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A Note on folding mechanisms in the Cape Fold Belt, South Africa

机译:关于南非海角褶皱带的褶皱机制的注释

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摘要

The relationship between folding and faulting in the Cape Fold Belt has been raised as an enigma. The mineral deformation mechanisms accommodating folding are integral to the relation between faults and folds. Here I discuss field and microstructural observations of folded rocks from the Laingsburg region in the Western Cape, and the underlying mineral deformation mechanisms accommodating strain in these rocks. In competent units, deformation was dominantly accomplished by flexural slip faulting and jointing; in relatively incompetent layers macroscale flow was accommodated by dissolution-precipitation creep and distributed cataclasis. Combined with previous studies suggesting deformation occurred at lowermost greenschist facies temperatures, these observations indicate that folding in the Cape Fold Belt occurred at temperatures and pressures within the normally frictional regime. Folding and thrust fault development therefore generally occurred concurrently, and partitioning between localised and distributed deformation was governed by factors such as fluid pressure conditions, strain rate, and relative viscosity.
机译:海角褶皱带中的褶皱与断层之间的关系已引起人们的困惑。适应褶皱的矿物变形机制是断层与褶皱之间关系的组成部分。在这里,我讨论了西开普省Laingsburg地区折叠岩石的现场和微观结构观察,以及适应这些岩石应变的潜在矿物变形机制。在主管部门中,变形主要是通过弯曲滑动断层和节理来完成的。在相对不称职的层中,溶蚀-沉淀蠕变和分布的催化作用适应了宏观尺度的流动。结合先前的研究表明变形发生在最低的格林西斯相温度下,这些观察结果表明海角褶皱带中的褶皱发生在正常摩擦范围内的温度和压力下。因此,褶皱和逆冲断层的发育通常同时发生,局部变形和分布变形之间的分配受流体压力条件,应变率和相对粘度等因素控制。

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