Surface Rupture on a Secondary Fault Associated with the 8 August 2020 Mw 5.1 Sparta North Carolina Earthquake

C. Wicks, J. Chiu
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引用次数: 3

Abstract

On 8 August 2020, northwest North Carolina experienced an Mw 5.1 earthquake that caused damage to buildings and roads in the city of Sparta. A regional centroid moment tensor solution shows that the earthquake was the result of slip on a reverse fault with a minor strike-slip component. Interferometric Synthetic Aperture Radar (InSAR) data, from the Japan Aerospace Exploration Agency’s Advanced Land Observing Satellite #2 (ALOS2) satellite, reveal a deformation field that is more complex than expected from a single reverse fault earthquake. The data also reveal an apparent fault rupture at the Earth’s surface that caused damage to local roads. Modeling of the InSAR deformation field indicates the fault rupture is associated with a very shallow normal faulting event with an equivalent Mw of about 5.1 that overprinted the reverse fault deformation field and possibly occurred aseismically.
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与2020年8月8日北卡罗来纳州斯巴达5.1兆瓦地震有关的次级断层表面破裂
2020年8月8日,北卡罗来纳州西北部发生5.1级地震,造成斯巴达市的建筑物和道路受损。区域质心矩张量解表明,此次地震是由一条具有轻微走滑分量的逆断层的滑动引起的。干涉合成孔径雷达(InSAR)数据来自日本宇宙航空研究开发机构的先进陆地观测卫星#2 (ALOS2)卫星,揭示了一个比单一逆断层地震更复杂的变形场。数据还显示,地球表面有一个明显的断层破裂,导致当地道路受损。InSAR变形场模拟表明,断层破裂与一个非常浅的正断层事件有关,等效Mw约为5.1,叠加了反向断层变形场,可能发生了地震。
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