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首页> 外文期刊>Global and planetary change >3-D movement mapping of the alpine glacier in Qinghai-Tibetan Plateau by integrating D-InSAR, MAI and Offset-Tracking: Case study of the Dongkemadi Glacier
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3-D movement mapping of the alpine glacier in Qinghai-Tibetan Plateau by integrating D-InSAR, MAI and Offset-Tracking: Case study of the Dongkemadi Glacier

机译:D-InSAR,MAI和偏移量追踪相结合的青藏高原高山冰川3-D运动制图:以东科马底冰川为例

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摘要

Three-dimensional (3-D) movements of the Dongkemadi Glacier in the Qinghai-Tibetan Plateau over 2007-2010 are fully determined by using L-band Advanced Land Observing Satellite (ALOS) Phased Array type L-band Synthetic Aperture Radar (PALSAR) ascending and C-band Environmental Satellite (ENVISAT) Advanced Synthetic Aperture Radar (ASAR) descending acquisitions. In order to yield an optimal 3-D solution, a variance component estimation (VCE) algorithm is applied to weigh the D-InSAR and MAI measurements derived from PALSAR data and the Offset-Tracking measurements from ASAR data under the scheme of weighted least squares adjustment By exploiting the InSAR measurements themselves to determine the weights iteratively, the presented approach results in an accuracy of centimeter to decimeter per year for all the three velocity vectors. The horizontal component shows that the four main tributary streams in the Dongkemadi Glacier are all flowing from the central area of the glacier to its surroundings, along the steepest slope descent direction and with a rate up to about 5 m/yr. The glacier thickening or thinning is resolved from the vertical component by subtracting the down-slope movement A number of interesting accumulation and ablation areas are also detected, with vertical vari-ationsof 1-2 m/yr, as a result of the horizontal glacier movement or the existence of concave terrain. This can be used as a good indication of the ice dynamics and the location of the subglacial water in the alpine glacier.
机译:利用L波段先进地面观测卫星(ALOS)相控阵型L波段合成孔径雷达(PALSAR)全面确定了2007-2010年青藏高原东克马地冰川的三维(3-D)运动。升序和C波段环境卫星(ENVISAT)先进合成孔径雷达(ASAR)降序采集。为了产生最佳的3-D解决方案,在最小二乘加权方案下,使用方差分量估计(VCE)算法对从PALSAR数据得出的D-InSAR和MAI测量值以及从ASAR数据得出的偏移跟踪测量值进行加权调整通过利用InSAR测量本身来迭代确定权重,对于所有三个速度矢量,所提出的方法都可以达到每年厘米到分米的精度。水平分量表明,东克马迪冰川的四个主要支流全部从冰川的中心区域流向其周围,并沿最陡的斜坡下降方向,其流速高达每年5 m。通过减去下坡运动,从垂直分量中解析出冰川的增厚或变薄。水平冰川运动的结果还检测到许多有趣的积聚和消融区域,垂直变化为1-2 m / yr或存在凹面地形。这可以很好地指示冰的动力学以及高山冰川中冰下水的位置。

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  • 来源
    《Global and planetary change》 |2014年第7期|62-68|共7页
  • 作者单位

    School of Geosciences and Info-Physics, Central South University, Changsha 410083, Hunan, China;

    School of Geosciences and Info-Physics, Central South University, Changsha 410083, Hunan, China;

    School of Geosciences and Info-Physics, Central South University, Changsha 410083, Hunan, China;

    Department of Land Surveying and Geo-Informatics, The Hong Kong Polytechnic University, Hung Horn, Kowloon, Hong Kong, China;

    Department of Land Surveying and Geo-Informatics, The Hong Kong Polytechnic University, Hung Horn, Kowloon, Hong Kong, China;

    School of Geosciences and Info-Physics, Central South University, Changsha 410083, Hunan, China;

    School of Geosciences and Info-Physics, Central South University, Changsha 410083, Hunan, China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Three-dimensional movement; Alpine glacier; InSAR; Qinghai-Tibetan Plateau; Variance component estimation;

    机译:三维运动;高山冰川;InSAR;青藏高原方差分量估计;

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