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Surface displacements, deformations and gravity changes due to underground heat source

机译:地下热源引起的地表位移,变形和重力变化

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Thermo-elastic strains and stresses play a considerable role in the stress state of the lithosphere and its dynamics, especially at pronounced positive geothermal anomalies. Topography has a significant effect on ground deformation. Two methods for including the topographic effects in the thermo-viscoelastic model are described. First we use an approximate methodology which assumes that the main effect of topography is due to the distance from the source to the free surface and permits to have an analytical solution very attractive for solving the inverse problem. A numerical solution (for 2D plain strain case) is also computed using finite element method (FEM). The numerical method allows to include the local shape of the topography in the modeling. In the numerical model the buried magmatic body is represented by a finite volume thermal source. The temperature distribution is computed by the higher-degree FEM. For analytical as well as numerical model solution only the forces of thermal origin are considered. The results show that for the volcanic areas with prominent topography, its effect on the perturbation of the thermo-viscoelastic solution (deformation and total gravity anomaly) can be quite significant. In consequence, neglecting the topography could give erroneous results in the estimated source parameters.
机译:热弹性应变和应力在岩石圈的应力状态及其动力学中起着相当重要的作用,尤其是在明显的正地热异常中。地形对地面变形有重大影响。描述了两种在热粘弹性模型中包括地形效应的方法。首先,我们使用一种近似的方法,该方法假设地形的主要影响是由于从源到自由表面的距离,并且允许具有非常有吸引力的解析方法来解决反问题。还使用有限元方法(FEM)计算了数值解(对于2D平面应变情况)。数值方法允许在建模中包括地形的局部形状。在数值模型中,地下岩浆体由有限体积的热源表示。温度分布是通过较高阶的FEM计算的。对于解析模型和数值模型解决方案,仅考虑热源力。结果表明,对于具有显着地形的火山地区,其对热粘弹性溶液的扰动(变形和总重力异常)的影响可能非常显着。结果,忽略地形可能会在估算的源参数中给出错误的结果。

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