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Feedbacks between deformation and melt distribution in the crust-mantle transition zone of the Oman ophiolite

机译:阿曼蛇绿岩壳幔过渡带变形与熔体分布之间的反馈

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摘要

This study presents microstructural evidence for deformation-controlled melt organization and for changes in olivine deformation associated with the presence of melt in an 80. m vertical section of the crust-mantle transition zone in the Oman ophiolite. This zone represents an 'end member' case for analyzing feedbacks between deformation and melt distribution in the upper mantle, since it experienced strong shear strains in presence of large melt fractions. It is characterized by a subhorizontal compositional layering at the mm to meter scale, from weakly impregnated dunites to olivine-rich gabbros, which parallels a pervasive foliation containing a strong stretching lineation. The parallelism between the compositional layering and the foliation, the diffuse limits of the layers, the alignment of elongated plagioclase-rich aggregates devoid of internal deformation structures with the elongation of olivine crystals in the dunitic layers, and the sharp compositional changes across some, but not all layer limits suggest deformation plays an essential role on the development of the layering. The variation on a mm-scale of the olivine crystal preferred orientation (CPO) symmetry as a function of the modal content: from axial-[100] symmetry in layers with <70% modal olivine to axial-[010] in more gabbroic levels (<40% olivine), which is repeated over the entire section, implies deformation in presence of variable melt fractions. Axial-[100] olivine CPO in olivine-rich layers is consistent with deformation by dislocation creep under high temperature, low pressure, dry conditions. Axial-[010] olivine CPO patterns imply additional sliding along preferentially wetted (010) grain boundaries, increase in the activity of [001] glide, or transpression localized in the melt-rich layers. Since the change in CPO symmetry is not accompanied by dispersion, instantaneous melt fractions must have remained <30-40% in all layers. The continuous variation in olivine CPO symmetry with decreasing olivine content implies therefore that the former depends on the cumulated strain in presence of melt rather than on the instantaneous melt fraction.
机译:这项研究为阿曼蛇绿岩地壳-幔过渡区的垂直剖面80. m的熔体的存在提供了变形控制熔体组织和橄榄石形变变化的微观结构证据。该区域代表了一个“端部构件”案例,用于分析上地幔中变形与熔体分布之间的反馈,因为它在存在较大熔体分数的情况下会经受强剪切应变。它的特征是从微弱浸渍的褶皱到富含橄榄石的辉长岩在毫米到米级的水平以下成分分层,这与包含强拉伸线的普遍叶脉平行。组成层与叶层之间的平行度,层的扩散极限,细长的斜长石富集聚集体的排列(缺乏内部变形结构)以及双单元层中橄榄石晶体的伸长,以及某些区域的急剧成分变化,但是并非所有的层限制都表明变形对分层的发展起着至关重要的作用。橄榄石晶体择优取向(CPO)对称性的毫米尺度上的变化作为模态含量的函数:从具有<70%模态橄榄石的层中的轴向[100]对称到更多辉长岩水平的轴向[010] (<40%橄榄石)在整个截面上重复出现,表示在熔体分数可变的情况下变形。富含橄榄石层中的轴向[100]橄榄石CPO与位错蠕变在高温,低压,干燥条件下发生的变形一致。轴向[010]橄榄石CPO模式意味着沿着优先润湿的(010)晶界的额外滑动,[001]滑移活动的增加或富熔层中局部的压抑作用。由于CPO对称性的变化不会伴随分散,因此所有层中的瞬时熔体馏分必须保持<30-40%。橄榄石CPO对称性随着橄榄石含量的减少而连续变化,这意味着前者取决于存在熔体时的累积应变,而不取决于瞬时熔体分数。

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