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Kinematic evidence for the effect of changing plate boundary conditions on the tectonics of the northern US Rockies

机译:运动板块边界条件变化对美国北部洛基山脉构造的影响的运动学证据

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摘要

We derive surface velocities from GPS sites in the interior Northwest U.S. relative to a fixed North American reference frame to investigate surface tectonic kinematics from the Snake River Plain (SRP) to the Canadian border. The Centennial Tectonic Belt (CTB) on the northern margin of the SRP exhibits west directed extensional velocity gradients and strain distributions similar to the main Basin and Range Province (BRP) suggesting that the CTB is part of the BRP. North of the CTB, however, the vergence of velocities relative to North America switches from westward to eastward along with a concomitant rotation of the principal stress axes based on available seismic focal mechanisms, revealing paired extension in the northern Rockies and shortening across the Rocky Mountain Front. This change in orientation of surface velocities suggests that the change in the boundary conditions on the western margin of North America influences the direction of gravitational collapse of Laramide thickened crust. Throughout the study region, fault slip rate estimates calculated from the new geodetic velocity field are consistently larger than previously reported fault slip rates determined from limited geomorphic and paleoseismic studies.
机译:我们从美国西北部内部GPS站点相对于固定北美参考系得出地表速度,以调查从蛇河平原(SRP)到加拿大边界的地表运动学。 SRP北缘的百年构造带(CTB)表现出向西的伸展速度梯度和应变分布,类似于主要的盆地和山脉省(BRP),表明CTB是BRP的一部分。然而,在CTB的北部,相对于北美的速度趋向于从西向东切换,同时基于可用的地震震源机制伴随着主应力轴的旋转,揭示了洛矶山脉北部成对扩展,落基山脉上空缩短面前。表面速度方向的这种变化表明,北美西部边缘边界条件的变化影响了拉拉米德增稠地壳的重力塌陷方向。在整个研究区域中,根据新的大地速度场计算得出的断层滑动率估计值始终大于以前根据有限的地貌和古地震研究确定的断层滑动率。

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