首页> 外文期刊>Journal of South American earth sciences >Gradients from GOCE reveal gravity changes before Pisagua Mw=8.2 and Iquique Mw=7.7 large megathrust earthquakes
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Gradients from GOCE reveal gravity changes before Pisagua Mw=8.2 and Iquique Mw=7.7 large megathrust earthquakes

机译:来自GOCE的梯度揭示了在比萨斜波Mw = 8.2和伊基克Mw = 7.7大兆推力地震之前的重力变化

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摘要

Considerable improvements in the measurement of the Earth gravity field from GOCE satellite mission have provided global gravity field models with homogeneous coverage, high precision and good spatial resolution. In particular, the vertical gravity gradient (Tzz), in comparison to the classic Bouguer anomaly, defines more accurately superficial mass heterogeneities. Moreover, the correction of these satellite-derived data from the effect of Earth topographic masses by means of new techniques taking into account the Earth curvature, improves results in regional analyses. In a recent work we found a correlation between Tzz and slip distribution for the 2010 Maule Mw = 8.8 earthquake. In the present work, we derive the vertical gravity gradient from the last GOCE only model, corrected by the topographic effect and also by the sediments on depocenters of the offshore region at the Peru Chile margin, in order to study a spatial relationship between different lobes of the gravity derived signal and the seismic sources of large megathrust earthquakes. In particular, we analyze this relation for the slip models of the 1996 Mw = 7.7 Nazca, 2001 Mw = 8.4 Arequipa, 2007 Mw = 8.0 Pisco events and for the slip models of the 2014 Mw = 8.2 Pisagua and Mw = 7.7 Iquique earthquakes from Schurr et al. (2014), including the previously analyzed 2010 Mw = 8.8 Maule event. Then we find a good correlation between vertical gravity gradients and main rupture zones, correlation that becomes even stronger as the event magnitude increases. Besides this, a gravity fall in the gravity gradient was noticed over the area of the main slip patches at least for the two years before 2014 Mw = 8.2 Pisagua and Mw = 7.7 Iquique earthquakes. Additionally, we found temporal variations of the gravity field after 2010 Mw = 8.8 Maule event, related to the main patches of the slip distribution, and coseismic deformation. Therefore, we analyzed vertical gravity gradient field variations as an indirect measure of the variable seismic coupling finding a potential relationship between Tzz and the seismic b-value. These relationships exemplify the strong potential of the satellite only derived models as a predictive tool to determine potential seismic energy released in a subduction segment, determining the potential size of a potential rupture zone, and in particular internal slip distribution that allows inferring coseismic displacement field at surface. (C) 2015 Elsevier Ltd. All rights reserved.
机译:GOCE卫星任务在对地球重力场进行测量方面的显着改进为全球重力场模型提供了均一的覆盖范围,高精度和良好的空间分辨率。特别是,与经典的布格异常相比,垂直重力梯度(Tzz)更准确地定义了表面质量异质性。此外,通过考虑地球曲率的新技术对来自地球地形质量的影响的这些卫星数据进行校正,可以改善区域分析的结果。在最近的工作中,我们发现2010年莫尔8.8级地震的Tzz与滑动分布之间存在相关性。在目前的工作中,我们从最后的GOCE唯一模型中导出垂直重力梯度,并通过地形效应以及秘鲁智利边缘近海区域沉积中心的沉积物进行了校正,以研究不同波瓣之间的空间关系。重力信号和大推力地震的震源。特别是,我们针对1996年Mw = 7.7纳斯卡,2001年Mw = 8.4阿雷基帕,2007年Mw = 8.0皮斯科事件和2014年Mw = 8.2皮萨瓜和Mw = 7.7伊基克地震的滑模分析了这种关系Schurr等。 (2014),包括之前分析的2010 Mw = 8.8 Maule事件。然后,我们发现垂直重力梯度与主要破裂带之间具有良好的相关性,随着事件量级的增加,这种相关性甚至会增强。除此之外,至少在2014年之前的两年里,在主滑带区域上发现了重力梯度的重力下降,Mw = 8.2 Pisagua,Mw = 7.7 Iquique地震。此外,我们发现2010 Mw = 8.8 Maule事件后重力场的时间变化与滑移分布的主要斑块和同震变形有关。因此,我们分析了垂直重力梯度场的变化,作为对可变地震耦合的间接测量,从而发现了Tzz与地震b值之间的潜在关系。这些关系证明了仅卫星衍生模型的强大潜力,可作为一种预测工具来确定俯冲段释放的潜在地震能量,确定潜在破裂带的潜在大小,尤其是内部滑动分布,从而可以推断出同震位移场。表面。 (C)2015 Elsevier Ltd.保留所有权利。

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