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Characterization of Active Layer Thickening Rate over the Northern Qinghai-Tibetan Plateau Permafrost Region Using ALOS Interferometric Synthetic Aperture Radar Data, 2007–2009

机译:利用ALOS干涉合成孔径雷达数据表征青藏高原北部多年冻土区活动层的增厚速率,2007–2009年

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The Qinghai-Tibetan plateau (QTP), also known as the Third Pole and the World Water Tower, is the largest and highest plateau with distinct and competing surface and subsurface processes. It is covered by a large layer of discontinuous and sporadic alpine permafrost which has degraded 10% during the past few decades. The average active layer thickness (ALT) increase rate is approximately 7.5 cm·yr ?1 from 1995 to 2007, based on soil temperature measurements from 10 borehole sites along Qinghai-Tibetan Highway, and approximately 6.3 cm·yr ?1 , 2006–2010, using soil temperature profiles for 27 monitoring sites along Qinghai-Tibetan railway. In this study, we estimated the ALT and its AL thickening rate in the northern QTP near the railway using ALOS PALSAR L-band small baseline subset interferometric synthetic aperture radar (SBAS-InSAR) data observed land subsidence and the corresponding ALT modeling. The InSAR estimated ALT and AL thickening rate were validated with ground-based observations from the borehole site WD4 within our study region, indicating excellent agreement. We concluded that we have generated high spatial resolution (30 m) and spatially-varying ALT and AL thickening rates, 2007–2009, over approximately an area of 150 km 2 of permafrost-covered region in the northern QTP.
机译:青藏高原(QTP),也称为第三极和世界水塔,是最大和最高的高原,具有独特且相互竞争的地表和地下过程。它被不连续和零星的高山多年冻土所覆盖,在过去的几十年中,该多年冻土已经退化了10%。根据青藏公路沿线10个钻孔现场的土壤温度测量结果,从1995年至2007年,平均活动层厚度(ALT)增长率约为7.5 cm·yr?1,2006-2010年,利用青藏铁路沿线27个监测点的土壤温度剖面。在这项研究中,我们使用ALOS PALSAR L波段小基线子集干涉合成孔径雷达(SBAS-InSAR)观测到的地面沉降数据和相应的ALT模型估算了铁路附近北部QTP的ALT及其AL增厚率。 InSAR估算的ALT和AL增厚率已通过我们研究区域内WD4井场WD4的地面观测资料进行了验证,表明了极好的一致性。我们得出的结论是,在QTP北部约150 km 2的多年冻土覆盖区域中,我们已产生了高空间分辨率(30 m)以及ALT和AL的空间变化速率。

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