首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >Deformation kinematics in the western United States determined from Quaternary fault slip rates and recent geodetic data
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Deformation kinematics in the western United States determined from Quaternary fault slip rates and recent geodetic data

机译:根据第四纪断层滑动速率和最新大地测量数据确定的美国西部的变形运动学

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摘要

We estimate the horizontal velocity gradient tensor field from Quaternary fault slip rates, and recent Global Positioning System (GPS) and very long baseline interferometry (VLBI) velocity solutions in the western United States transform plate boundary zone. The total velocity obtained from the Quaternary fault slip rate data across the entire plate boundary is within 1 nm/yr of the NUVEL-1A predicted Pacific (PA)-North American (NA) plate motion velocity, but directions are 5 deg-6 deg anticlockwise of directions given by NUVEL-1A. The total velocity obtained from inversion of recent geodetic data is 2 deg-3 deg anticlockwise from the NUVEL-1A NA-PA velocity, but the difference between the two is not significant at the 95% confidence level. The discrepancy between the total PA-NA motion obtained from the geological data and NUVEL-1A indicates that a marginally significant amount of NE-SW shortening (possibly as much as 5 mm/yr) is missing overall in the geologic data. Shortening may occur in the long-term geodetic solution. The seismic moment released in the last 148 years is approx 59% of the total moment release rate expected from long-term strain rate field (including both seismic and aseismic deformation) derived from the inversion of geological data with NUVEL-1A far-field PA-NA motion constraints. The accumulated strain in the areas containing the southern San Andreas fault-San Jacinto fault, the San Francisco Bay area, and the area containing the Ventura basin in the Western Transverse Ranges in the last 148 years is the equivalent to that which could be released by an M_w > 7.0 earthquake in each 50 * 100 * 15 (km~3) crustal volume if strain is to be released seismically in these areas.
机译:我们从第四纪断层滑动率,最近的全球定位系统(GPS)和美国西部转换板边界带中的超长基线干涉法(VLBI)速度解决方案估算水平速度梯度张量场。从整个板块边界的第四纪断层滑动率数据获得的总速度在NUVEL-1A预测的太平洋(PA)-北美(NA)板块运动速度的1 nm / yr以内,但方向为5度至6度NUVEL-1A给出的方向逆时针旋转。从最近的大地测量数据反演获得的总速度是NUVEL-1A NA-PA速度逆时针2 deg-3 deg,但是在95%置信度下两者之间的差异并不明显。从地质数据获得的总PA-NA运动与NUVEL-1A之间的差异表明,地质数据中总体上缺少少量的NE-SW缩短(可能高达5 mm / yr)。长期大地测量中可能会缩短。过去148年中释放的地震矩约为长期应变率场(包括地震和地震变形)预期的总矩释放率的59%,长期应变率场是使用NUVEL-1A远场PA反演地质数据得出的-NA运动约束。在过去的148年中,包含圣安德烈亚斯南部断层-圣哈辛托断裂,旧金山湾地区和西横向山脉含维特纳盆地在内的区域中的累积应变等于可以释放的应变。如果要在这些区域以地震方式释放应变,则在每50 * 100 * 15(km〜3)地壳中发生M_w> 7.0地震。

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