首页> 外文期刊>Proceedings of the Indian Academy of Sciences. Earth and Planetary Sciences >Folds in multilayered rocks of Proterozoic age, Rajasthan, India
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Folds in multilayered rocks of Proterozoic age, Rajasthan, India

机译:印度拉贾斯坦邦元古代的多层岩石中的褶皱

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摘要

First phase folds F_1 developed in polydeformed Ajabgarh Group rocks of Proterozoic age are studied using various geometrical methods of analysis for compatibility of homogeneous strain in both class 1-3 pairs by correlating t′_α/α plots with existing curves for competent layers and matching t_α/α plots with the flattening curves for the incompetent layers. F_1 folds were initiated by the process of buckling but underwent [(λ_2/λ_1) = 0.2 to 0.7] for competent layers and R-values of 1.1 to 5 for incompetent layers. The varying flattening is also revealed by the geometry of folds. The apparent buckle shortening of folds which ranges between 49 and 67 per cent with a majority of the folds having shortening values between 50% and 55% (exclusive of layer parallel strain) and inverse thickness method strain up to 50%, Besides flattening, the fold geometry was also modified by the pressure solution. This is borne by the presence of dark seams rich in phyllosilicates and disseminated carbonaceous material offsetting limbs of buckled quartz veins in slates.
机译:通过将t'_α/α图与有效层的现有曲线相关联并匹配t_α,使用各种几何方法分析了1-3级两对均质应变的相容性,研究了在元古代多变形Ajabgarh群岩石中形成的第一相褶皱F_1。 /α标出不称职层的平坦曲线。 F_1褶皱是通过屈曲过程而引发的,但对于能承受的层来说是[[λ_2/λ_1)= 0.2到0.7],而对于不适合的层来说是1.1到5的R值。褶皱的几何形状也显示出变化的展平度。褶皱的表观屈曲缩短率在49%到67%之间,其中大部分褶皱的缩短值在50%和55%之间(不包括层平行应变),反厚度法应变高达50%。褶皱的几何形状也通过压力解决方案进行了修改。这是由于存在富含层状硅酸盐的深色接缝和弥散的碳质物质而抵消的,这些缝隙抵消了板岩中弯曲的石英脉的四肢。

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