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首页> 外文期刊>Pure and Applied Geophysics >Mantle Convection Modeling with Viscoelastic/Brittle Lithosphere: Numerical Methodology and Plate Tectonic Modeling
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Mantle Convection Modeling with Viscoelastic/Brittle Lithosphere: Numerical Methodology and Plate Tectonic Modeling

机译:粘弹性/脆性岩石圈对流对流建模:数值方法和板块构造建模

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摘要

The earth's tectonic plates are strong, viscoelastic shells which make up the outermost part of a thermally convecting, predominantly viscous layer. Brittle failure of the lithosphere occurs when stresses are high. In order to build a realistic simulation of the planet's evolution, the complete viscoelastic/brittle convection system needs to be considered. A particle-in-cell finite element method is demonstrated which can simulate very large deformation viscoelasticity with a strain-dependent yield stress. This is applied to a plate-deformation problem. Numerical accuracy is demonstrated relative to analytic benchmarks, and the characteristics of the method are discussed.
机译:地球的构造板块是坚固的粘弹性壳,构成热对流,主要为粘性层的最外层。应力高时,岩石圈会发生脆性破坏。为了建立对行星演化的逼真的模拟,需要考虑完整的粘弹性/脆性对流系统。演示了一种单元格有限元方法,该方法可以模拟非常大的变形粘弹性,并具有取决于应变的屈服应力。这适用于板变形问题。相对于解析基准,证明了数值精度,并讨论了该方法的特性。

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