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2-D Density and Directional Analysis of Fault Systems in the Zagros Region (Iran) on a Regional Scale

机译:区域规模Zagros地区故障系统的二维密度和定向分析

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In this paper, 2-D spatial variation of the frequency and length density and frequency-length relation of large-scale faults in the Zagros region (Iran), as a typical fold-and-thrust belt, were examined. Moreover, the directional analysis of these faults as well as the scale dependence of the orientations was studied. For this purpose, a number of about 8000 faults with L = 1.0 km were extracted from the geological maps covering the region, and then, the data sets were analyzed. The overall pattern of the frequency/length distribution of the total faults of the region acceptably fits with a power-law relation with exponent 1.40, with an obvious change in the gradient in L = 12.0 km. In addition, maps showing the spatial variation of fault densities over the region indicate that the maximum values of the frequency and length density of the faults are attributed to the northeastern part of the region and parallel to the suture zone, respectively, and the fault density increases towards the central parts of the belt. Moreover, the directional analysis of the fault trends gives a dominant preferred orientation trend of 300 degrees-330 degrees and the assessment of the scale dependence of the fault directions demonstrates that larger faults show higher degrees of preferred orientations. As a result, it is concluded that the evolutionary path of the faulting process in this region can be explained by increasing the number of faults rather than the growth in the fault lengths and also it seems that the regional-scale faults in this region are generated by a nearly steady-state tectonic stress regime.
机译:本文研究了Zagros区(伊朗)中的频率和长度密度和大规模故障的频率和长度关系的2-D空间变化,作为典型的折叠带子。此外,研究了这些故障的定向分析以及取向的尺度依赖性。为此目的,从覆盖该区域的地质图中提取了大约8000千克的大约8000千克,然后分析了数据集。该地区总故障的频率/长度分布的总体图案可接受地与指数1.40的权力律关系合适,在L = 12.0公里的梯度中具有明显的变化。另外,显示该区域上故障密度的空间变化的地图表明故障的频率和长度密度的最大值归因于该区域的东北部并分别平行于缝合区,以及故障密度朝向带的中心部分增加。此外,故障趋势的定向分析提供了300度-330度的主要优选方向趋势,并且对故障方向的比例依赖性的评估表明,更大的故障显示出更高程度的优选方向。结果,得出结论是,可以通过增加故障的数量而不是故障长度的增长来解释该区域中的断层过程的进化路径,并且似乎将产生该区域的区域尺度故障通过几乎稳态的构造压力制度。

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