气候变化下中国贡嘎山东坡冰川时空速度的动态变化

IF 6.4 1区 地球科学 Q1 ENVIRONMENTAL SCIENCES
Yin Fu , Bo Zhang , Qiao Liu , Guo-Xiang Liu , Rui Zhang
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引用次数: 0

摘要

对冰川流速动态的定量评估对于了解冰川对气候变暖的响应机制起着至关重要的作用。本研究通过对贡嘎山典型冰川近年来的运动演变进行研究,对该地区冰川的减速状态进行了系统的定量评估,从而揭示了该地区冰川在大时间跨度上的季节动态和年际演变。我们使用光流-小基线子集(OF-SBAS)方法,利用178幅从2014年至2021年存档的哨兵-1卫星合成孔径雷达(SAR)图像,计算了海螺沟冰川和莫日沟冰川的时间序列速度。研究结果揭示了冰川运动的显著季节性模式,即从寒冷季节到温暖季节的速度周期性变化。此外,我们还发现了冰川表面不同区域的速度变化,冰川流的峰值时间节点随海拔升高而滞后,这一点非常突出。这种模式可能是由内部和外部因素共同决定的,其中包括质量积累和消融驱动的冰川下排水以及冰川地貌环境。此外,在 2015-2021 年期间,贡嘎山东坡的冰川呈现出总体减速趋势。值得注意的是,海螺沟冰川的消融区记录了最大幅度的减速,每年超过 8%。这项研究强调了 OF-SBAS 方法在提取长期冰川速度方面的功效。这项工作还为分析气候变暖背景下冰川运动的时空波动奠定了坚实的基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dynamics of the spatiotemporal velocity of glaciers on the eastern slope of Mount Gongga, China, under climate change

The quantitative assessment of glacier flow velocity dynamics plays a pivotal role in understanding its response mechanisms concerning climate warming. This work provides a systematic quantitative assessment of the deceleration status of glaciers in this region by investigating the motion evolution of typical glaciers in Mount Gongga in recent years, thereby revealing the seasonal dynamics and inter-annual evolution over an extensive time span. We used the optical flow-small baseline subset (OF-SBAS) method to compute the time-series velocities of the Hailuogou Glacier and the Mozigou Glacier using 178 archived Sentinel-1 satellite synthetic aperture radar (SAR) images from 2014 to 2021. The findings revealed a prominent seasonal pattern in glacier motion, characterised by cyclic variations in velocity from cold to warm seasons. Moreover, we identified variations in velocities across distinct regions of the glacier surface, underscored by the lag in the peak time node of glacier flow with increasing elevation. This pattern may have been determined by a combination of internal and external factors, including mass accumulation and ablation-driven subglacial drainage, as well as the glacier geomorphological setting. Furthermore, during 2015–2021, the glaciers on the eastern slope of Mount Gongga exhibited an overarching trend of deceleration. Notably, the ablation area of the Hailuogou Glacier recorded the most substantial deceleration, exceeding 8% per year. This study underscores the efficacy of the OF-SBAS method in extracting long-term glacier velocities. This work also establishes a robust foundation for the analysis of spatiotemporal fluctuations in glacier movement within the context of climate warming.

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来源期刊
Advances in Climate Change Research
Advances in Climate Change Research Earth and Planetary Sciences-Atmospheric Science
CiteScore
9.80
自引率
4.10%
发文量
424
审稿时长
107 days
期刊介绍: Advances in Climate Change Research publishes scientific research and analyses on climate change and the interactions of climate change with society. This journal encompasses basic science and economic, social, and policy research, including studies on mitigation and adaptation to climate change. Advances in Climate Change Research attempts to promote research in climate change and provide an impetus for the application of research achievements in numerous aspects, such as socioeconomic sustainable development, responses to the adaptation and mitigation of climate change, diplomatic negotiations of climate and environment policies, and the protection and exploitation of natural resources.
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