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水力发电学报 ›› 2024, Vol. 43 ›› Issue (3): 1-13.doi: 10.11660/slfdxb.20240301

• •    下一篇

编辑部推荐论文:气候变化对青海湖水位的影响及机理分析

  

  • 出版日期:2024-03-25 发布日期:2024-03-25

Influence of climate change on Qinghai Lake stage and its mechanism analysis

  • Online:2024-03-25 Published:2024-03-25

摘要: 为系统分析气候变化背景下青海湖水位的变化过程及影响机理,本研究利用1971—2020年青海湖流域的站点观测资料,运用时间序列分析、地统计学插值和相关性分析相结合的方法,定量分析了青海湖流域水文和气象要素的时空变化特征,并基于全球气候模式预估了不同情景下降水和水位的变化趋势。结果表明:过去50年间青海湖水位和水面面积呈先下降后上升的过程,径流量、降水量和气温呈增加趋势,而蒸发量则明显减小;青海湖水位受径流量、降水量、气温和蒸发量的影响非常显著,相关系数分别高达0.92、0.92、0.88和0.81;2021—2040年青海湖水位在不同情景下均呈上升趋势,年平均水位上升速率分别为0.218、0.187、0.125和0.132 m/a。本研究将为气候变化背景下高原湖泊水循环机理揭示及其量化分析提供科学依据。

关键词: 气候变化, 水文要素, 时空变化, 相关关系, 青海湖流域

Abstract: To systematically analyze the variations in the Qinghai Lake stage under climate change and the related influence mechanism, this paper presents a quantitative analysis of the spatiotemporal changes in the hydrological and meteorological factors of the lake basin, using a combination of time series analysis, a geostatistical interpolation method, and correlation analysis based on the data collected at the observation stations over the basin during 1956-2020. We use the global climate model to estimate the varying trends of precipitation and lake stage under different scenarios. The results show that during the past 50 years, the stage and surface area of the lake presented a general trend of decreasing first and then increasing, while an increasing trend occurred in runoff, precipitation and temperature, and a decreasing trend in evaporation. The lake stage was affected significantly by runoff, precipitation, temperature and evaporation; the correlation coefficients were as high as 0.95, 0.92, 0.88 and 0.81, respectively. We project that from 2021 to 2040, the lake stage will take a rising trend, showing an annual average rising rates of 0.218, 0.187, 0.125 and 0.132 m/a under four different scenarios. Quantitative analysis of the lake behaviors under climate change in this study lays a basis for future studies on the water cycling mechanism of plateau lakes.

Key words: climate change, hydrological factors, spatiotemporal changes, correlation, Qinghai Lake Basin

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