季节性活性的瞬时和延迟组分区域的定位和尺寸由通过在高度渗透断层的孔隙压力增加而产生的高应力区域的定位和尺寸确定区域。

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