raybet体育在线 院报 ›› 2025, Vol. 42 ›› Issue (2): 36-43.DOI: 10.11988/ckyyb.20231131

• 水资源 • 上一篇    下一篇

面向三峡水库的水面蒸发模型

彭玉洁1,2(), 张冬冬1(), 徐高洪1, 王卫光2, 林涛涛3, 白浩男1   

  1. 1 长江水利委员会水文局,武汉 430010
    2 河海大学 水文水资源学院,南京 210098
    3 长江水利委员会水文局 长江三峡水文水资源勘测局,湖北 宜昌 443000
  • 收稿日期:2023-10-19 修回日期:2023-12-12 出版日期:2025-02-01 发布日期:2025-02-01
  • 通信作者:
    张冬冬(1986-),男,辽宁沈阳人,高级工程师,博士,主要从事水文水资源分析研究。E-mail:
  • 作者简介:

    彭玉洁(2000-),女,湖北宜昌人,硕士研究生,主要从事水文气象研究。E-mail:

  • 基金资助:
    国家自然科学基金联合基金项目(U2240218); 中国长江三峡集团有限公司科研资助项目(0704221)

Water Surface Evaporation Model for the Three Gorges Reservoir

PENG Yu-jie1,2(), ZHANG Dong-dong1(), XU Gao-hong1, WANG Wei-guang2, LIN Tao-tao3, BAI Hao-nan1   

  1. 1 Bureau of Hydrology, Changjiang Water Resources Commission, Wuhan 430010, China
    2 College ofHydrology and Water Resources, Hohai University, Nanjing 210098, China
    3 Three Gorges Bureau ofHydrological and Water Resources Survey, Bureau of Hydrology, Changjiang Water Resources Commission,Yichang 443000, China
  • Received:2023-10-19 Revised:2023-12-12 Published:2025-02-01 Online:2025-02-01

摘要:

针对目前水面蒸发模型对三峡水库狭长带状河道型的特点考虑不足的问题,分析三峡水库巴东站的水面蒸发变化规律,充分考虑饱和水汽压差、相对湿度、风速和水汽温差共4个主要因素对水面蒸发的影响,引入不同风速量级下的水汽温差函数,建立适合于三峡水库的水面蒸发模型。结果表明:面向三峡水库水面蒸发模型能准确模拟出三峡水库的水面蒸发量,模型在率定期的模拟效果最优,相比于其他传统经验模型,纳什效率系数NSE由0.31提高至0.75,与实测值的误差大幅度下降。同时模型模拟的蒸发量经折算后与三峡水库其他5处站点的实测值能较好吻合,验证了模型的精确性和可靠性,为三峡水库水资源合理利用与科学管理提供了技术支持。

关键词: 水面蒸发模型, 机理分析, 水汽温差函数, 精度评估, 水资源合理利用, 三峡水库

Abstract:

This study aims to address the issue that existing water surface evaporation models do not account for the unique characteristics of the narrow and long channel type of the Three Gorges Reservoir. By analyzing water surface evaporation data from the Badong station in the Three Gorges Reservoir, we develop a water surface evaporation model specifically tailored for the Three Gorges Reservoir by introducing functions for water vapor temperature difference under different wind speeds in consideration of the influences of four primary factors: saturated water vapor pressure difference, relative humidity, wind speed, and vapor temperature difference. Results demonstrate that the proposed model accurately simulates the reservoir’s water surface evaporation, particularly during the calibration period, achieving a Nash efficiency coefficient (NSE) of 0.75, a significant improvement from 0.31 obtained with other traditional empirical models. The model’s simulated evaporation values closely match measurements from five additional stations in the reservoir, validating its accuracy and reliability. This model provides valuable technical support for the rational utilization and scientific management of water resources in the Three Gorges Reservoir.

Key words: water surface evaporation model, mechanism analysis, water vapor temperature difference function, accuracy evaluation, rational utilization of water resources, Three Gorges Reservoir

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