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Nonlinear viscoplasticity in style='' class='text smallcaps'>ASPECT: benchmarking and applications to subduction

机译:style =“” class =“ text smallcaps”> ASPECT 中的非线性粘塑性:基准测试和在俯冲中的应用

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摘要

ASPECT (Advanced Solver for Problems in Earth's ConvecTion) is a massively parallel finite element code originally designed for modeling thermal convection in the mantle with a Newtonian rheology. The code is characterized by modern numerical methods, high-performance parallelism and extensibility. This last characteristic is illustrated in this work: we have extended the use of ASPECT from global thermal convection modeling to upper-mantle-scale applications of subduction.Subduction modeling generally requires the tracking of multiple materials with different properties and with nonlinear viscous and viscoplastic rheologies. To this end, we implemented a frictional plasticity criterion that is combined with a viscous diffusion and dislocation creep rheology. Because ASPECT uses compositional fields to represent different materials, all material parameters are made dependent on a user-specified number of fields.The goal of this paper is primarily to describe and verify our implementations of complex, multi-material rheology by reproducing the results of four well-known two-dimensional benchmarks: the indentor benchmark, the brick experiment, the sandbox experiment and the slab detachment benchmark. Furthermore, we aim to provide hands-on examples for prospective users by demonstrating the use of multi-material viscoplasticity with three-dimensional, thermomechanical models of oceanic subduction, putting ASPECT on the map as a community code for high-resolution, nonlinear rheology subduction modeling.
机译:ASPECT(解决地球对流问题的高级求解器)是一种大规模并行有限元代码,最初是为使用牛顿流变学对地幔中的热对流建模而设计的。该代码具有现代数值方法,高性能并行性和可扩展性的特点。在这项工作中说明了最后一个特征:我们将ASPECT的使用从全局热对流模型扩展到了俯冲的上幔规模应用。俯冲模型通常需要跟踪具有不同特性,非线性粘性和粘塑性流变的多种材料。为此,我们实施了摩擦可塑性准则,该准则与粘性扩散和位错蠕变流变学相结合。由于ASPECT使用成分场来表示不同的材料,因此所有材料参数都取决于用户指定的字段数量。本文的目的主要是通过复制结果来描述和验证我们复杂的多材料流变学的实现方式四个著名的二维基准:压头基准,砖块实验,沙箱实验和平板脱离基准。此外,我们的目的是通过演示多材料粘塑性与三维海洋俯冲热力学模型的使用,为潜在用户提供动手实例,并将ASPECT作为高分辨率,非线性流变俯冲的社区代码放到地图上造型。

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