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Improved constraints on seismic source parameters of the 2011 Tohoku earthquake from GRACE gravity and gravity gradient changes

机译:通过GRACE重力和重力梯度变化改善了对2011年东北地震震源参数的约束

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摘要

A new approach of using only the north component of gravity change from Gravity Recovery and Climate Experiment (GRACE) data reveals that a substantially higher spatial resolution of the observed seismic deformation following the 2011 Tohoku earthquake is achievable at 333 km or longer. Here we show that GRACE-observed north component of gravity change, ~(-1)7.6 ± 1.1 μGal, and the corresponding gravity gradient change, e.g., Txz at 1.25 ± 0.09 mE?tv?s, agree well with seismic/GPS model predictions. Localized Slepian spectrum analysis further confirms that the GRACE gravity and gravity gradient changes agree well with seismic model spectra and have powers up to the limit of the GRACE solution complete to spherical harmonic degree 60. Using the gravity observations for the fault parameter inversion via simulated annealing algorithm, we show that the estimated slip orientation and centroid location are different from GPS/seismic solutions and potentially due to the additional offshore constraint from GRACE data.
机译:一种仅使用重力恢复和气候实验(GRACE)数据的重力变化的北向分量的新方法表明,在333 km或更长时间内,可以实现2011年东北地震后观测到的地震变形的更高的空间分辨率。在这里,我们显示GRACE观测到的重力变化的北向分量〜(-1)7.6±1.1μGal和相应的重力梯度变化,例如1.25±0.09 mE?tv?s的Txz,与地震/ GPS模型非常吻合预测。局部Slepian谱分析进一步证实了GRACE重力和重力梯度变化与地震模型谱吻合得很好,并且功率达到了GRACE解的极限,完全达到了球谐度60。通过模拟退火使用重力观测进行故障参数反演该算法表明,估计的滑动方向和质心位置与GPS /地震解决方案不同,并且可能是由于GRACE数据附加了海上约束。

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