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2000-2014 年期间,从塔里木盆地上游边缘到喀喇昆仑,冰川物质平衡梯度逐渐减小。

A decreasing glacier mass balance gradient from the edge of the Upper Tarim Basin to the Karakoram during 2000-2014.

机构信息

Institute of Space and Earth Information Science, The Chinese University of Hong Kong, Hong Kong S.A.R., China.

Geography and Resource Management, The Chinese University of Hong Kong, Hong Kong S.A.R., China.

出版信息

Sci Rep. 2017 Jul 27;7(1):6712. doi: 10.1038/s41598-017-07133-8.

Abstract

In contrast to the glacier mass losses observed at other locations around the world, some glaciers in the High Mountains of Asia appear to have gained mass in recent decades. However, changes in digital elevation models indicate that glaciers in Karakoram and Pamir have gained mass, while recent laser altimetry data indicate mass gain centred on West Kunlun. Here, we obtain results that are essentially consistent with those from altimetry, but with two-dimensional observations and higher resolution. We produced elevation models using radar interferometry applied to bistatic data gathered between 2011 and 2014 and compared them to a model produced from bistatic data collected in 2000. The glaciers in West Kunlun, Eastern Pamir and the northern part of Karakoram experienced a clear mass gain of 0.043 ± 0.078~0.363 ± 0.065 m w.e. yr. The Karakoram showed a near-stable mass balance in its western part (-0.020 ± 0.064 m w.e. yr), while the Eastern Karakoram showed mass loss (-0.101 ± 0.058 m w.e. yr). Significant positive glacier mass balances are noted along the edge of the Upper Tarim Basin and indicate a decreasing gradient from northeast to southwest.

摘要

与世界各地其他地方观察到的冰川质量损失相反,亚洲高山区的一些冰川在最近几十年似乎有所增加。然而,数字高程模型的变化表明,喀喇昆仑山脉和帕米尔地区的冰川质量有所增加,而最近的激光测高技术数据表明,西昆仑的质量有所增加。在这里,我们得到的结果与测高术的结果基本一致,但观测范围更广,分辨率更高。我们利用 2011 年至 2014 年期间收集的双基地数据进行雷达干涉测量,生成了高程模型,并将其与 2000 年收集的双基地数据生成的模型进行了比较。西昆仑、东帕米尔和喀喇昆仑北部的冰川经历了明显的质量增加,为 0.043 ± 0.078~0.363 ± 0.065 m w.e. yr。喀喇昆仑山脉西部的质量平衡接近稳定(-0.020 ± 0.064 m w.e. yr),而东喀喇昆仑山脉则显示出质量损失(-0.101 ± 0.058 m w.e. yr)。沿塔里木盆地上游边缘注意到显著的正冰川质量平衡,表明从东北到西南的梯度逐渐减小。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a0a7/5532235/e3817038f62d/41598_2017_7133_Fig1_HTML.jpg

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