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Slip in the 2010-2011 Canterbury earthquakes, New Zealand

机译:新西兰2010-2011年坎特伯雷地震中的滑坡

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The 3rd September 2010 Mw 7.1 Darfield and 21st February 2011 Mw 6.3 Christchurch (New Zealand) earthquakes occurred on previously unknown faults.We use InSAR ground displacements,SAR amplitude offsets,field mapping,aerial photographs,satellite optical imagery,a LiDAR DEM and teleseismic body-wave modeling to constrain the pattern of faulting in these earthquakes.The InSAR measurements reveal slip on multiple strike-slip segments and secondary reverse faults associated with the Darfield main shock.Fault orientations are consistent with those expected from the GPS-derived strain field.The InSAR line-of-sight displacement field indicates the main fault rupture is about 45 km long,and is confined largely to the upper 10 km of the crust.Slip on the individual fault segments of up to 8 m at 4 km depth indicate stress drops of 6 10 MPa.In each event,rupture initiated on a reverse fault segment,before continuing onto a strike-slip segment.The non-double couple seismological moment tensors for each event are matched well by the sum of double couple equivalent moment tensors for fault slip determined by InSAR.The slip distributions derived from InSAR observations of both the Darfield and Christchurch events show a 15-km-long gap in fault slip south-west of Christchurch,which may present a continuing seismic hazard if a further unknown fault structure of significant size should exist there.
机译:2010年9月3日,达菲7.1级地震和2011年2月21日,新西兰克赖斯特彻奇6.3级地震发生在先前未知的断层上。我们使用InSAR地面位移,SAR振幅偏移,场图,航空照片,卫星光学图像,LiDAR DEM和远震体波模型来约束这些地震的断层模式.InSAR测量揭示了多个走滑段上的滑动以及与Darfield主震有关的次级反向断层。断层方向与GPS应变场预期的方向一致InSAR视线位移场表明主要断层破裂约45 km长,并主要局限在地壳的上10 km。在4 km深度处长达8 m的单个断层上滑动表明应力下降6 10 MPa。在每种情况下,断裂都在反向断裂段上开始,然后继续走向走滑段。非双耦合地震矩张量用于每个事件都由InSAR确定的断层滑动的双偶当量张量之和很好地匹配。从Darfield和Christchurch事件的InSAR观测值得出的滑动分布表明,该断层的西南部有15公里长的断层间隙。克赖斯特彻奇(Christchurch),如果在那里还存在另一个未知的,大的断层结构,则可能会带来持续的地震危险。

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