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From Satellite Gradiometry Data to Subcrustal Stress Due to Mantle Convection

机译:从卫星梯度数据到地幔对流引起的地壳下应力

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Subcrustal stress induced by mantle convection can be determined by the Earth's gravitational potential. In this study, the spherical harmonic expansion of the simplified Navier-Stokes equation is developed further so satellite gradiometry data (SGD) can be used to determine the subcrustal stress. To do so, we present two methods for producing the stress components or an equivalent function thereof, the so-called S function, from which the stress components can be computed numerically. First, some integral estimators are presented to integrate the SGD and deliver the stress components and/or the S function. Second, integral equations are constructed for inversion of the SGD to the aforementioned quantities. The kernel functions of the integrals of both approaches are plotted and interpreted. The behaviour of the integral kernels is dependent on the signal and noise spectra in the first approach whilst it does not depend on extra information in the second method. It is shown that recovering the stress from the vertical- vertical gradients, using the integral estimators presented, is suitable, but when using the integral equations the vertical-vertical gradients are recommended for recovering the S function and the vertical-horizontal gradients for the stress components. This study is theoretical and numerical results using synthetic or real data are not given.
机译:由地幔对流引起的地壳下应力可以由地球的重力来确定。在这项研究中,进一步开发了简化的Navier-Stokes方程的球谐展开,因此卫星梯度数据(SGD)可用于确定亚地壳应力。为此,我们提出了两种产生应力分量或其等效函数的方法,即所谓的S函数,可以从中计算出应力分量。首先,提出了一些积分估计器以集成SGD并传递应力分量和/或S函数。其次,构造积分方程以将SGD反演为前述量。绘制并解释了两种方法的积分的核函数。在第一种方法中,积分内核的行为取决于信号和噪声频谱,而在第二种方法中,积分核的行为不取决于额外的信息。结果表明,使用给出的积分估计器从垂直-垂直梯度恢复应力是合适的,但是当使用积分方程时,建议使用垂直-垂直梯度恢复应力的S函数和垂直-水平梯度组件。该研究是理论性的,没有给出使用合成或真实数据的数值结果。

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