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首页> 外文期刊>Ecological engineering: The Journal of Ecotechnology >Potential of MODIS data to track the variability in ecosystem water-use efficiency of temperate deciduous forests
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Potential of MODIS data to track the variability in ecosystem water-use efficiency of temperate deciduous forests

机译:MODIS数据追踪温带落叶林生态系统用水效率变化的潜力

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One of the most important linkage that coupled terrestrial carbon and water cycles is ecosystem water use efficiency (WUE), which is also relevant to the appropriate ecosystem management actions. The eddy covariance technique provides continuous observations of carbon and water fluxes at the landscape level, presenting an opportunity to infer ecosystem WUE at daily or annual time scales. Scaling up such measurements to regional or national scale, however, remains challenging. Few studies have been reported on direct estimation of WUE from remotely-sensed data, particularly the seasonal dynamics of forests. Therefore, this study aims to assess the potential of tracking the variability in WUE by exclusively using time-series MODIS data at 8 flux tower sites of temperate deciduous forests. Our analyses showed that the 8-day variations in WUE were mainly subject to control by temperature, solar radiation and vapor pressure deficit. As a proxy of plant response to the environmental controls, MODIS-derived vegetation index was found to strongly correlate with ecosystem WUE and could be used for remote quantification. Then, both performance of the indirect WUE estimated from MODIS GPP and ET products (WUEMOD) and the direct estimates from MODIS data using the calibrated temperature and greenness (TG) model were evaluated using tower-based measurements (WUEEc). In general, WUEEc was overly predicted at the start and end of the vegetation period and badly underestimated during the summertime by WUEMOD because of the discrepancy in GPPMOD. However, the proposed TG model provided substantially good estimates of ecosystem WUE in spite of lacking skills in monitoring summer troughs. Independent validation at four additional sites further certified the improvement, which provided a new framework for quantifying the seasonal variations in ecosystem WUE. (C) 2016 Elsevier B.V. All rights reserved.
机译:与陆地碳和水循环耦合的最重要的联系之一是生态系统用水效率(WUE),它也与适当的生态系统管理行动有关。涡度协方差技术可在景观水平上连续观察碳和水通量,为推断每天或每年时间尺度的生态系统WUE提供了机会。然而,将这种测量扩大到区域或国家规模仍然是挑战。鲜有关于从遥感数据直接估算WUE的研究报道,特别是森林的季节动态。因此,本研究旨在评估仅通过使用温带落叶林的8个通量塔站点上的时间序列MODIS数据来跟踪WUE变异的潜力。我们的分析表明,WUE的8天变化主要受温度,太阳辐射和蒸气压不足的控制。作为植物对环境控制的响应的代理,发现MODIS衍生的植被指数与生态系统WUE密切相关,可用于远程量化。然后,使用基于塔的测量(WUEEc)评估了从MODIS GPP和ET产品(WUEMOD)估计的间接WUE的性能,以及使用校准的温度和绿色度(TG)模型从MODIS数据直接估计的性能。通常,由于GPPMOD中的差异,在植被期的开始和结束时对WUEEc的预测过高,而在夏季,WUEMOD严重低估了WUEEc。然而,尽管缺乏监测夏季低谷的技能,但所提出的TG模型仍提供了对生态系统WUE的良好估算。在另外四个地点进行的独立验证进一步证明了这一改进,从而为量化生态系统WUE的季节性变化提供了新的框架。 (C)2016 Elsevier B.V.保留所有权利。

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