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Permafrost Thawing and Freezing Process Observed by TerraSAR-X Interferometry in the Northern Qinghai-Tibet Plateau

机译:青藏高原北部的Terrasar-X干涉测定观察到的Permafrost解冻和冷冻过程

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Seasonal subsidence and uplift is a key indicator of permafrost degradation due to ongoing climate warming. In this study, the new small baseline subset (NSBAS) technique based on a piecewise deformation model is used to retrieve the amplitude of seasonal deformation in Beiluhe area. This model includes the seasonally varying components (subsidence/uplift), as well as linear deformation rate. 9 scenes of TerraSAR-X data acquired between 2018/12/15 and 2019/10/08 were processed using this NSBAS algorithm. It is found that the seasonal deformation ranges from -60 to 20mm, and the linear deformation rate ranges from -24 to 6mm/yr in the study area. The period of the freeze-thaw cycles of different landscapes are different in Beiluhe area. The floodplain area and the barren area begin to thaw from the end of April to the beginning of May, the meadow area and alpine desert area begin to thaw in the middle of May, and the seasonal thaw subsidence of the study area reaches the maximum at the end of September. The results shows the feasibility of TerraSAR-X data for thawing and freezing process observation in permafrost regions.
机译:由于持续的气候变暖,季节性沉降和隆起是永久冻土退化的关键指标。在本研究中,基于分段变形模型的新的小基线子集(NSBAS)技术用于检索Beiluhe地区的季节变形幅度。该模型包括季节性变化的组件(沉降/隆起),以及线性变形率。 9使用该NSBAS算法处理2018/12/15和2019/10/08之间获取的Terrasar-X数据场景。发现季节性变形从-60到20mm,线性变形率在研究区域中的线性变形速率范围为-24至6mm / yr。不同景观的冻融周期的时期在Beiluhe地区不同。洪泛区和贫瘠的地区从4月底开始解冻到5月初,草地地区和阿尔卑斯山沙漠地区开始于五月中旬开始解冻,研究区的季节解冻沉降达到最大值9月底。结果表明,在多年冻土区中解冻和冻结过程观察的Terrasar-X数据的可行性。

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