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Constraining the relative strengths of high-grade metamorphic rocks using foliation refraction angles: an example from the Northern New England Appalachians

机译:使用叶面折射角约束高级变质岩的相对强度:以北新英格兰阿巴拉契亚山脉为例

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摘要

Foliation refraction angles are used to estimate effective viscosity contrasts between metapelitic and metapsammitic layers in amphibolite-facies metaturbidites in the Presidential Range of the White Mountains, in eastern New Hampshire. An early-formed foliation, developed during km-scale nappe folding, consistently displays larger bedding-foliation angles in metapelitic units than metapsammitic units, suggesting that the metapelitic units had higher effective viscosities during this deformation. We collected bedding-foliation angle measurements from a combination of outcrops and locally-derived boulders to test the hypothesis that foliation refraction angles could be used to estimate the effective viscosity ratio between different rock types at high metamorphic grades. Our results show that the metapelitic layers were between 2 and 3 times more viscous than the metaspsammitic layers, which we attribute to the presence of large (up to 15 cm long), abundant (up to 30 vol.%) effectively rigid andalusite porphyroblasts in the metapelitic layers. We present a methodology for using foliation refraction angles to determine the effective viscosity ratios of different rock types, address the practical limitations we encountered, and suggest this method is an easy way of estimating the strength contrast between different rock types. Finally, we hypothesize that metamorphism resulting in porphyroblast growth can strengthen large crustal volumes during orogenesis.
机译:在新罕布什尔州东部的怀特山脉总统山范围内,叶面折射角用于估算角闪石相变浊质中的变质岩层和偏层岩质层之间的有效粘度对比。在千米尺度的尿布折叠过程中形成的早期形成的叶状体,始终在变质岩单元中显示出比层间岩质单元更大的层理-成叶角,这表明该变质岩单元在这种变形过程中具有较高的有效粘度。我们从露头和局部衍生的巨石组合中收集了层理-射出角测量值,以检验以下假设:在高变质等级下,可以使用射出折射角估算不同岩石类型之间的有效粘度比。我们的结果表明,变质岩层的黏度比间s岩层的黏度高2至3倍,这归因于存在大型(最多15厘米长),丰富(最多30%(体积))的硬质红柱石成岩细胞。后生层。我们提供了一种使用叶面折射角确定不同岩石类型的有效粘度比的方法,解决了我们遇到的实际限制,并建议此方法是一种估算不同岩石类型之间强度对比的简便方法。最后,我们假设导致成卟啉细胞生长的变质作用可以在造山过程中增强大地壳体积。

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