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首页> 外文期刊>Pure and Applied Geophysics >Rapidly Estimated Seismic Source Parameters for the 16 September 2015 Illapel, Chile M (w) 8.3 Earthquake
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Rapidly Estimated Seismic Source Parameters for the 16 September 2015 Illapel, Chile M (w) 8.3 Earthquake

机译:2015年9月16日智利伊拉佩尔地震(M)8.3级地震的快速估算震源参数

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摘要

On 16 September 2015, a great (M (w) 8.3) interplate thrust earthquake ruptured offshore Illapel, Chile, producing a 4.7-m local tsunami. The last major rupture in the region was a 1943 M (S) 7.9 event. Seismic methods for rapidly characterizing the source process, of value for tsunami warning, were applied. The source moment tensor could be obtained robustly by W-phase inversion both within minutes (Chilean researchers had a good solution using regional data within 5 min) and within an hour using broadband seismic data. Short-period teleseismic P wave back-projections indicate northward rupture expansion from the hypocenter at a modest rupture expansion velocity of 1.5-2.0 km/s. Finite-fault inversions of teleseismic P and SH waves using that range of rupture velocities and a range of dips from 16A degrees, consistent with the local slab geometry and some moment tensor solutions, to 22A degrees, consistent with long-period moment tensor inversions, indicate a 180- to 240-km bilateral along-strike rupture zone with larger slip northwest to north of the epicenter (with peak slip of 7-10 m). Using a shallower fault model dip shifts slip seaward toward the trench, while a steeper dip moves it closer to the coastline. Slip separates into two patches as assumed rupture velocity increases. In all cases, localized similar to 5 m slip extends down-dip below the coast north of the epicenter. The seismic moment estimates for the range of faulting parameters considered vary from 3.7 x 10(21) Nm (dip 16A degrees) to 2.7 x 10(21) Nm (dip 22A degrees), the static stress drop estimates range from 2.6 to 3.5 MPa, and the radiated seismic energy, up to 1 Hz, is about 2.2-3.15 x 10(16) J.
机译:2015年9月16日,智利Illapel近海发生了一次(M(w)8.3)大板间推力地震,造成了4.7 m的海啸。该地区最后一次重大破裂是1943 M(S)7.9事件。地震方法可用于快速表征震源过程,具有海啸预警的价值。可以在几分钟之内(智利研究人员在5分钟之内使用区域数据获得很好的解决方案),在一小时之内使用宽带地震数据通过W相反演来可靠地获得源矩张量。短时远震P波反投影表明震源向北以1.5-2.0 km / s的适度破裂扩张速度扩张。远震P波和SH波的有限断层反演使用的破裂速度范围和倾角范围从16A度(与局部平板几何形状和某些矩张量解一致)到22A度(与长期矩张量反演相一致),表示一个180-240 km的双边沿走向断裂带,震中西北偏北滑动较大(峰值滑动为7-10 m)。使用较浅的断层模型,倾角向海底滑移,而较陡峭的倾角将海底滑移至海岸线附近。随着假定破裂速度的增加,滑移分为两个部分。在所有情况下,类似于5 m的滑移的局部延伸都在震中北侧的海岸下方向下倾斜。所考虑的断层参数范围的地震矩估计值范围从3.7 x 10(21)Nm(倾角16A度)到2.7 x 10(21)Nm(倾角22A度)不等,静态应力降估计值范围从2.6至3.5 MPa ,最高1 Hz的辐射地震能量约为2.2-3.15 x 10(16)J。

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