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首页> 外文期刊>Acta Horticulturae >Use of infrared thermography to assess spatial and temporal variability of stomatal conductance of grapevines under partial rootzone drying: an irrigation scheduling application.
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Use of infrared thermography to assess spatial and temporal variability of stomatal conductance of grapevines under partial rootzone drying: an irrigation scheduling application.

机译:使用红外热像仪评估部分根区干燥下葡萄的气孔导度的时空变化:灌溉计划应用。

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摘要

A thermal imaging technique to assess spatial and temporal stomatal conductance was studied in a field trial in Australia during the 2003-04 growing season. Images on the shaded side of the canopy were obtained using an infrared portable camera (Therma CAM PM575, FLIR Systems). "Dry" and "wet" leaves were used as reference surfaces to obtain temperature thresholds to eliminate non-leaf material temperatures in the analysis. An index (Ig) proportional to leaf conductance was obtained and compared with average stomatal conductance measured by gas exchange (Li-Cor 6400). Midday stem water potential, sap flow and wetting patterns were also analysed to determine the effect of plant water status on reference temperatures. This technique could give a more accurate estimation of actual stomatal conductance of the whole canopy and canopy resistance of non-stressed grapevines, which could then be incorporated in the Penman-Monteith model to estimate evapotranspiration of deficit irrigated grapevines with variable canopy resistances..
机译:在2003-04生长季节,在澳大利亚的一项田间试验中研究了一种热成像技术,用于评估空间和时间气孔导度。使用红外便携式摄像机(Therma CAM PM575,FLIR Systems)获得冠层阴影侧的图像。使用“干”和“湿”叶片作为参考表面,以获得温度阈值,以消除分析中的非叶材料温度。获得与叶片电导成正比的指数(Ig),并将其与通过气体交换(Li-Cor 6400)测量的平均气孔电导率进行比较。还分析了午间茎水势,汁液流量和润湿模式,以确定植物水状态对参考温度的影响。该技术可以更准确地估计整个冠层的实际气孔导度和非胁迫葡萄的冠层阻力,然后可以将其结合到Penman-Monteith模型中,以估计具有不同冠层阻力的缺水灌溉葡萄的蒸散量。

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