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首页> 外文期刊>Geophysical Research Letters >Melt redistribution during the bending of a porous, partially melted layer - art. no. 1564
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Melt redistribution during the bending of a porous, partially melted layer - art. no. 1564

机译:多孔,部分熔融的层弯曲时的熔体重新分布-艺术。没有。 1564

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摘要

1] A numerical, poro-viscoelastic finite element flow model has been developed to simulate the redistribution of melt during the folding of a horizontal layer. Important mechanical properties governing the overall rheology of the buckling layer, including porosity, matrix viscosity, melt pressure and changes in deviatoric stress are tracked simultaneously with deformation. Melt migrates down gradients in melt pressure to the outer hinge zone of the folds, away from sites of compression to regions of local tension. For a matrix with dynamic power law rheology, deformation results in the formation of low viscosity, strain weakening zones that coincide with zones of enhanced deviatoric stress that are potential sites for plastic deformation. During fast deformation of layers with large width to height ratios, the more rapidly bending material splits into domains of higher viscosity separated by lower viscosity zones. Porosity (melt fraction) distribution patterns do not appear to be controlled by the matrix rheology. The numerical results and predictions of melt distribution and geometry during deformation correspond well with data from some physical (analogue) laboratory experiments and field observations. The quantitative nature of our results should help refine more qualitative models for the rates and mechanisms of melt extraction and transport in folded crustal migmatite terranes. [References: 25
机译:1]已经开发出数值的多孔粘弹性有限元流模型来模拟水平层折叠过程中熔体的重新分布。在变形的同时,还要跟踪控制屈曲层整体流变性的重要机械性能,包括孔隙率,基体粘度,熔体压力和偏应力的变化。熔体沿熔体压力的下降梯度向下迁移到褶皱的外铰链区,从压缩点移至局部张力区域。对于具有动态幂律流变学的基质,变形会导致形成低粘度,应变弱化区域,该区域与偏斜应力增强区域一致,该区域是塑性变形的潜在位置。在宽高比大的层快速变形的过程中,弯曲速度更快的材料分裂成较高粘度的区域,并被较低粘度的区域隔开。孔隙率(熔体分数)分布模式似乎不受基质流变学的控制。变形过程中熔体分布和几何形状的数值结果和预测与一些物理(模拟)实验室实验和现场观察的数据非常吻合。我们的研究结果的定量性质应有助于完善定性模型,以研究折叠的地壳辉石岩地层中熔体的提取速率和机理。 [参考:25

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