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Remotely-sensed detection of effects of extreme droughts on gross primary production

机译:远程感测到极端干旱对主要生产效果的检测

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Severe droughts strongly impact photosynthesis (GPP), and satellite imagery has yet to demonstrate its ability to detect drought effects. Especially changes in vegetation functioning when vegetation state remains unaltered (no browning or defoliation) pose a challenge to satellite-derived indicators. We evaluated the performance of different satellite indicators to detect strong drought effects on GPP in a beech forest in France (Hesse), where vegetation state remained largely unaffected while GPP decreased substantially. We compared the results with three additional sites: a Mediterranean holm oak forest (Puéchabon), a temperate beech forest (Hainich), and a semi-arid grassland (Bugacpuszta). In Hesse, a three-year reduction in GPP following drought was detected only by the Enhanced Vegetation Index (EVI). The Photochemical Reflectance Index (PRI) also detected this drought effect, but only after normalization for absorbed light. In Puéchabon normalized PRI outperformed the other indicators, while the short-term drought effect in Hainich was not detected by any tested indicator. In contrast, most indicators, but not PRI, captured the drought effects in Bugacpuszta. Hence, PRI improved detection of drought effects on GPP in forests and we propose that PRI normalized for absorbed light is considered in future algorithms to estimate GPP from space.
机译:严重的干旱强烈影响光合作用(GPP),卫星图像尚未展示其检测干旱效应的能力。当植被状态仍然不妨碍时,植被功能的变化(无褐变或脱裂)对卫星衍生的指标构成挑战。我们评估了不同卫星指标的性能,以检测法国(Hesse)的山毛榉森林中GPP对GPP的强烈干旱影响,植被状态在大幅不受影响时,GPP大幅下降。我们将结果与三个其他地点进行了比较:地中海霍尔姆橡树林(Puéchabon),温带山毛榉森林(Hainich)和半干旱草原(Bugacpuszta)。在Hesse中,仅通过增强的植被指数(EVI)检测干旱后的GPP三年减少。光化学反射率指数(PRI)也检测到这种干旱效应,但仅在归一化后被吸收光线。在Puéchabon标准化PRI优于其他指标,而任何测试指标未检测到Hainizh中的短期干旱效果。相比之下,大多数指标,但不是pri,捕获了Bugacpuszta的干旱效果。因此,PRI改善了对森林中GPP的干旱影响的检测,我们提出了在未来算法中考虑用于吸收光的PRI,以估计GPP。

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