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Parameterization of Evapotranspiration Estimation for Two Typical East Asian Crops

机译:两种典型东亚农作物蒸散量估算的参数化

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Estimation of evapotranspiration plays an important role in understanding the water cycle on the earth, especially the water budget in agricultural ecosystems. The parameterization approach of the Penman-Monteith-Katerji-Perrier (PM-KP) model, accounting for the influence of meteorological variables and aerodynamic resistance on surface resistance, was proposed in the literature, but it has not been applied to Asian croplands, and its error and sensitivity have not been reported yet. In this study, the estimation of evapotranspiration on half-hourly scale was carried out for two typical East Asian cropland research sites, and evaluated by using eddy-covariance measurements corrected with the energy-balance-closure concept. Sensitivity coefficients as well as systematic bias and random errors of the PM-KP approach were used to evaluate the model performance. Different distributions of the calibration coefficients between different crops were reported for the first time, indicating that the calibration of this model was more stable for the rice field than for the potato field. The commonly-used parameterization approach suggested by the Food and Agriculture Organization (FAO) was used as reference and was site-specifically optimized. The results suggest that the PM-KP approach would be a better alternative than the PM-FAO approach for estimating evapotranspiration for the flooded rice field, and an acceptable alternative for rain-fed croplands when the soil is well watered and the air is humid during the summer monsoon.
机译:蒸散量的估算在理解地球上的水循环,尤其是农业生态系统中的水预算方面起着重要作用。文献中提出了Penman-Monteith-Katerji-Perrier(PM-KP)模型的参数化方法,该方法考虑了气象变量和气动阻力对表面阻力的影响,但尚未应用于亚洲农田,并且尚未报告其错误和敏感性。在这项研究中,对两个典型的东亚农田研究地点进行了每半小时一次的蒸散量估算,并通过采用能量平衡封闭概念校正的涡度协方差测量进行了评估。使用PM-KP方法的灵敏度系数以及系统偏差和随机误差来评估模型性能。首次报道了不同作物之间校准系数的不同分布,这表明该模型的校准在稻田中比在马铃薯田中更稳定。粮食及农业组织(FAO)建议的常用参数化方法被用作参考,并且已针对具体地点进行了优化。结果表明,PM-KP方法比PM-FAO方法更好地估计水淹稻田的蒸散量,并且在土壤水量充足且空气潮湿的情况下,对于雨养农田来说是一种可接受的替代方法夏季风。

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