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应用生态学报 ›› 2026, Vol. 37 ›› Issue (5): 1409-1421.doi: 10.13287/j.1001-9332.202605.014

• 稳定同位素生态学专栏 • 上一篇    下一篇

基于稳定氢氧同位素计算小型水体蒸发

郜海宁1, 肖薇1,2*, 杨钟昊1, 杨剑1, 谢成玉3, 徐敬争1   

  1. 1南京信息工程大学气候系统预测与变化应对全国重点实验室大气环境中心, 南京 210044;
    2南京信息工程大学气象灾害预报与评估省部共建协同创新中心, 南京 210044;
    3生态环境部卫星环境应用中心, 北京 100094
  • 收稿日期:2026-03-04 接受日期:2026-04-05 出版日期:2026-05-18 发布日期:2026-11-18
  • 通讯作者: * E-mail: wei.xiao@nuist.edu.cn
  • 作者简介:郜海宁, 女, 2001年生, 硕士研究生。主要从事稳定同位素水文学研究。E-mail: 2544968389@qq.com
  • 基金资助:
    国家自然科学基金项目(41975143)和江苏省“333人才”领军型人才团队项目(BRA2022023)

Calculation of evaporation from small water bodies based on stable hydrogen and oxygen isotopes.

GAO Haining1, XIAO Wei1,2*, YANG Zhonghao1, YANG Jian1, XIE Chengyu3, XU Jingzheng1   

  1. 1Center on Atmosphe-ric Environment, State Key Laboratory of Climate System Prediction and Risk Management, Nanjing University of Information Science and Technology, Nanjing 210044, China;
    2Collaborative Innovation Center on Forecast and Evaluation of Meteorological Disasters, Nanjing University of Information Science and Technology, Nanjing 210044, China;
    3Satellite Application Center for Ecology and Environment, Ministry of Ecology and Environment, Beijing 100094, China
  • Received:2026-03-04 Accepted:2026-04-05 Online:2026-05-18 Published:2026-11-18

摘要: 小型水体蒸发量的准确估算对应对全球气候变化导致的水资源损失具有重要意义。本研究基于2020—2022年长三角典型养殖鱼塘氢氧稳定同位素观测资料和气象观测数据,采用稳定同位素质量守恒模型和涡度相关法估算月尺度鱼塘蒸发量,并以涡度相关法观测值为参考值,分析不同动力分馏参数化方案的适用性。结果表明:鱼塘月蒸发量呈现显著的季节变化特征:夏季(99.6±37.3 mm)>春季(89.4±26.5 mm)>秋季(58.7±21.7 mm)>冬季(20.6±4.5 mm)。基于不同同位素和不同参数化方案的同位素质量守恒模型的估算结果均与观测数据较一致。其中,2H在夏季和秋季两季的适用性优于18O,而18O在春季和冬季两季更优,总体上2H的效果更好。不同参数化方案中,海洋方案整体优于湖泊方案,而基于18O结合基于鱼塘观测数据建立的本地化参数化方案(相关系数为0.85,均方根误差为18 mm)较传统的湖泊参数化方案和海洋参数化方案更优。本研究结果可为提高稳定同位素技术在小型水体蒸发计算中的准确性与可靠性提供重要的理论支撑和方法参考。

关键词: 同位素质量守恒方程, 蒸发, 动力学分馏系数, 涡度相关法, 小型水体

Abstract: Accurate estimation of evaporation from small water bodies is critical for addressing water resource losses induced by global climate change. Based on hydrogen and oxygen stable isotope data and meteorological observations collected from a fish pond in Anhui Province during 2020-2022, we calculated the monthly evaporation from the pond using a stable isotope mass balance model and the eddy covariance (EC) method. With the EC observations as a reference, we evaluated the applicability of different parameterization schemes for kinetic fractionation. The results showed that monthly evaporation from the fish pond exhibited seasonal variability: summer (99.6±37.3 mm) > spring (89.4±26.5 mm) > autumn (58.7±21.7 mm) > winter (20.6±4.5 mm). The results of the isotope mass conservation model based on different isotopes and parameterization schemes were generally consistent with the observations. The applicability of deuterium (2H) was better than that of oxygen-18 (18O) in summer and autumn, while 18O performed better in spring and winter. Overall, 2H showed better performance. Among different parameterization schemes, the ocean-based scheme was generally superior to the lake-based scheme. The localized parameterization scheme based on 18O and developed using pond observation data (Pearson correlation coefficient=0.85, root mean square error=18 mm) outperformed both the traditional lake-based and ocean-based parameterization schemes. These findings provide important theoretical support and methodological references for enhancing the accuracy and reliability of stable isotope techniques in calculating evaporation from small water bodies.

Key words: isotopic mass balance, evaporation, kinetic fractionation coefficient, eddy covariance, small water body