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Crop Evapotranspiration Estimations of Red Pepper Using Field Level Remote Sensing Data and Energy Balance

机译:利用田间遥感数据和能量平衡估算红辣椒的作物蒸散量

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摘要

In this study, the energy balance approach was used to estimate evapotranspiration (ET) of red pepper plots managed with four different irrigation strategies (100, 70, and 40% of ET, and rainfed) with drip irrigation systems in the sub-humid Bafra Plains located in northern Turkey. In order to calculate components of energy balance, hyper-spectral reflectance, infrared surface temperature, and net radiation data were measured using nadir-looking hand-held proximal sensing devices over the experimental plots. Additionally, soil moisture levels were monitored frequently with a well-calibrated neutron moisture meter and a soil water budget approach was used to calculate actual ET values. Current findings revealed that the response of red pepper crops to water stress offered a significant opportunity to detect different levels of spectral reflectance, surface temperature, and net radiation. Furthermore, statistical comparisons revealed significant relationships between measured and estimated daily ET (r = 0.92 and RMSE = 0.83) and cumulative ET (r = 0.99 and RMSE = 43.98) values. Estimation errors for daily and cumulative ET using the energy balance algorithm were 27% and 14%, respectively. Overall, present results indicated that the energy balance algorithm with field level remotely sensed data had a great potential to estimate ET of red peppers at plot scale.
机译:在这项研究中,能量平衡方法用于估计在湿润的Bafra上采用滴灌系统的四种不同灌溉策略(ET的100%,70%和40%以及雨养)管理的红辣椒田的蒸散量(ET)平原位于土耳其北部。为了计算能量平衡的组成部分,使用看起来像最低点的手持式近端传感设备在实验曲线上测量了高光谱反射率,红外表面温度和净辐射数据。此外,使用校准良好的中子水分仪经常监测土壤水分水平,并使用土壤水分预算方法来计算实际的ET值。当前的发现表明,红辣椒作物对水分胁迫的响应为检测不同水平的光谱反射率,表面温度和净辐射提供了重要的机会。此外,统计比较表明,测得的和估计的每日ET(r = 0.92和RMSE = 0.83)与累积ET(r = 0.99和RMSE = 43.98)之间存在显着关系。使用能量平衡算法的每日和累积ET的估计误差分别为27%和14%。总体而言,目前的结果表明,具有场级遥感数据的能量平衡算法具有很大的潜力,可以在样地范围内估算红辣椒的ET。

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