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Thermal Effects in the Evolution of Initially Layered Mantle Material

机译:初始分层地幔物质演化过程中的热效应

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摘要

A simplified model for anisotropic mantle convection based on a novel class of rheologies, originally developed for folding instabilities in multilayered rock (Mühlhaus et al., 2002), is extended through the introduction of a thermal anisotropy dependent on the local layering. To examine the effect of the thermal anisotropy on the evolution of mantle material, a parallel implementation of this model was undertaken using the Escript modelling toolkit and the Finley finite-element computational kernel (Davies et al., 2004). For the cases studied, there appears too little if any effect. For comparative purposes, the effects of anisotropic shear viscosity and the introduced thermal anisotropy are also presented. These results contribute to the characterization of viscous anisotropic mantle convection subject to variation in thermal conductivities and shear viscosities.
机译:通过引入一种基于局部分层的热各向异性,扩展了一种基于新型流变学的各向异性地幔对流的简化模型,该模型最初是为多层岩石中的折叠不稳定性而开发的(Mühlhaus等,2002)。为了检验热各向异性对地幔物质演化的影响,使用Escript建模工具包和Finley有限元计算核对模型进行了并行实现(Davies等,2004)。对于所研究的案例,几乎没有效果。为了进行比较,还介绍了各向异性剪切粘度和引入的热各向异性的影响。这些结果有助于表征受热导率和剪切粘度变化影响的粘性各向异性地幔对流。

著录项

  • 来源
    《Pure and Applied Geophysics》 |2006年第12期|2485-2495|共11页
  • 作者单位

    Earth Systems Science and Computational Centre (ESSCC) The University of Queensland;

    Earth Systems Science and Computational Centre (ESSCC) The University of QueenslandCSIRO Division of Exploration and Mining;

    Earth Systems Science and Computational Centre (ESSCC) The University of Queensland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Anisotropy; folding; alignment; mantle;

    机译:各向异性;折叠;对准;衬套;

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