新疆中纬度大湖泊湖泊冰物候变化及驱动因素比较研究

IF 8 2区 环境科学与生态学 Q1 ENVIRONMENTAL SCIENCES Journal of Environmental Management Pub Date : 2025-02-01 Epub Date: 2025-01-09 DOI:10.1016/j.jenvman.2024.123880
Yimuran Kuluwan, Yusufujiang Rusuli, Mireguli Ainiwaer, Wu Haizhi, Kadierye Maolan
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引用次数: 0

摘要

湖冰物候(LIP)的变化可以直观地反映湖泊所在地区的气候演变,是气候变化的重要指标。天山山脉位于北半球冰湖南缘,是新疆重要的水资源基地,支撑着与人类活动密切相关的重要生态系统。在气候变化加剧的背景下,以新疆中纬度地区大型湖泊群的地理位置、海拔高度和水质差异为研究对象,探讨中纬度地区大型湖泊群的LIP变化特征及其对驱动因素的响应,为有效的环境管理和保护提供依据。本研究利用多源遥感数据,对赛拉姆湖(SL)、博斯腾湖(BL)和艾布努尔湖(EL) 3个大型湖泊的LIP变化及其驱动因素进行了对比分析,揭示了全球变暖下湖泊的响应与适应机制。它有效地捕获了冰形成和融化的时间序列变化,以及对环境和气候因素的共同反应。结果表明:冻土带受气候变化影响显著,冻结时间提前,融化速度加快;相反,EL和BL的变化相对较小,说明地理和水文因素可能会缓冲气候的影响。研究发现,三个湖泊都受到温度、风速、降水等环境因素的共同影响;然而,由于海拔高度、湖面面积和水体透明度的差异,它们对这些气候因子的响应差异很大。例如,SL的高海拔使水的透明度在LIP中占主导地位,而BL较大的表面积增强了降水和热容量对融化过程的影响。这表明,尽管面临相似的气候压力,但当地环境条件可能导致不同的冰物候变化趋势。本研究提供了一种新颖高效的LIP监测方法,为今后的LIP研究和水资源管理提供了有价值的见解。
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Comparative study on lake ice phenology changes and driving factors in large lakes of mid-latitude Xinjiang, China.

The changes in lake ice phenology (LIP) can intuitively reflect the climate evolution in the regions where lakes are located, serving as an important indicator of climate change. The Tianshan Mountains, situated at the southern edge of freezing lakes in the Northern Hemisphere, are a crucial water resource base in Xinjiang and support significant ecosystems closely related to human activities. In the context of intensified climate change, this study focuses on the geographical location, altitude, and water quality differences among large lake groups in the mid-latitude region of Xinjiang, aiming to explore the characteristics of LIP changes in these lakes and their responses to driving factors, thereby providing a basis for effective environmental management and protection. This research conducts a comparative analysis of the LIP changes and driving factors of three large lakes-Sayram Lake (SL), Bosten Lake (BL), and Ebnur Lake (EL)-using multi-source remote sensing data to reveal the response and adaptation mechanisms of lakes under global warming. It effectively captures the time series variations of ice formation and melting, as well as the common responses to environmental and climatic factors. The results indicate that SL has experienced significant climate change effects, with earlier freezing times and accelerated melting speeds; In contrast, EL and BL have shown relatively minor changes, suggesting that geographical and hydrological factors may buffer the impacts of climate. The study finds that all three lakes are jointly influenced by environmental factors such as temperature, wind speed, and precipitation; however, due to differences in altitude, lake surface area, and water transparency, their responses to these climatic factors vary significantly. For instance, SL's high altitude gives water transparency a dominant role in LIP, while BL's larger surface area enhances the impact of precipitation and thermal capacity on the melting process. This indicates that, despite facing similar climate pressures, local environmental conditions can lead to different trends in ice phenology changes. This study offers a novel and efficient monitoring method for LIP, providing valuable insights for future LIP research and water resource management.

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来源期刊
Journal of Environmental Management
Journal of Environmental Management 环境科学-环境科学
CiteScore
13.70
自引率
5.70%
发文量
2477
审稿时长
84 days
期刊介绍: The Journal of Environmental Management is a journal for the publication of peer reviewed, original research for all aspects of management and the managed use of the environment, both natural and man-made.Critical review articles are also welcome; submission of these is strongly encouraged.
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