首页> 外文期刊>Journal of Water Resource and Protection >Long-Term Study of Lake Evaporation and Evaluation of Seven Estimation Methods: Results from Dickie Lake, South-Central Ontario, Canada
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Long-Term Study of Lake Evaporation and Evaluation of Seven Estimation Methods: Results from Dickie Lake, South-Central Ontario, Canada

机译:湖泊蒸发的长期研究和七种估算方法的评估:加拿大安大略省中南部迪基湖的结果

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Establishing satisfactory calculation methods of lake evaporation has been crucial for research and manage-ment of water resources and ecosystems. A 30 year dataset from Dickie Lake, south-central Ontario, Canada added to the limited long-term studies on lake evaporation. Evaporation during ice-free season was calcu-lated separately using seven evaporation methods, based on field meteorology, hydrology and lake water temperature data. Actual evaporation determined during a portion of a year was estimated using a lake en-ergy budget model, and the estimation was used as reference evaporation for evaluation of the seven methods. The deviation of method-induced evaporation from the reference evaporation was compared among the seven methods, and a performance rank was proposed based on the root mean squared deviation and coeffi-cient of efficiency. As for the whole ice-free season (roughly May to November), the water balance was the best method, followed by Makkink, DeBruin-Kejiman, Penman, Priestley-Taylor, Hamon, and Jensen-Haise methods. As for shorter duration (a week to a month), the DeBruin-Kejiman was the best method, followed by Penman, Priestley-Taylor, Makkink, Hamon, Jensen-Haise, and water balance method. Annual and sea-sonal changes of energy budget terms and the compensation function of lake heat storage in evaporation flux were also analyzed.
机译:建立令人满意的湖泊蒸发量计算方法对于水资源和生态系统的研究和管理至关重要。来自加拿大安大略省中南部迪基湖的30年数据集增加了对湖泊蒸发的长期研究。根据野外气象,水文学和湖泊水温数据,使用七种蒸发方法分别计算了无冰季节的蒸发量。使用湖泊能量预算模型估算一年中确定的实际蒸发量,并将该估算值用作评估这七种方法的参考蒸发量。比较了这7种方法中方法引起的蒸发与参考蒸发的偏差,并基于均方根偏差和效率系数提出了性能等级。对于整个无冰季节(大约5月至11月),水平衡是最好的方法,其次是Makkink,DeBruin-Kejiman,Penman,Priestley-Taylor,Hamon和Jensen-Haise方法。至于持续时间较短(一周至一个月),最好是DeBruin-Kejiman方法,其次是Penman,Priestley-Taylor,Makkink,Hamon,Jensen-Haise和水平衡法。还分析了能量收支项的年度和季节变化以及湖泊热量在蒸发通量中的补偿函数。

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