地壳应力场特征描述的最新进展和应力数据的未来应用:北美的视角

Jens-Erik Lundstern
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引用次数: 0

摘要

应力场控制着地壳变形的模式,包括哪些断层最有可能引发地震或传输流体。自 20 世纪 50 年代以来,最大水平应力(S Hmax)方向图的绘制取得了显著进展,最近还绘制了一些地区的断层风格图(相对主应力大小)。本视角文件总结了应力方向和(相对)大小特征描述方面的进展,包括新的地震和钻孔方法,以及在确定应力变化原因方面的进展。尽管取得了这些进展,但若能增加更多的时空细节,地球科学家就能应对当今自然灾害、能源开发和地球动力学方面的许多关键挑战。特别是,在认识到应力场的一致性变化的同时,描述多种尺度的应力异质性至关重要。论文的第二部分探讨了更详细的应力数据集如何证明对解决地球科学中的一些重大问题至关重要,包括破译地壳动力学和地表过程之间鲜为人知的反馈、改进地震和火山爆发预报,以及确定板块边界的起源和共有特性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Recent advances in characterizing the crustal stress field and future applications of stress data: Perspectives from North America
The stress field controls patterns of crustal deformation, including which faults are likeliest to cause earthquakes or transmit fluids. Since the 1950s, maps of maximum horizontal stress ( S Hmax ) orientations have advanced dramatically, and the style of faulting (relative principal stress magnitudes) has recently been mapped in some regions as well. This perspectives paper summarizes developments in characterizing stress orientations and (relative) magnitudes, including new seismic and borehole methods, as well as progress in identifying the causes of stress variations. Despite these advances, adding far more spatiotemporal detail would allow geoscientists to address many of today's key challenges regarding natural hazards, energy development, and geodynamics. In particular, it is critically important to characterize stress heterogeneity at multiple scales while also recognizing the coherent variability of the stress field. The second part of the paper considers how more detailed stress datasets could prove essential to addressing some of the grand questions in geoscience, including deciphering the poorly understood feedbacks between crustal dynamics and surface processes, improving earthquake and eruption forecasts, and determining the origins and shared properties of plate boundaries.
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