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首页> 外文期刊>Pure and Applied Geophysics >3-D Modeling of Pore Pressure Diffusion Beneath Koyna and Warna Reservoirs, Western India
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3-D Modeling of Pore Pressure Diffusion Beneath Koyna and Warna Reservoirs, Western India

机译:印度西部Koyna和Warna水库下孔隙压力扩散的3-D模型

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摘要

The mechanism of reservoir-triggered seismicity is well-understood and explains the earthquake occurrence at different reservoir sites. It can be attributed to the stresses due to water loading and to changes in fluid pressure in pores within the rock matrix. In the present study a 3-D fluid flow numerical model is used to investigate the pore pressure diffusion as a cause for continued seismicity in the Koyna-Warna region in western India. It is shown that reservoir water level fluctuations are sufficient to trigger earthquakes at the seismogenic depths in the region. Our numerical model suggests that a vertical fault with hydraulic conductivity in the range 2-6 m/day facilitates the diffusion of pressure at focal depths of earthquakes in the Koyna-Warna region. Also, for triggering of earthquakes a higher vertical conductivity is required for the Warna region than for the Koyna region. A lag of two months period is found between the maximum water level and the significant hydraulic head required to trigger earthquakes at the focal depth using the appropriate hydraulic conductivity for both the reservoirs.
机译:水库引发地震的机制已被充分理解,并解释了不同水库位置的地震发生。这可归因于水荷载引起的应力,以及岩石基质内孔隙中流体压力的变化。在本研究中,使用三维流体流动数值模型来研究孔隙压力扩散作为印度西部Koyna-Warna地区持续地震活动的原因。研究表明,水库水位波动足以触发该地区孕震深度的地震。我们的数值模型表明,导水率在2-6 m/天范围内的垂直断层有助于Koyna-Warna地区地震震源深度处的压力扩散。此外,为了触发地震,沃纳地区需要比科伊纳地区更高的垂直电导率。在两个水库使用适当的导水率在震源深度触发地震所需的最大水位和有效水头之间存在两个月的滞后期。

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