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水力发电学报 ›› 2021, Vol. 40 ›› Issue (10): 60-70.doi: 10.11660/slfdxb.20211006

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青海湖水量平衡变化及其对湖水位的影响研究

  

  • 出版日期:2021-10-25 发布日期:2021-10-25

Study of water balance change and its influence on water stage in the Qinghai Lake

  • Online:2021-10-25 Published:2021-10-25

摘要: 利用1961—2015年青海湖的实测水位及气象观测资料建立了青海湖年水量平衡方程,估算了青海湖逐年的湖面降水、湖面蒸发及入湖流量,分析了水量平衡各要素的变化趋势。在此基础上,通过回归分析等方法研究了不同因子对青海湖水位变化的贡献率。结果表明,青海湖水位在2005年之前呈下降趋势,2005年之后水位上升。青海湖多年平均降水量为14.6×108 m3,多年平均入湖径流量为24.4×108 m3,多年平均蒸发量为40.1×108 m3。1961—2015年间湖面降水呈增加趋势,入湖径流在2003年后增加显著,而湖面蒸发在2000年后呈减少趋势。入湖径流和湖面降水的增加及湖面蒸发的减少共同导致了青海湖水位在2005年之后回升,其中入湖径流对水位变化的贡献率最大,为38.2%。

关键词: 水量平衡, 水位变化, 蒸发, 贡献率, 青海湖

Abstract: This paper develops a water balance equation for the Qinghai Lake using its water stage and meteorology observations for the period of 1961 to 2015, estimates its annual precipitation, evaporation and inflow, and analyzes the time trends of its water balance components. Regression analysis is used to examine the contribution rates of different factors to the time variations in its water stage. The results show the water stage in the lake decreased before 2005 and since then has risen evidently. Its annual precipitation is 14.6×108 m3, annual inflow runoff 24.4×108 m3, and annual evaporation 40.1×108 m3. In the period of 1961 to 2015, precipitation on the lake showed an increasing trend; its inflow runoff has increased significantly since 2003 and evaporation decreased since 2000. Inflow increase and precipitation increase together with reduced evaporation was the cause of lake stage rising after 2005, with the inflow runoff contributing the largest proportion of 38.2% to the stage variations.

Key words: water balance, water stage change, evaporation, contribution rate, Qinghai Lake

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