Thornthwaite and mather soil water balance model adapted for estimation of real evapotranspiration of the pasture

Fabiana da Costa Barros, Suelen da Costa Faria Martins, G. Lyra, Leonardo Rafael da Silva, J. Francisco, M. Abreu, G. B. Lyra
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Abstract

Determining the real water requirement for pastures is essential for the rational use of irrigation. The aim of this work was to assess the crop coefficient and performance of the Thornthwaite and Mather soil water balance (ThM) adapted to estimate the daily actual evapotranspiration (ETa) of a pasture in relation to the Bowen ratio - energy balance method (BREB). The experiment was carried out from July 2018 to June 2019 in Cachoeiras de Macacu, Rio de Janeiro State (RJ) (22º 27’S; 42º 45’W and 30 m altitude). Micrometeorological and meteorological measurements were conducted in a micrometeorological tower installed in the pasture and also in an automatic weather station, located 1 km from the pasture area. The ThM model was evaluated using linear regression between ETa determinate from BREB and the estimates from ThM using its coefficient of determination (R²) and the modified Willmott agreement index (dm). The ThM model underestimated (between 11 and 16%) the ETa for all seasons, except for spring, which overestimated by 1%. The highest precision and accuracy of the estimates were observed in autumn (R² = 0.84 and dm = 0.68) and spring (R² = 0.83 and dm = 0.82). In summer (R² = 0.56 and dm = 0.73) and winter (R² = 0.43 and dm = 0.66), the lower performance was caused by the inability of the model to represent water extraction from the soil in dry periods.
Thornthwaite和mather土壤水分平衡模型适用于估算牧草的实际蒸散量
确定草场的实际需水量对合理利用灌溉至关重要。本研究的目的是利用波文比-能量平衡法(BREB),评价作物系数和土壤水分平衡法(ThM)在估算牧草日实际蒸散量(ETa)中的应用。该实验于2018年7月至2019年6月在巴西里约热内卢州(RJ)(22º27'S;42º45'W,海拔30米)。在牧场设置的微气象塔和距离牧场1公里的自动气象站进行了微气象和气象测量。利用决定系数(R²)和修正的Willmott协议指数(dm),对由BREB确定的ETa与由ThM估计的ETa进行线性回归,对ThM模型进行评价。ThM模型低估了所有季节的ETa(在11%到16%之间),除了春季,它高估了1%。估计的精密度和准确度在秋季(R²= 0.84,dm = 0.68)和春季(R²= 0.83,dm = 0.82)最高。在夏季(R²= 0.56,dm = 0.73)和冬季(R²= 0.43,dm = 0.66),模型表现较差是由于模型不能反映干旱期土壤水分的提取。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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