首页> 外文期刊>Geological Society of America Bulletin >Fault kinematics and surface deformation across a releasing bend during the 2010 M_w 7.1 Darfield, New Zealand, earthquake revealed by differential LiDAR and cadastral surveying
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Fault kinematics and surface deformation across a releasing bend during the 2010 M_w 7.1 Darfield, New Zealand, earthquake revealed by differential LiDAR and cadastral surveying

机译:LiDAR和地籍测量的差异揭示了2010年新西兰达菲M_w 7.1地震期间释放弯道的断裂运动学和地表变形

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Dextral slip at the western end of the east-west-striking Greendale fault during the 2010 M_w 7.1 Darfield earthquake transferred onto a northwest-trending segment, across an apparent transtensional zone, here named the Waterford releasing bend. We used detailed surface mapping, differential analysis of pre- and postearthquake light detection and ranging (LiDAR), and property boundary (cadastral) resurveying to produce high-resolution (centimeter-scale) estimates of coseismic ground-surface displacements across the Waterford releasing bend. Our results indicate that the change in orientation on the Greendale fault incorporates elements of a large-scale releasing bend (from the viewpoint of westward motion on the south side of the fault) as well as a smaller-scale restraining stepover (from the viewpoint of southeastward motion on the north side of the fault). These factors result in the Waterford releasing bend exhibiting a decrease in displacement to near zero at the change in strike, and the presence within the overall releasing bend of a nested, localized restraining stepover with contractional bulging. The exceptional detail of surface deformation and kinematics obtained from this contemporary surface-rupture event illustrates the value of multimethod investigations. Our data provide insights into strike-slip fault bend kinematics, and into the potentially subtle but important structures that may be present at bends on historic and prehistoric rupture traces.
机译:在2010年M_w 7.1达菲地震中,东西向撞击的格林代尔断层西端的右旋滑移转移到西北趋势段,穿过明显的张性带,这里称为沃特福德释放弯道。我们使用了详细的表面映射,地震前后的光探测和测距(LiDAR)的差异分析,以及属性边界(地籍)重新测量,以生成高分辨率(厘米级)的整个沃特福德释放弯道同震地表位移估算。我们的结果表明,格林代尔断层的方位变化包含了一个大范围的释放弯道(从断层南侧的西向运动的角度)以及一个较小规模的约束跨步(从断层的角度)。断层北侧的东南运动)。这些因素导致沃特福德释放弯管在行程变化时位移减小到接近零,并且在整个释放弯管中存在嵌套的局部约束跨步和收缩凸起。从这种当代的表面破裂事件获得的表面变形和运动学方面的特殊细节说明了多方法研究的价值。我们的数据提供了对走滑断层弯曲运动学的了解,以及对历史和史前破裂痕迹弯道上可能存在的细微但重要的结构的见解。

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