Estimation of evapotranspiration from measured meteorological parameters

R. Shrivastava, Faby Sunny, Manish Chopra, I. Iyer, R. Oza
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Abstract

Five empirical equations, namely, FAO-56 Penman–Monteith, Hargreaves–Samani, Makkink, Turc, and Priestley–Taylor are utilized in the estimation of evapotranspiration for the month of May in 2018 for Trombay site in Maharashtra. Evapotranspiration from a given surface is a function of incoming solar radiation, net radiation, ground heat flux, air temperature, relative humidity, and wind speed. Daily average measurements of these parameters are utilized in the empirical equations for the estimation of evapotranspiration. These estimated values are compared with the measured data from pan evaporimeter installed at Trombay. The measured data from the pan evaporimeter are corrected using the pan coefficient Kp which in turn is also estimated using empirical equations. The average value of the pan coefficient Kp is 0.8 for the site. The average measured value of evapotranspiration is 4.7 mm/d for May 2018, whereas the values estimated using the five empirical equations range from 3.3 mm/d to 12.7 mm/d. Among the five equations, the Turc equation was found to be in the best agreement with the measured values of evapotranspiration. Such studies are useful in the estimation of groundwater recharge, latent heat flux, and agriculture meteorology.
根据实测气象参数估算蒸散量
利用FAO-56 Penman-Monteith、Hargreaves-Samani、Makkink、Turc和Priestley-Taylor 5个经验方程估算了马哈拉施特拉邦Trombay站点2018年5月的蒸散量。给定地表的蒸散发是入射太阳辐射、净辐射、地面热通量、空气温度、相对湿度和风速的函数。这些参数的日平均测量值用于估算蒸散发的经验方程。这些估计值与安装在特罗姆贝的蒸发器的实测数据进行了比较。蒸发器的测量数据用蒸发器系数Kp进行了校正,而蒸发器系数Kp又用经验方程进行了估计。该站点蒸发器系数Kp的平均值为0.8。2018年5月蒸散发的平均实测值为4.7 mm/d,而使用五个经验方程估算的值范围为3.3 mm/d至12.7 mm/d。在5个方程中,Turc方程与蒸散发实测值最吻合。这些研究在地下水补给、潜热通量和农业气象学的估算中是有用的。
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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