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Seasonal variation in canopy reflectance and its application to determine the water status and water use by citrus trees in the Western Cape, South Africa

机译:冠层反射率的季节性变化及其在确定南非西开普省柑橘树的水状况和用水量中的应用

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This study describes the diurnal and seasonal dynamics of the canopy reflectance. water use and water status of Midknight Valencia citrus trees under semi-arid conditions. Hyperspectral canopy reflectance data was collected on 30 trees at monthly intervals over a period of 16 months in a commercial orchard in South Africa. The mean canopy reflectance in the wavelength range 350-2500 nm followed a clear seasonal trend influenced by environmental conditions and tree phenology. Mean monthly reflectance peaked in summer(similar to 22%) while the lowest value (similar to 15%) was reached in winter with the seasonal changes in the sun's position accounting for a significant proportion of the variations. A sensitivity analysis of a Penman-Monteith transpiration model showed that water use by individual trees changed by up to 13% when the canopy reflectance was varied over the seasonal range of measured values. This suggested that the seasonal changes in tree water use influenced the seasonal trend of the canopy reflectance. Thus monitoring the canopy reflectance of citrus trees could offer information on the tree water status. To test this, sap flow data of water uptake and loss by the trees were compared with the canopy spectra. Sap flow data showed a heavy reliance by the citrus trees on the internally stored water with up to 25% of the daily total transpiration withdrawn from the trees' internal water storage pools when soil water was limited. This depletion of internally stored water, and hence the change in tree water status, was detected using spectral indices based on the first order derivatives of the canopy reflectance centered at two and, at most, four spectral bands. We conclude that even if citrus trees are evergreen, their canopy reflectance changes significantly throughout the year with a considerable impact on tree energy balance and water use. In addition, the contribution of the internally stored water to daily transpiration is a possible indicator of drought stress for citrus trees detectable from changes in canopy reflectance and it has potential applications in irrigation scheduling using canopy level spectral information
机译:这项研究描述了冠层反射率的昼夜动态。半干旱条件下Midknight Valencia柑橘树的水分利用和水分状况。在南非的一个商业果园中,在16个月的时间内每月以30棵树收集高光谱冠层反射数据。在350-2500 nm波长范围内,平均树冠反射率受到环境条件和树木物候学影响的明显的季节性趋势。平均月反射率在夏季达到峰值(约22%),而在冬季达到最低值(约15%),其中太阳位置的季节性变化在变化中占很大比例。 Penman-Monteith蒸腾模型的敏感性分析表明,当冠层反射率在测量值的季节范围内变化时,单个树木的用水量最多可变化13%。这表明树木用水的季节变化影响了冠层反射率的季节趋势。因此,监测柑桔树冠的反射率可以提供有关树木水状况的信息。为了测试这一点,将树木吸收和损失的汁液流量数据与冠层光谱进行了比较。汁液流量数据显示,柑橘树严重依赖内部储存的水,当土壤水有限时,每天从树的内部蓄水池中抽出的总日蒸发量高达25%。使用基于以两个和最多四个光谱带为中心的冠层反射率的一阶导数的光谱指数检测内部存储水的这种消耗,从而检测树木水状态的变化。我们得出的结论是,即使柑桔树是常绿的,它们的树冠反射率一年四季也会发生显着变化,这对树木的能量平衡和用水有很大影响。此外,内部存储的水对每日蒸腾作用的贡献可能是可通过冠层反射率变化检测到的柑橘树干旱胁迫的指标,并且它在利用冠层水平光谱信息进行灌溉计划中具有潜在的应用价值

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