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首页> 外文期刊>New Zealand journal of geology & geophysics >High-resolution view of active tectonic deformation along the Hikurangi subduction margin and the Taupo Volcanic Zone, New Zealand
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High-resolution view of active tectonic deformation along the Hikurangi subduction margin and the Taupo Volcanic Zone, New Zealand

机译:沿希库朗伊俯冲带边缘和陶波火山带活动构造变形的高分辨率视图

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摘要

Understanding the mechanisms and dynamics of deformation at plate boundaries requires high-resolution images of strain and deformation sources. Vertical derivatives of horizontal stress (VDoHS) rates are the horizontal-component surface manifestation of all subsurface deformation sources, and have substantially higher spatial resolution than GPS velocities or strain rates. We calculate VDoHS rates from GPS data at the Hikurangi subduction margin. We evaluate our results in the context of interseismic coupling on the subduction interface and upper plate deformation processes. Instead of the expected rifting signal we find strong contraction within the Taupo Volcanic Zone, indicating non-tectonic effects from magmatic and/or hydrothermal processes. Differences between S-Hmax directions from historical seismicity (Townend et al. 2012) and our maximum contraction directions demonstrate that at the Hikurangi margin historical seismicity and active faulting are strongly controlled by long-term processes, such as rotation of the forearc, rather than short-term, elastic strain from interseismic subduction interface locking.
机译:了解板块边界处的变形机理和动力学需要高分辨率的应变和变形源图像。水平应力(VDoHS)速率的垂直导数是所有地下变形源的水平分量表面表现,并且比GPS速度或应变速率具有更高的空间分辨率。我们从Hikurangi俯冲裕度处的GPS数据计算VDoHS速率。我们在俯冲界面和上板变形过程的地震耦合环境下评估了我们的结果。我们没有在陶波火山区内发现强烈的收缩信号,而是从岩浆和/或热液过程中获得了非构造效应。 S-Hmax方向与历史地震活动度之间的差异(Townend等人,2012)与我们的最大收缩方向之间的差异表明,在Hikurangi边缘,历史地震活动度和活动断层受到长期过程(例如前臂的旋转)的强烈控制,而不是前臂的旋转间震俯冲界面锁定引起的短期弹性应变。

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