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Critical sensitivity of load/unload response ratio and stress accumulation before large earthquakes: example of the 2008 Mw7.9 Wenchuan earthquake

机译:大地震之前的载荷/载荷响应比和应力累积的临界灵敏度:以2008年Mw7.9汶川地震为例

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The Load/Unload Response Ratio (LURR) method is often defined as the ratio between Benioff strains released during the time periods of loading and unloading, corresponding to earth tide induced Coulomb Failure Stress change on optimally oriented faults. According to the method, anomalous increase in the time series of LURR usually occurs prior to occurrence of a large earthquake. Previous studies have indicated that the stress field that existed before a large earthquake has strong influence on the evaluation of LURR. In order to augment the sensitivity of LURR in measuring the criticality of stress accumulation before an earthquake, we replace the circular region usually adopted in LURR practice with an area within which the tectonic stress changewould mostly affect the Coulomb stress on a potential seismogenic fault of a future event. Coulomb stress change before the hypothetical earthquake is calculated based on a simple back-slip dislocation model of the event. Retrospective test of this new algorithm on the 2008 Mw7.9 Wenchuan earthquake shows remarkable enhancement of the LURR precursory anomaly. To illustrate the variation of LURR time series associated with our choice of identified areas with increased Coulomb stress before the earthquake, we calculate the spatial distributions of LURR within a circular region of 700 km radius centered at epicenter of the event. Comparing the spatial LURR distributions of different periods, the change of LURR within the Coulomb stress increase areas looks more prominent than the others: it remains at a low level for most of the time and markedly increases few years before the quake. This result further shows the validity of the Coulomb stress algorithm. Unlike circular regions, areas of increased Coulomb stress with anomalously increased LURR values before a large earthquake could provide a relatively more precise estimation of the criticality of the ensuing event.
机译:加载/卸载响应比(LURR)方法通常定义为在加载和卸载时间段内释放的贝尼奥夫应变之间的比率,对应于在最佳定向断层上大地引起的库仑破坏应力变化。根据该方法,LURR的时间序列的异常增加通常在大地震发生之前发生。先前的研究表明,大地震之前存在的应力场对LURR的评估有很大的影响。为了增强LURR在测量地震前应力积累的临界度方面的敏感性,我们将LURR实践中通常采用的圆形区域替换为一个区域,在该区域中,构造应力的变化将主要影响库仑应力,从而潜在地引起地震。未来事件。根据简单的事件后滑脱位模型,计算假设地震之前的库仑应力变化。该新算法在2008年汶川Mw7.9地震中的回顾性测试表明,LURR前兆异常显着增强。为了说明与我们选择的地震前库仑应力增加的选定区域相关的LURR时间序列的变化,我们计算了以事件震中为中心的半径700 km的圆形区域内LURR的空间分布。比较不同时期的空间LURR分布,库仑应力增加区域内LURR的变化看起来比其他区域更为突出:在大部分时间中,其处于较低水平,并在地震发生前的几年显着增加。该结果进一步表明了库仑应力算法的有效性。与圆形区域不同,在大地震之前库仑应力增加且LURR值异常增加的区域可以相对准确地估计随后发生的事件的严重性。

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