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首页> 外文期刊>Geophysical Research Letters >The effects of topography on magma chamber deformation models: Application to Mt Etna and radar interferometry
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The effects of topography on magma chamber deformation models: Application to Mt Etna and radar interferometry

机译:地形对岩浆室变形模型的影响:在埃特纳火山和雷达干涉测量中的应用

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We have used a three-dimensional elastic finite element model to examine the effects of topography on the surface deformation predicted by models of magma chamber deflation. We used the topography of Mt. Etna to control the geometry of our model, and compared the finite element results to those predicted by an analytical solution for a pressurized sphere in an elastic half-space. Topography has a significant effect on the predicted surface deformation for both displacement: profiles and synthetic interferograms. Not only are the predicted displacement magnitudes significantly different, but also the map-view patterns of displacement. It is possible to match the predicted displacement magnitudes fairly well by adjusting the elevation of a reference surface; however, the horizontal pattern of deformation is still significantly different. Thus, inversions based on constant-elevation reference surfaces may not properly estimate the horizontal position of a magma chamber. We have investigated an approach where the elevation of the reference surface varies for each computation point, corresponding to topography. For vertical displacements and tilts this method provides a good fit to the finite element results, and thus may form the basis for an inversion scheme. For radial displacements, a constant reference elevation provides a better fit to the numerical results. [References: 13]
机译:我们已经使用三维弹性有限元模型来检查地形对岩浆室收缩模型预测的表面变形的影响。我们使用了富士山的地形。 Etna控制模型的几何形状,并将有限元结果与弹性半空间中加压球体的解析解所预测的结果进行比较。地形对于预测的位移,轮廓和合成干涉图都有明显影响。不仅预测的位移大小存在显着差异,而且位移的地图视图模式也不同。通过调整参考面的高度,可以很好地匹配预测的位移大小。但是,变形的水平模式仍然存在很大差异。因此,基于等高基准面的反演可能无法正确估计岩浆室的水平位置。我们研究了一种方法,其中参考表面的高程针对每个计算点而变化,与地形相对应。对于垂直位移和倾斜,此方法非常适合有限元结果,因此可以构成反演方案的基础。对于径向位移,恒定的参考高程可以更好地拟合数值结果。 [参考:13]

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