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Dynamics of the Pacific-North American Plate Boundary in the Western United States

机译:美国西部太平洋-北美板块边界的动力学

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The vertically averaged deviatoric stress tensor field within the western United States was determined with topographic data, geoid data, recent global positioning system observations, and strain rate magnitudes and styles from Quaternary faults. Gravitational potential energy differences control the large fault-normal compression on the California coast. Deformation in the Basin and Range is driven, in part, by gravitational potential energy differences, but extension directions there are modified by plate interaction stresses. The California shear zone has relatively low vertically averaged viscosity of about 10~(21) pascal-seconds, whereas the Basin and Range has a higher vertically averaged viscosity of 10~(22) pascal-seconds.
机译:根据地形数据,大地水准面数据,最新的全球定位系统观测结果以及第四纪断层的应变率大小和样式确定了美国西部的垂直平均偏应力张量场。重力势能差控制着加利福尼亚海岸的大型断层-法向压缩。盆地和山脉的变形部分是由重力势能差驱动的,但延伸方向却受到板块相互作用应力的影响。加利福尼亚剪切带的垂直平均粘度较低,约为10〜(21)帕斯卡秒,而盆地和山脉的垂直平均粘度较高,为10〜(22)帕斯卡秒。

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