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Diffuse Pacific-North American plate boundary: 1000 km of dextral shear inferred from modeling geodetic data

机译:北美-太平洋板块边界漫射:根据模拟大地测量数据得出的1000 km右旋切变

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Geodetic measurements tell us that the eastern part of the Basin and Range Province expands in an east-west direction relative to stable North America, whereas the western part of the province moves to the northwest. We develop three-dimensional finite element representations of the western United States lithosphere in an effort to understand the global positioning system (GPS) signal. The models are constrained by known bounding-block velocities and topography, and Basin and Range Province deformation is represented by simple plastic (thermal creep) rheology. We show that active Basin and Range spreading by gravity collapse is expected to have a strong southward component that does not match the GPS signal. We can reconcile the gravitational component of displacement with observed velocity vectors if the Pacific plate applies northwest-directed shear stress to the Basin and Range via the Sierra Nevada block. This effect reaches at least 1000 km east of the San Andreas fault in our models.
机译:大地测量表明,相对于稳定的北美,盆地和山脉省的东部向东西方向扩展,而该省的西部向西北移动。为了了解全球定位系统(GPS)信号,我们开发了美国西部岩石圈的三维有限元表示。这些模型受已知边界块速度和地形的约束,而盆地和Range Province变形则由简单的塑性(热蠕变)流变学表示。我们显示,通过重力塌陷活动的盆地和山脉扩展有望具有强大的向南分量,与GPS信号不匹配。如果太平洋板块通过内华达山脉地块将西北方向的剪应力施加到盆地和山脉上,我们可以用观测到的速度矢量来协调位移的重力分量。在我们的模型中,这种影响至少达到了圣安德烈亚斯断层以东1000公里。

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