首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Implications of postseismic gravity change following the great 2004 Sumatra-Andaman earthquake from the regional harmonic analysis of GRACE intersatellite tracking data
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Implications of postseismic gravity change following the great 2004 Sumatra-Andaman earthquake from the regional harmonic analysis of GRACE intersatellite tracking data

机译:从GRACE星际跟踪数据的区域谐波分析看2004年苏门答腊-安达曼特大地震后地震后重力变化的含义。

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We report Gravity Recovery and Climate Experiment (GRACE) satellite observations of coseismic displacements and postseismic transients from the great Sumatra-Andaman Islands (thrust event; M w ~9.2) earthquake in December 2004. Instead of using global spherical harmonic solutions of monthly gravity fields, we estimated the gravity changes directly using intersatellite range-rate data with regionally concentrated spherical Slepian basis functions every 15-day interval. We found significant step-like (coseismic) and exponential-like (postseismic) behavior in the time series of estimated coefficients (from May 2003 to April 2007) for the spherical Slepian functions. After deriving coseismic slip estimates from seismic and geodetic data that spanned different time intervals, we estimated and evaluated postseismic relaxation mechanisms with alternate asthenosphere viscosity models. The large spatial coverage and uniform accuracy of our GRACE solution enabled us to clearly delineate a postseismic transient signal in the first 2 years of postearthquake GRACE data. Our preferred interpretation of the long-wavelength components of the postseismic gravity change is biviscous viscoelastic flow. We estimated a transient viscosity of 5 × 1017 Pa s and a steady state viscosity of 5 × 1018–1019 Pa s. Additional years of the GRACE observations should provide improved steady state viscosity estimates. In contrast to our interpretation of coseismic gravity change, the prominent postearthquake positive gravity change around the Nicobar Islands is accounted for by seafloor uplift with less postseismic perturbation in intrinsic density in the region surrounding the earthquake.
机译:我们报告了2004年12月发生的苏门答腊-安达曼群岛大地震(推力事件; M w〜9.2)的同震位移和震后瞬变的重力恢复和气候实验(GRACE)卫星观测结果。而不是使用月度重力场的全局球谐解,我们每隔15天使用卫星间测距速率数据和区域集中的球形Slepian基函数直接估计重力变化。在球形Slepian函数的估计系数的时间序列(从2003年5月到2007年4月)中,我们发现了明显的阶梯状(同震)和指数状(后震)行为。从跨越不同时间间隔的地震和大地测量数据推导出同震滑动估计后,我们用交替的软流圈粘度模型估计和评估了震后松弛机制。 GRACE解决方案的大空间覆盖范围和统一精度使我们能够在地震GRACE数据的前两年清晰地描绘出地震后的瞬态信号。我们对震后重力变化的长波分量的首选解释是双粘粘弹性流动。我们估计瞬态粘度为5×1017 Pa s,稳态粘度为5×1018–1019 Pa s。 GRACE观测的其他年份应提供改进的稳态粘度估算值。与我们对同震重力变化的解释相反,尼科巴群岛附近地震后正重力的显着变化是由于海床隆升引起的,而地震周围区域的固有密度对震后的干扰较小。

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