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首页> 外文期刊>Bulletin of the Seismological Society of America >Continuous borehole strain and pore pressure in the near field of the 28 September 2004 M 6.0 Parkfield, California, earthquake: Implications for nucleation, fault response, earthquake prediction, and tremor
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Continuous borehole strain and pore pressure in the near field of the 28 September 2004 M 6.0 Parkfield, California, earthquake: Implications for nucleation, fault response, earthquake prediction, and tremor

机译:2004年9月28日在加利福尼亚州帕克菲尔德市发生地震的近场中连续的井眼应变和孔隙压力,地震:对形核,断层响应,地震预测和震颤的影响

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摘要

Near-field observations of high-precision borehole strain and pore pressure, show no indication of coherent accelerating strain or pore pressure during the weeks to seconds before the 28 September 2004 M 6.0 Parkfield earthquake. Minor changes in strain rate did occur at a few sites during the last 24 hr before the earthquake but these changes are neither significant nor have the form expected for strain during slip coalescence initiating fault failure. Seconds before the event, strain is stable at the 10(-11) level. Final prerupture nucleation slip in the hypocentral region is constrained to have a moment less than 2 x 10(12) N m (M 2.2) and a source size less than 30 m. Ground displacement data indicate similar constraints. Localized rupture nucleation and runaway precludes useful prediction of damaging earthquakes. Coseismic dynamic strains of about 10 microstrain peak-to-peak were superimposed on volumetric strain offsets of about 0.5 microstrain to the northwest of the epicenter and about 0.2 microstrain to the southeast of the epicenter, consistent with right lateral slip. Observed strain and Global Positioning System (GPS) offsets can be simply fit with 20 cm of slip between 4 and 10 km on a 20-km segment of the fault north of Gold Hill (M-0 = 7 x 10(17) N m). Variable slip inversion models using GPS data and seismic data indicate similar moments. Observed postseismic strain is 60% to 300% of the coseismic strain, indicating incomplete release of accumulated strain. No measurable change in fault zone compliance preceding or following the earthquake is indicated by stable earth tidal response. No indications of strain change accompany nonvolcanic tremor events reported prior to and following the earthquake.
机译:在2004年9月28日M 6.0帕克菲尔德地震之前的几周至几秒钟内,对高精度井眼应变和孔隙压力的近场观测结果未显示出连续加速应变或孔隙压力的迹象。在地震发生前的最后24小时内,在几个位置上确实发生了应变率的微小变化,但是这些变化既不明显,也没有滑动滑动合并引发断层破坏时预期的应变形式。事件发生前几秒钟,应变稳定在10(-11)的水平。震中区域的最终破裂前成核滑动被限制为力矩小于2 x 10(12)N m(M 2.2),震源尺寸小于30 m。地面位移数据表明相似的约束条件。局部破裂形核和失控排除了对破坏性地震的有用预测。峰-峰约10微应变的同震动态应变叠加在距震中西北约0.5微应变和距震中东南约0.2微应变的体积应变偏移上,这与右侧滑移一致。可以在Gold Hill以北20公里的断层段上,在4至10 km之间滑动20 cm的滑移,即可观测到的应变和全球定位系统(GPS)偏移量(M-0 = 7 x 10(17)N m )。使用GPS数据和地震数据的可变滑动反演模型表明了相似的矩。观察到的地震后应变为同震应变的60%至300%,表明累积应变释放不完全。稳定的地球潮汐反应表明,地震前后断裂带顺应性没有可测量的变化。在地震之前和之后,均未报告有应变变化的迹象伴随非火山震颤事件。

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