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Assessing intraplate earthquake hazards from satellite geopotential field observations

机译:通过卫星地势场观测评估板内地震危险

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Satellite magnetic and gravity field observations provide important constraints on the poorly understood lithospheric properties of intraplate earthquakes because they map lateral long-wavelength contrasts in magnetization and density, respectively, related to petrological, structural, and thermal variations that help control the distribution of lithospheric stress. These anomalies are each a product of the vertically integrated physical property times the layer thickness. Thus, they constrain and enhance the geological utility of near-surface geopotential surveys, as well as seismic, GPS, and other geophysical observations that map the geological and dynamic properties of the lithosphere. To illustrate this synergy, we consider the influence of the US Transcontinental Magnetic Anomaly (TMA) on crustal stress and earthquake activity along the 38th parallel. In another example, we compare crustal earthquake stress constraints from gravity and seismic observations of the US mid-continent and North Andes microplate where starkly contrasting plate tectonic forces operate
机译:卫星磁场和重力场观测对板内地震的岩石圈特性缺乏了解提供了重要的约束条件,因为它们分别绘制了与岩石学,结构和热变化有关的磁化强度和密度的横向长波差异,有助于控制岩石圈应力的分布。 。这些异常都是垂直整合的物理属性乘以层厚度的乘积。因此,它们限制并增强了近地表地势测量以及地震,GPS和其他绘制岩石圈地质和动态特性的地球物理观测的地质实用性。为了说明这种协同作用,我们考虑了美国跨大陆磁异常(TMA)对沿38 th 平行的地壳应力和地震活动的影响。在另一个示例中,我们比较了来自美国中部大陆和北安第斯山脉微板块的重力和地震观测的地壳地震应力约束,在该板块中形成强烈对比的板块构造力

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