利用遥感数据监测巴达赫尚-兴都库什-帕米尔高原中部地区景观对构造强迫的响应

S. A. Mahmood, F. Shahazd, R. Gloaguen
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引用次数: 0

摘要

本研究通过构造强迫下的景观遥感分析及其对了解中部巴达赫尚-兴都库什-帕米尔高原Shiveh河和Shiveh湖区域隆升条件的启示。需要对基于过程的规律进行定量的远程和实地评估,以便准确地描述与构造和气候有关的景观隆起和剥蚀。通过研究构造活跃的巴达赫尚中部地区的河流剖面,对稳态条件下的河流动力基岩切割模型进行了评价和标定。先前在沿塔吉克斯坦-阿富汗边界的Pyanj地区和沿Yarkun-Chitral地区的工作提供了对岩石隆起速率的空间和时间控制。利用SRTM数字高程模型(dem)估算了与构造和气候条件沿西北向东南变化相关的景观形态差异。数据是在不同阶段获取的;首先,从dem中生成河流纵剖面、流向距离、高程和流域面积。其次,利用河道坡度随流域面积的幂律回归,推导出河道的凹凸度和陡度指数。斜坡面积数据可以通过多种方式生成,其中几种方法已经得到了严格的评估。已编制了该地区的抬升率图,以便进一步分析排水网络。利用各种资源的地震资料,绘制了本区的地震构造图。这个地区的地震活动性有明显的规律。矩张量解表现为逆冲主导的走滑分量。河流剖面资料可用于圈定与构造边界有关的尺度断裂。河流剖面分析支持研究区河道与当前隆升和气候条件处于平衡状态的假设。河道陡度与隆升速率有关。抬升速率图显示了该地区不同的差异抬升速率,这是由于印度-欧亚碰撞引起的复杂断裂作用造成的。第四纪断裂控制着局部的排水,河流和河道的偏转是近期断裂活动的进一步证据。一些第四纪断裂在Landsat数据上的映射也证实了该地区变形样式的变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Monitoring landscape response to tectonic forcings in Central Badakhshan-Hindukush-Pamir region using remote sensing data
This study deals with the remote sensing analysis of landscape response to tectonic forcings and its implications to understand the regional uplift conditions along the Shiveh River and Shiveh Lake in Central Badakhshan-Hindukush-Pamir region. Quantitative remote and field assessments of process-based laws are needed to accurately describe landscape uplift and denudation with respect to tectonics and climate.We evaluate and calibrate stream power bedrock-incision model under steady state conditions by studying stream profiles in a tectonically active Central Badakhshan region. Previous work in Pyanj region along Tajikistan-Afghanistan boarder and along Yarkun-Chitral region provides spatial and temporal control on rock-uplift rates. SRTM Digital elevation models (DEMs) are used to estimate differences in landscape morphology associated with along-strike northwest to southeast changes in tectonic and climatic conditions. Data is acquired in different stages; first, River longitudinal profiles, stream wise distance, elevation, and drainage area are generated from DEMs. Second, power-law regressions of channel slope as a function of drainage area are used to derive channel concavity and steepness indices. Slope-area data can be generated in a variety of ways, and several methods have been critically evaluated. An uplift rate map of the area has been prepared for further analysis of the drainage network. Siesmotectonic map of the area is also prepared by using seismological data compiled from various resources. The seismicity in this region shows a distinct pattern. Moment tensor solutions show strike-slip components with thrust dominance. The stream profile data can be used to delineate breaks in scaling that are related with the tectonic boundaries. Analysis of stream profiles supports the hypothesis that the study-area channels are in equilibrium with current uplift and climatic conditions. Channel steepness correlates with uplift rate. The uplift rate map shows variable differential uplift rates in this region and it is due to the ongoing complex faulting processes due to India-Eurasia collision. The quaternary faults in the region control local drainage and the deflection of rivers and stream channels is a further evidence of the recent fault activity. Mapping of some quaternary faults on Landsat data also confirms the change in style of deformation in this region.
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