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首页> 外文期刊>Geotectonics >Strain Geometry, Microstructure and Metamorphism in the Dextral Transpressional Mubarak Shear Belt, Central Eastern Desert, Egypt
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Strain Geometry, Microstructure and Metamorphism in the Dextral Transpressional Mubarak Shear Belt, Central Eastern Desert, Egypt

机译:埃及中部东部沙漠右旋压迫性穆巴拉克剪切带中的应变几何,微观结构和变质作用

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摘要

Mubarak shear belt provides an opportunity to investigate quantitative finite strain (Rs), proportions of pure shear and simple shear components, sense of shear indicators, subhorizontal to steeply plunging mineral lineations, in a dextral transpressional zone. The structural style of the Mubarak shear belt is consistent with dextral transpression within the Central Eastern Desert where dextral and reverse shear have developed simultaneously with the regional foliation. The high strain zone of the Mubarak shear belt is characterized by steeply dipping foliation with sub-horizontal stretching lineation (simple shear) surrounded by thrust imbrications with slightly plunging stretching lineations. Strain estimates from the Mubarak shear belt are used to determine how pure and simple shear components of deformation are partitioned. The axial ratios in XZ sections range from 1.16 to 2.33 with the maximum stretch, S-x , ranges from 1.06 to 1.48. The minimum stretch, S-Z , ranges from 0.65 to 0.92 indicating a moderate variation in vertical shortening. Volcaniclastic metasediments and metagabbros were subjected to prograde low-grade regional metamorphism in the range of greenschist to lower amphibolite facies (450-650A degrees C at 2-4 kbar). Medium pressure (6-8 kbar at 530A degrees C) was estimated from the high strain zone within the dextral strike-slip shear zones. Retrograde metamorphism occurred at a temperature range of 250-280A degrees C. There is a trend towards decreasing the ratio of 100Mg/(Mg + Fe-tot + Mn) away from the high strain zone of the Mubarak shear belt. Integrated strain and temperature estimates indicate that the simple shear (non-coaxial) components of deformation played a significant role in formation and exhumation of the Mubarak shear belt during the accumulation of finite strain and consequently during progressive transpression and thrusting.
机译:穆巴拉克剪切带提供了一个机会,可以在右旋压榨带中研究定量有限应变(Rs),纯剪切分量和简单剪切分量的比例,剪切指示符,水平到陡峭的矿物线。穆巴拉克剪切带的构造样式与东部中部沙漠地区的右旋逆转一致,那里的右旋剪切和反向剪切与区域性叶脉同时发展。穆巴拉克剪切带的高应变带的特征是,陡倾浸入叶面具有亚水平的伸展线(简单剪切),周围是逆冲冲断带,伸展线略有下降。来自穆巴拉克剪切带的应变估计值用于确定如何将纯净和简单的变形剪切分量进行分区。 XZ截面中的轴向比率范围为1.16至2.33,最大拉伸S-x范围为1.06至1.48。最小拉伸S-Z在0.65至0.92的范围内,表明垂直缩短的程度适中。火山碎屑沉积物和变质岩经历了从绿片岩到较低的闪石相(在2-4 kbar时为450-650A摄氏度)范围内的低级区域变质作用。从右旋走滑剪切带内的高应变带估计中压(在530A摄氏度下为6-8 kbar)。逆行变质发生在250-280A的温度范围内。远离穆巴拉克剪切带的高应变区,有一个趋势是降低100Mg /(Mg + Fe-tot + Mn)的比例。综合的应变和温度估计值表明,在有限应变的累积过程中,进而在渐进的压移和逆冲过程中,简单的剪切(非同轴)变形分量在穆巴拉克剪切带的形成和掘出过程中起着重要作用。

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