首页> 外文期刊>Tectonophysics: International Journal of Geotectonics and the Geology and Physics of the Interior of the Earth >Kinematic significance of fold- and fault-related fracture systems in the Zagros mountains, southern Iran
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Kinematic significance of fold- and fault-related fracture systems in the Zagros mountains, southern Iran

机译:伊朗南部扎格罗斯山脉中与褶皱和断层有关的断裂系统的运动学意义

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摘要

Initiation and formation of folds and the Kazerun high-angle fault zone, in the Zagros fold-and-thrust belt, were related to the continuing SWNE oriented contraction that probably initiated in the Late Cretaceous, and intensified, starting in Miocene, when the Arabian and Eurasian plates collided. The contraction that led to folding and thrusting of the Phanerozoic sequence in the belt has led to the strike-slip reactivation of basement faults that formed during the Precambrian. Two major systems of fractures have developed, under the same regional state of contraction, during the folding and strike-slip faulting processes. Folding led to the formation of a system of fold-related fractures that comprises four sets of fractures, which include an axial and a cross-axial set that trend parallel and perpendicular to the confining fold axial trace, respectively, and two oblique sets that trend at moderate angles to the axial trace. Slip along high-angle, strike-slip faults formed a system of fractures in the damage zone of the faults (e.g., Kazerun), and deformed folds that existed in the shear zone by rotating their axial plane. This fault-related fracture system is made of five sets of fractures, which include the two sets of Riedel shear fractures (R and R'), P- and Y-shear fractures, and an extensional set. Remote sensing analysis of both fracture systems, in a GIS environment, reveals a related kinematic history for folding outside of the Kazerun shear zone and faulting and deformation (fracturing and rotation of folds) within the Kazerun fault zone. Rotation of the folds and formation of the five sets of the fault-related fractures in the Kazerun shear zone are consistent with a dextral motion along the fault. The mean trends of the shortening directions, independently calculated for the fold- and fault-related fracture systems, are remarkably close (N53 +/- 4 degrees E and N50 +/- 50 degrees E, respectively), and are perpendicular to the general NW-SE trend of the Zagros fold-and-thrust belt. Although segments of the Kazerun fault are variably oriented within a narrow range, the angular relationships between sets of fault-related fractures and these segments remain constant. (C) 2007 Elsevier B.V. All rights reserved.
机译:Zagros褶皱冲断带中褶皱的形成和形成以及Kazerun高角度断层带与持续的SWNE定向收缩有关,这种收缩可能始于白垩纪晚期,并从中新世开始加剧,当时是阿拉伯时代。欧亚板块相撞。收缩导致该带中生代叠代的折叠和逆冲,导致前寒武纪形成的基底断层走滑重新活化。在折叠和走滑断层过程中,在相同的区域收缩状态下,已经形成了两个主要的裂缝系统。折叠导致形成与褶皱有关的裂缝系统,该系统包括四组裂缝,其中包括分别沿平行和垂直于约束褶皱轴向轨迹走向的轴向和横向裂缝组,以及与之相关的两个倾斜裂缝组与轴向轨迹成适当角度。沿大角度走滑断层滑动,在断层的破坏区域(例如Kazerun)形成了一个断裂系统,并通过旋转其轴向平面使剪切区域中存在的褶皱变形。这个与断裂有关的裂缝系统由五组裂缝组成,其中包括两组里德尔剪切裂缝(R和R'),P和Y剪切裂缝以及一个延伸组。在GIS环境中,对这两个裂缝系统的遥感分析揭示了相关的运动学历史,这些历史发生在Kazerun剪切带外折叠以及Kazerun断裂带内的断裂和变形(褶皱的破裂和旋转)。褶皱的旋转和卡泽伦剪切带中五组与断层有关的裂缝的形成与沿断层的右旋运动一致。分别针对褶皱和断层相关裂缝系统计算的缩短方向的平均趋势非常接近(分别为N53 +/- 4度E和N50 +/- 50度E),并且垂直于总体Zagros褶皱冲断带的NW-SE趋势。尽管Kazerun断层的段在狭窄的范围内可变地定向,但断层相关裂缝的组与这些段之间的角度关系保持恒定。 (C)2007 Elsevier B.V.保留所有权利。

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