DEFORMATION INTERACTION OF STRONG EARTHQUAKES OF 2010–2016 IN THE ZONE OF INFLUENCE OF THE HIKURANGA SUPERPLUME (NEW ZEALAND) ACCORDING TO GPS OBSERVATIONS

V. Kaftan, P. Dokukin, A. Manevich, V. Tatarinov, R. Shevchuk
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Abstract

Between 2010 and 2016, a series of 11 strong M>6 earthquakes occurred in New Zealand. In the area covering the epicentral zones of these seismic events, the spatiotemporal characteristics of movements and deformations of the Earth’s crust were obtained based on the processing of continuous satellite GPS observations at 64 points of the geodetic network. Using these data, we have studied the evolution of horizontal movements and deformations in order to reveal the possible relationship between the observed deformational and seismic processes. Analysis has been made on the total shear deformation, since the main tectonic structures of the region are faults with a shear mechanism of displacement of their sides. The presence of a giant mantle superplume in the area was the reason for the study of the behavior of horizontal dilatation deformation, and horizontal and vertical crustal motions. Based on the obtained digital deformation models, there were created kinematic visualizations, which are synoptic animations providing direct observations of the seismic deformation process and their heuristic analysis. The study revealed that a series of the strongest earthquakes may be interconnected by a long-term single deformation process, which is caused by the occurrence of an anomalous total shear deformation. The general maximum of shear deformation, dilatation deformation, and horizontal and vertical displacements are concentrated in the center of mantle superplume activity. Prior to strong seismic events, there occur zones of deficit (minimum) displacements of the Earth’s crust in the area of future epicenters, which is of research interest in terms of predicting their locations.
根据全球定位系统(GPS)的观测数据,2010-2016 年新西兰希库兰加超级岩浆柱影响区内强震的形变相互作用
2010 至 2016 年间,新西兰发生了 11 次 M>6 级强烈地震。在覆盖这些地震事件震中区的地区,根据对大地测量网络 64 个点的连续卫星全球定位系统观测数据的处理,获得了地壳运动和变形的时空特征。利用这些数据,我们研究了水平运动和变形的演变,以揭示观测到的变形过程与地震过程之间可能存在的关系。我们分析了总的剪切变形,因为该地区的主要构造是断层,其两侧的位移具有剪切机制。由于该地区存在一个巨大的地幔叠加层,因此需要对水平扩张变形行为以及地壳的水平和垂直运动进行研究。根据获得的数字形变模型,制作了运动学可视化图像,即提供地震形变过程直接观测及其启发式分析的同步动画。研究表明,一系列最强烈的地震可能由一个长期的单一变形过程相互连接,这是由发生异常总剪切变形引起的。剪切变形、扩张变形、水平位移和垂直位移的总体最大值集中在地幔超积层活动中心。在强震发生之前,未来震中地区会出现地壳位移不足(最小)区,这对预测震中位置具有重要的研究意义。
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