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首页> 外文期刊>Journal of Sensors >Monitoring the Thaw Slump-Derived Thermokarst in the Qinghai-Tibet Plateau Using Satellite SAR Interferometry
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Monitoring the Thaw Slump-Derived Thermokarst in the Qinghai-Tibet Plateau Using Satellite SAR Interferometry

机译:使用卫星SAR干涉测量法监测青藏高原的第九次坍落度衍生的Thermokst

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摘要

Thaw slumps are well-developed within a 10 km wide zone along the Qinghai-Tibet engineering corridor, especially along the Qinghai-Tibet highway and railway. Previous studies have focused on thaw slump instability such as its origin development, headwall retrogression rate, failure scale, and thermal regime, yet the intrinsic dynamic process of surface movement is relatively less known. In this study, we used InSAR based on the L-band ALOS PALSAR images acquired from January 2007 to October 2010 to investigate the distribution of thaw-induced slope failures containing retrogressive thaw slumps and active layer detachment failures along the Qinghai-Tibet highway (QTH). Our InSAR analysis reveals that the maximum annual average sedimentation rates are even up to -35 mm-yr~(_1) in the slope direction to the K3035 thaw slump, and the K3035W active layer detachment failure developed on the west side of K3035. The distribution, failure extent, and stability of the slope failures obtained by our InSAR analysis all agree well with the field investigations. Our study illustrates that InSAR is an effective tool for studying the distribution and processes of the thaw slump-derived thermokarst and provides useful references for evaluating permafrost degradation in response to climate warming and external disturbance on the Qinghai-Tibet plateau.
机译:沿着青藏工程走廊,尤其是沿青藏公路和铁路,沿着青藏公路和铁路沿岸的10公里宽阔的折叠剧本。以前的研究专注于解冻坍落度不稳定性,例如其起源开发,头部倒置率,失效量表和热状态,但表面运动的内在动态过程相对较小。在这项研究中,我们根据从2007年1月到2010年10月获得的L-Band Alos Palsar图像的insar探讨了沿着青藏公路的含有倒退的解冻坍落度和有源层分离失败的解冻引起的斜坡故障的分布(Qth )。我们的Insar分析表明,最高年度平均沉降率甚至在斜坡方向上的坡度至-35 mm-Yr〜(_1),以及K3035的K3035西侧开发的K3035W有源层脱离故障。通过我们的Insar分析获得的斜坡故障的分布,故障程度和稳定性都与现场调查相一致。我们的研究表明,Insar是研究冻干渗透率的热量的分布和过程的有效工具,并提供了对响应青藏高原的气候变暖和外部干扰来评估多年冻土降解的有用参考。

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  • 来源
    《Journal of Sensors》 |2019年第2期|共8页
  • 作者单位

    School of Civil and Transportation Engineering Guangdong University of Technology;

    School of Civil and Transportation Engineering Guangdong University of Technology;

    School of Civil and Transportation Engineering Guangdong University of Technology;

    School of Civil and Transportation Engineering Guangdong University of Technology;

    School of Civil and Transportation Engineering Guangdong University of Technology;

    School of Civil and Transportation Engineering Guangdong University of Technology;

    School of Civil and Transportation Engineering Guangdong University of Technology;

    School of Civil and Transportation Engineering Guangdong University of Technology;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 TP212;
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