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Comparison of evapotranspiration measurements between eddy covariance and lysimeters in paddy fields under alternate wetting and drying irrigation

机译:交替润湿和干燥灌溉下稻田涡流协方差与沥青计的蒸发测量比较

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Evapotranspiration from paddy fields under alternate wetting and drying (AWD) irrigation was measured using lysimeters (ETL) and eddy covariance (ETec) during the late 2016 and early 2017 rice seasons. Four energy balance closing methods were explored, and discrepancy of ETL and ETec (with or without adjustment) in different growth stages and wet/dry conditions were examined. The results indicated that both energy balance non-closure and wet/dry conditions of the field affect the discrepancy of ETL and ETec. Energy balance was suggested to be closed each half hour by 'residual-LE closure' method only at daytime, and nighttime flux stayed unchanged, while a careful data control and interpolation should be noted for nighttime flux. In the meantime, wet-to-dry patterns of AWD irrigation can affect the discrepancy between ETec and ETL. In wet periods, ETec with suitable adjustment method was well matched with the ETL. However, ETL was underestimated in dry periods due to lower water content in the lysimeter. Finally, net radiation (R-n), vapor pressure deficit (VPD), air temperature (T-a), soil and water temperature (T-s and T-w), and wind speed (u) were selected to conduct path analysis on ETL and ETec (with adjustment) for both wet and dry conditions. The direct dependencies of each meteorological factor on ETL and ETec were similar under wet conditions; however, under dry conditions, VPD and R-n are the respective main controls for ETL and ETec. Moreover, ETL is more sensitive to T-a and T-w under wet conditions.
机译:在2016年末和2017年代初期和2017年赛季赛季,使用Lysimers(ETL)和Edc)测量稻田下的稻田下的蒸发灌溉(AWD)灌溉。探讨了四种能量平衡闭合方法,检查了不同生长阶段和湿/干燥条件下ETL和ETEC(有或没有调整)的差异。结果表明,该领域的能量平衡非闭合和湿润/干燥条件影响了ETL和ETEC的差异。建议在白天的“残留-LE封闭”方法每半小时内完成能量平衡,夜间通量保持不变,而夜间通量应注意仔细的数据控制和插值。与此同时,AWD灌溉的湿对干燥模式会影响ETEC和ETL之间的差异。在潮湿的时期,具有合适调节方法的ETEC与ETL相匹配。然而,由于溶血度计中的含水量较低,因此在干燥时期低估EtL。最后,选择净辐射(RN),蒸气压缺损(VPD),空气温度(TA),土壤和水温(TS和TW),以及风速(U)对ETL和ETEC进行路径分析(调整)对于潮湿和干燥的条件。在潮湿条件下,ETL和ETEC的每种气象因素的直接依赖性;然而,在干燥条件下,VPD和R-N是ETL和ETEC的相应主要控制。此外,EtL在潮湿条件下对T-A和T-W更敏感。

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