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Statistical modeling of a fold system Southeast of ZAGROS (Iran)

机译:ZAGROS东南部折叠系统的统计建模(伊朗)

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Remote sensing is a significant tool to process the geological structures located in the zones with low vegetation and good exposures. In this paper we use statistical analysis of remote sensing data to model the process of folding in the SE of ZAGROS. The ZAGROS simply folded belt comprises a gently folded cover sequence which has been detached from the underlying basement along the Hormoz evaporates and is locally disrupted by recent faults. We used mosaic of 14 landsat ETM+ scenes that covers this region. We digitized 515 hinge lines of synclines and anticlines and measured their lengths. We show that the fold length distribution is fractal. The fractal analysis has 2 implications. First it allows the quantification of the complexity of the geological surface deformation. This complexity arises from growth, interaction and connection of folds to form networks. Secondly, it permits to model the development of folds. We propose that the fault network is an Iterated Function System (IFS). Such a model allows us to understand the structural evolution of a compressional range in 4 dimensions, the fourth dimension being time.
机译:遥感是一个重要的工具,用于处理位于植被和良好曝光区域的区域中的地质结构。在本文中,我们使用遥感数据的统计分析来模拟ZAGROS SE中的折叠过程。 ZAGROS简单地折叠皮带包括沿着Hormoz蒸发从下面的地下室脱离的轻微折叠的盖子序列,并且通过最近的故障局部破坏。我们使用了覆盖该地区的14个Landsat ETM +场景的马赛克。我们数字化了Synclines和Billines的515条铰链线,并测量了它们的长度。我们表明折叠长度分布是分形的。分形分析有2个含义。首先,它允许定量地质表面变形的复杂性。这种复杂性来自折叠的生长,交互和连接来形成网络。其次,它允许建模折叠的发展。我们建议故障网络是迭代功能系统(IFS)。这种模型允许我们了解4维度的压缩范围的结构演变,第四维度是时间。

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