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构造高差分析原理及其在地学研究中的应用 被引量:1
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作者 陈宣华 陈正乐 +4 位作者 邵兆刚 张义平 李冰 丁伟翠 王叶 《地质学报》 EI CAS CSCD 北大核心 2022年第1期284-296,共13页
构造高差分析是构造解析及平衡剖面制作与恢复的基础。长期以来,构造高差并没有一个严格的定义,也缺乏原理性描述;构造高差分析也主要局限在构造地貌和地形高差的分析。本文在分析前人有关构造解析、地貌高差和构造高差研究的基础上,提... 构造高差分析是构造解析及平衡剖面制作与恢复的基础。长期以来,构造高差并没有一个严格的定义,也缺乏原理性描述;构造高差分析也主要局限在构造地貌和地形高差的分析。本文在分析前人有关构造解析、地貌高差和构造高差研究的基础上,提出构造高程概念,将构造高差定义为构造高程之差,拓展了构造高差的内涵;并将构造高程定义为地质点所在构造形成时的有效深度,通常用相对高程的负值来表示。提出构造高差分析的基本理念,将构造高差的本质理解为构造势能,赋予其时间和空间涵义。由此给出了构造高差的估算方法,以及不同构造环境下构造高程的厘定与构造高差的分析原则,探讨了构造高差的形成与地质作用过程之间的关系。本文提出的构造高差理论拓展了传统构造地质学关于构造高差的认识,为构造高差分析在地球科学研究中的拓展应用给出了理论基础。 展开更多
关键词 构造解析 构造高程 构造高差 构造变形 平衡剖面
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库鲁克塔格—星星峡是古生代末天山最高地区 被引量:15
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作者 郭召杰 刘树文 张志诚 《新疆地质》 CAS CSCD 1998年第4期381-387,共7页
在分析造山带研究进展的基础上 ,提出了构造高程 (或层次 )的比较分析在古造山带构造地貌识别中的重要性。根据构造高程的分析并结合塔里木盆地物探资料 ,提出库鲁克塔格—星星峡地区是古生代末境内古天山山系最高的区域。东天山基底岩... 在分析造山带研究进展的基础上 ,提出了构造高程 (或层次 )的比较分析在古造山带构造地貌识别中的重要性。根据构造高程的分析并结合塔里木盆地物探资料 ,提出库鲁克塔格—星星峡地区是古生代末境内古天山山系最高的区域。东天山基底岩系是古天山根带相的产物 。 展开更多
关键词 古天山 剥蚀作用 构造高程 斜向碰撞
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Fractal Measures of Drainage Network to Investigate Surface Deformation from Remote Sensing Data: A Paradigm from Hindukush (NE-Afghanistan) 被引量:3
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作者 Syed Amer MAHMOOD Richard GLOAGUEN 《Journal of Mountain Science》 SCIE CSCD 2011年第5期641-654,共14页
This approach represents the relative susceptibility of the topography of the earth to active deformation by means of geometrical distinctiveness of the river networks. This investigation employs the fractal analysis ... This approach represents the relative susceptibility of the topography of the earth to active deformation by means of geometrical distinctiveness of the river networks. This investigation employs the fractal analysis of drainage system extracted from ASTER Global Digital Elevation Model (GDEM-30m resolution). The objective is to mark active structures and to pinpoint the areas robustly influenced by neotectonics. This approach was examined in the Hindukush, NE-Afghanistan. This region is frequently affected by deadly earthquakes and the modern fault activities and deformation are driven by the collision between the northward-moving Indian subcontinent and Eurasia. This attempt is based on the fact that drainage system is strained to linearize due to neotectonic deformation. Hence, the low fractal dimensions of the Kabul, Panjsher, Laghman, Andarab, Alingar and Kocha Rivers are credited to active tectonics. A comprehensive textural examination is conducted to probe the linearization, heterogeneity and connectivity of the drainage patterns. The aspects for these natural textures are computed by using the fractal dimension (FD), lacunarity (LA) and succolarity (SA) approach. All these methods are naturally interrelated, i.e. objects with similar FD can be further differentiated with LA and/or SA analysis. The maps of FD, LA and SA values are generated by using a sliding window of 50 arc seconds by 50 arc seconds (50" × 50"). Afterwards, the maps are interpreted in terms of regional susceptibility to neotectonics. This method is useful to pinpoint numerous zones where the drainage system is highly controlled by Hindukush active structures. In the North-Northeast of the Kabul block, we recognized active tectonic blocks. The region comprising, Kabul, Panjsher, Andrab, Alingar and Badakhshan is more susceptible to damaging events. This investigation concludes that the fractal analysis of the river networks is a bonus tool to localize areas vulnerable to deadly incidents influencing the Earth’s topography and consequently intimidate human lives. 展开更多
关键词 FRACTAL Drainage network LACUNARITY Succolarity Surface deformation and Hindukush
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