首页> 外文期刊>Journal of earth system science >ModiBcation of pre-existing folds in a shear zone: A case study from Kumbhalgarha??Ranakpur area, South Delhi Fold Belt, Rajasthan, India
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ModiBcation of pre-existing folds in a shear zone: A case study from Kumbhalgarha??Ranakpur area, South Delhi Fold Belt, Rajasthan, India

机译:剪切区预先存在的折叠的调制:kumbhalgarha的案例研究,Ranakpur地区,南德里折叠腰带,拉贾斯坦邦,印度

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Pre-existing structures (e.g., folds, foliations, lineations) are usually rotated and modified within a shear zone, depending on their attitude with respect to the kinematic framework (i.e., orientation of instantaneous stretching axes (ISA), kinematical vorticity number of the flow ($W_{k}$)) of the shear zone. In addition, new folds may also form within a shear zone, and it is not always easy to distinguish between the pre- and syn-shearing structures in the field, especially if they form on the same rock type. The present contribution describes the reorientation and shape modification (tightening) of pre-existing and synshearing folds in metamorphosed calcareous rocks of the Kumbhalgarh Group (part of Delhi Supergroup) due to shearing along the Ranakpur Shear Zone (RSZ), in Kumbhalgarha??Sayraa??Ranakpur area of South Delhi Fold Belt (SDFB), also called South Delhi Terrane (SDT). From field-based study and measurements, it is shown that the shallow-plunging, upright second generation ($m{DF}_{2}$) folds of SDFB/SDT have been rotated to subvertical, tight folds within the RSZ. Fold shape analysis using layer thickness and limb dip of folds (i.e., Ramsaya??s classification) and by Fourier transform shape analyses of fold profile sections corroborates and roughly quantifies the tightening and shape modification of pre-existing folds within the RSZ. In contrast, syn-shearing folds have formed on the foliations in calc-silicate rocks which show strongly non-cylindrical geometry with apical defection in an oblique direction. From the available shear sense indicators like rotated porphyroclast tails and vergence of asymmetric folds, the shear sense of the RSZ is interpreted as oblique reverse (east-side-up) with subordinate sinistral (east-towards-north) shear component, which is similar to the shear sense interpreted by some earlier workers.
机译:预先存在的结构(例如,折叠,叶子,基底eations)通常在剪切区内旋转和修改,这取决于它们对运动框架的姿态(即,瞬时拉伸轴(ISA)的取向,运动涡度数剪切区域的流量($ w_ {k} $))。此外,新折叠也可以在剪切区内形成,并且在场中的预先剪切结构之间并不总是容易地,特别是如果它们在相同的岩石类型上形成。由于沿着Ranakpur剪切区(RSZ)的剪切,在Kumbhalgarha的剪切,本贡献描述了预先存在的钙质岩石(德里超群的一部分)中的预先存在和肾脏折叠的重新定位和形状修改(收紧)。 ?? Ranakpur地区的南德里折叠皮带(SDFB),也称为South Delhi Terrane(SDT)。从基于现场的研究和测量,表明SDFB / SDT的浅点直立的第二代($ rm {df} _ {2} $)折叠已旋转到RSZ内的复杂,紧密折叠。使用层厚度和折叠折叠的折叠形状分析(即Ramsaya'Ons分类)和折叠轮廓部分的傅立叶变换形状分析,并粗略地定量了RSZ内预先存在的折叠的紧固和形状修改。相反,在煅烧硅酸盐岩石中形成的同剖形折叠,其显示出强烈的非圆柱形几何形状,其具有倾斜方向的顶端偏差。从可用的剪切感测指示器,如旋转斑岩尾部和不对称折叠的易变形,RSZ的剪切感被解释为具有下属初始(东朝北)剪切组件的斜逆(东侧上方),这是类似的对一些早期工人解释的剪切感。

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