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亚洲水塔失衡与冰雪变化

姚檀栋 Walter Immerzeel 赵华标 李生海 朱美林 徐柏青 王宁练 王伟财 杨威 张国庆 施建成 邬光剑 高晶 车涛 刘时银

气候变化研究进展2024,Vol.20Issue(6):689-698,10.
气候变化研究进展2024,Vol.20Issue(6):689-698,10.DOI:10.12006/j.issn.1673-1719.2024.168

亚洲水塔失衡与冰雪变化

Imbalance of the Asian Water Tower characterized by glacier and snow melt

姚檀栋 1Walter Immerzeel 2赵华标 1李生海 1朱美林 3徐柏青 1王宁练 4王伟财 1杨威 1张国庆 1施建成 5邬光剑 1高晶 1车涛 6刘时银7

作者信息

  • 1. 中国科学院青藏高原研究所,北京 100101
  • 2. 乌特勒支大学,乌特勒支 3508,荷兰
  • 3. 兰州大学,兰州 730000
  • 4. 西北大学,西安 710127
  • 5. 中国科学院国家空间科学中心,北京 100190
  • 6. 中国科学院西北生态环境资源研究院,兰州 730000
  • 7. 云南大学,昆明 650500
  • 折叠

摘要

Abstract

The Asian Water Tower is the most important and vulnerable water tower in the world.Its most prominent feature is the glacier and snow processes.Climate change has led to a rapid reduction of solid water bodies such as glaciers and snow in the Asian Water Tower,while liquid water bodies such as lakes and rivers have significantly increased,resulting in an imbalance between solid and liquid phases.There is a spatial imbalance in the distribution of water resources,with an increase in water resources in the northern endorheic basins and a decrease in the southern exorheic basins.Glaciers are melting at an accelerated rate,with significant spatial differences between the southeast and northwest,showing severe glacial mass loss in the southeast and Tianshan regions,relatively minor losses in the northwest regions,and relative stability or advancement in the Pamir and West Kunlun regions.Snow cover and annual snow days have decreased,snowmelt is occurring earlier,and both maximum snow water equivalent and snowmelt are decreasing.In the future,research should be focused on the changes in glacier and snow processes in high-altitude areas,improving the spatiotemporal resolution of glacier and snow process models,strengthening research on future water resource changes under different scenarios,and proposing water security response strategies.

关键词

亚洲水塔失衡/冰川变化/积雪变化

Key words

Asian Water Tower imbalance/Glacier change/Snow cover change

引用本文复制引用

姚檀栋,Walter Immerzeel,赵华标,李生海,朱美林,徐柏青,王宁练,王伟财,杨威,张国庆,施建成,邬光剑,高晶,车涛,刘时银..亚洲水塔失衡与冰雪变化[J].气候变化研究进展,2024,20(6):689-698,10.

基金项目

第二次青藏高原综合科学考察研究(2019QZKK0201) (2019QZKK0201)

气候变化研究进展

OA北大核心CSTPCD

1673-1719

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