首页> 外文期刊>Journal of structural geology >Refraction of micro-fractures due to shear-induced mechanical stratigraphy in a low-grade meta-sedimentary rock
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Refraction of micro-fractures due to shear-induced mechanical stratigraphy in a low-grade meta-sedimentary rock

机译:低品位准沉积岩中由剪切引起的机械地层引起的微裂缝折射

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( )Refracted markers, viz., cleavages and faults, across rock layers are well-documented structural features that develop as the structures propagate through layers of varying competency. We study the Palaeoproterozoic low grade meta-greywacke of the Rautgara Formation, Garhwal Lesser Himalaya, Uttarakhand, India. The focus is on the micro-fractures that cut the flaky-mineral rich cleavage (c-) and the porphyroclast-rich microlithon (m-) domains of the disjunctive foliation planes. Although the rock appears unsheared mesoscopically, in the microscale S-C fabric, shadow zones and tails of few quartz porphyroclasts exhibit a top-to-SW ductile shear. A mean kinematic vorticity number (W-m) of -0.73 has already been determined from this rock. Our renewed study of thin-sections reveal fracture refraction patterns that match with the findings of various known analogue- and analytical models, viz., (i) higher competency contrast between c- and m-domains favours extension fractures over shear fractures, which develop more in the m-domains. Shear fractures dominate in the c-domains, (ii) the angle (0) between fracture and the 'layer normal' is higher (>70 degrees) inside the less-competent layers, (iii) a dominant simple shear in the brittle regime produces the P-planes at an angle to the primary shear Y-plane. In one such case, 0 measured from thin-section for 15 successive sub-parallel c-and m-domains show that the most viscous m-domain is similar to 24 times more viscous than the lowest viscous c-domain. Additionally, out of the eight clayers, the most viscous c-domain is 3.4 times more viscous than the least viscous c-domain. Similarly, out of the seven m-domains, the most viscous m-domain has a viscosity four times more than the least viscous m-domain. Knowing viscosity ratio of different layers in rocks will enable better analogue and analytical tectonic models. Our numerical models of general shear on linear elastic materials similar to the studied rock type, however, show that the rheological contrast does not influence the curvature of the shear-induced fractures at the boundaries between the quartz-rich sandstone and the mica-rich domains. Close-spaced impuritiesotches may curve fracture domains across the layer boundaries producing a 'false' impression of fracture refraction. Moreover, the first principal strain axis (epsilon(1)) does not reorient across the layers except close to the notches. Nevertheless, the current study shows micro-scale development of mechanical stratigraphy under the influence of the ongoing tectonic deformation and quantifies the domain-wise competence contrasts with the help of refracted fractures.
机译:()横跨岩石层的折射标志物,即劈裂和断层,是有据可查的结构特征,随着结构穿过能力不同的层传播而发展。我们研究了印度北阿坎德邦Garhwal小喜马拉雅山Rautgara组的古元古代低品位变质灰砂岩。重点是切开分离叶面的片状富含矿物质的裂隙(c-)和富含卟啉的微石化(m-)域的微裂缝。尽管岩石在介观作用下未出现剪切,但在微米级S-C织物中,少量石英卟啉的阴影区和尾部显示出从顶部到SW的韧性剪切。已经从该岩石确定了平均运动涡度数(W-m)为-0.73。我们对薄片的最新研究揭示了与各种已知模拟和分析模型的发现相匹配的裂缝折射模式,即:(i)c和m域之间的较高能力对比有利于扩展性裂缝,而不是剪切性裂缝,这种剪切性发展在m域中更多。剪切裂缝在c域占主导地位,(ii)较不称职的层内部裂缝与``层法线''之间的夹角(0)较高(> 70度),(iii)在脆性状态下占主导地位的简单剪切产生与主剪切Y平面成一定角度的P平面。在一种这样的情况下,从薄片上连续15个次平行的c-和m-结构域测得的0表明,最粘的m-域的黏度比最低的c-域高24倍。另外,在八种粘土中,最粘的c域的粘度是最不粘的c域的3.4倍。类似地,在七个m域中,最粘的m域的粘度是最不粘的m域的四倍。知道岩石中不同层的粘度比将能够建立更好的模拟和分析构造模型。但是,我们对线性弹性材料进行的普通剪切数值模型与所研究的岩石类型相似,但表明流变学对比不会影响在富含石英的砂岩和富含云母的区域边界处的剪切诱导裂缝的曲率。 。间隔较近的杂质/凹口可能会在整个层边界上弯曲裂缝域,从而产生“假”的裂缝折射印象。此外,第一主应变轴(epsilon(1))不会在靠近凹口的所有层上重新定向。然而,当前的研究表明,在正在进行的构造变形的影响下,机械地层学的微观发展,并在折射裂缝的帮助下量化了各地区的能力对比。

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