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Predicting evapotranspiration from drone-based thermography – a method comparison in a tropical oil palm plantation

机译:从无人机的热成像预测蒸发 - 一种热带油棕榈种植中的方法比较

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摘要

For the assessment of evapotranspiration, near-surface airborne thermography offers new opportunities for studies with high numbers of spatial replicates and in a fine spatial resolution. We tested drone-based thermography and the subsequent application of the DATTUTDUT energy balance model using the widely accepted eddy covariance technique as a reference method. The study site was a mature oil palm plantation in lowland Sumatra, Indonesia. For the 61 flight missions, latent heat flux estimates of the DATTUTDUT (Deriving Atmosphere Turbulent Transport Useful To Dummies Using Temperature) model with measured net radiation agreed well with eddy covariance measurements ( r 2 ? = ?0.85; MAE? = ?47; RMSE? = ?60) across variable weather conditions and times of day. Confidence intervals for slope and intercept of a model II Deming regression suggest no difference between drone-based and eddy covariance methods, thus indicating interchangeability. The DATTUTDUT model is sensitive to the configuration of the net radiation assessment. Overall, we conclude that drone-based thermography with energy balance modeling is a reliable method complementing available methods for evapotranspiration studies. It offers promising, additional opportunities for fine grain and spatially explicit studies.
机译:为了评估蒸散蒸腾,近地表空气传播的热成像为具有高空间复制和精细空间分辨率的研究提供了新的机会。我们测试了基于无人机的热成像和随后应用了Dattutdut能量平衡模型作为参考方法的广泛接受的涡流协方差技术。该研究现场是印度尼西亚低地苏门答腊省成熟的油棕榈种植园。对于61个飞行任务,Dattutdut的潜热通量估计(使用温度使用温度的毫木衍生湍流传输)模型与涡流测量相同一致(R 2?= 0.85; Mae?= 47; RMSE ?=?60)在可变天气条件和一天中的时间。模型和拦截模型中侦听回归的置信区间表明无人机和涡流协方差方法之间没有区别,从而表明互换性。 DatTutdut模型对网络辐射评估的配置敏感。总的来说,我们得出结论,具有能量平衡建模的无人机的热成像是一种可靠的方法,补充了蒸散研究的可用方法。它提供了很有希望的粮食和空间明确研究的额外机会。

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