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Thermal infrared imaging of conifer leaf temperatures: Comparison to thermocouple measurements and assessment of environmental influences

机译:针叶树叶温度的热红外成像:热电偶测量和环境影响评估比较

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Thermal infrared (TIR) imaging provides a potentially powerful tool for ecological and biometeorological research, but the accuracy of TIR imaging of plant surface temperature in a variable outdoor environment has been poorly characterized. This study evaluated the accuracy of TIR measurements of a conifer tree that were made using the thermal camera's factory default settings, and developed a post-collection data processing method to correct measurements for ambient conditions that depart from the factory default settings. We conducted a 42 day measurement campaign in Corvallis, Oregon during spring 2014 that focused on the canopy temperature of a noble fir (Abies procera) and included the simultaneous collection of meteorological data and leaf temperature measurements with an array of thermocouples. We then developed empirical functions for temperature corrections that better accounted for emissivity, and atmospheric and reflected temperature. The original TIR temperatures using the factory settings averaged 8.6 +/- 5.6 degrees C (-4.2 to 25.4 degrees C in range), and the original TIR temperatures differed from the thermocouple temperatures by 1.4-1.6 K. The TIR temperatures were generally accurate, except for a low temperature bias at leaf temperatures below 5 degrees C. TIR temperature corrections reduced this bias to a & 1.0 K mean error relative to the thermocouples. Our results show that TIR measurements can be corrected to more accurately quantify canopy temperature, and that the importance of this correction increases under more extreme ambient conditions, such as colder periods.
机译:热红外(TIR)成像为生态和生物气象研究提供了一个潜在的强大工具,但在可变户外环境中植物表面温度的TIR成像的准确性表现不佳。本研究评估了使用热摄像机出厂默认设置进行的针叶树TIR测量的准确性,并开发了一个收集的数据处理方法,以纠正从出厂默认设置的环境条件进行测量。我们在2014年春季进行了俄勒冈州Coregallis的42天测量活动,其专注于贵宾冷杉(Abies Procera)的冠层温度,并包括热电偶阵列同时收集气象数据和叶温测量。然后,我们开发了用于温度校正的经验功能,以更好地占发射率和大气和反射温度。原始TIR温度使用出厂设置平均为8.6 +/- 5.6摄氏度(范围为-4.2至25.4摄氏度),并且原始TIR温度与热电偶温度不同1.4-1.6k。TIR温度通常准确,除了低于5摄氏度下的叶温下的低温偏压外,TIR温度校正将该偏置降低到A& 1.0 k相对于热电偶的误差。我们的结果表明,TIR测量可以更准确地量化冠层温度,并且在更极端的环境条件下,这种校正的重要性增加,例如较冷的时期。

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