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首页> 外文期刊>International journal of digital Earth >Permafrost environment monitoring on the Qinghai-Tibet Plateau using time series ASAR images
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Permafrost environment monitoring on the Qinghai-Tibet Plateau using time series ASAR images

机译:利用时间序列ASAR图像监测青藏高原多年冻土环境

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摘要

The permafrost in Qinghai-Tibet Plateau (QTP) has long been the focus of many researchers. In this study, we first use the method that integrates synthetic aperture radar (SAR) intensity and phase information to monitor permafrost environment in the Beiluhe Region, using time series advanced SAR images. The backscattering coefficients (sigma(0)) and deformation were extracted for the main features, and the influences of meteorological conditions to them were also quantified. The results show that both the change in s0 and surface deformation are closely related to the active layer, and the deformation is also affected by the permafrost table. First, over meadow and sparse vegetation regions, sigma(0) rose about 6.9 and 4 dB from the freezing to thawing period, respectively, which can be mainly attributed to the thaw of the active layer and increased precipitation. Second, seasonal deformation, derived from the freeze-thaw cycle of the active layer, was characteristic of frost heave and thaw settlement and exhibited a negative correlation with air temperature. Its magnitude was larger than 1 cm in a seasonal cycle. Last, significant secular settlement was observed, with rates ranging from -16 to 2 mm/a, and it was primarily due to the thaw of the permafrost table caused by climate warming.
机译:长期以来,青藏高原的多年冻土一直是许多研究者关注的焦点。在这项研究中,我们首先使用结合了合成孔径雷达(SAR)强度和相位信息的方法,使用时间序列高级SAR图像监测北麓河地区的多年冻土环境。提取了主要特征的后向散射系数(sigma(0))和形变,并量化了气象条件对其的影响。结果表明,s0的变化和表面变形都与活性层密切相关,变形也受永久冻土表的影响。首先,在草甸和稀疏植被区,从冻结期到解冻期的sigma(0)分别增加了6.9和4 dB,这主要归因于活动层的融化和降水增加。其次,由活动层的冻融循环产生的季节性变形是冻胀和融化沉降的特征,并且与气温呈负相关。在一个季节性周期中,其大小大于1厘米。最后,观察到明显的长期沉降,速率为-16至2 mm / a,这主要是由于气候变暖引起的永久冻土表的融化。

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