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ESTIMATING NET ECOSYSTEM EXCHANGE OF CARBON USING THE NORMALIZED DIFFERENCE VEGETATION INDEX AND AN ECOSYSTEM MODEL

机译:利用归一化差异植被指数和生态系统模型估算碳的净生态系统交换

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摘要

The evaluation and prediction of changes in carbon dynamics at the ecosystem level is a key issue in studies of global change. An operational concept for the determination of carbon fluxes for the Belgian territory is the goal of the presented study. The approach is based on the integration of remotely sensed data into ecosystem models in order to evaluate photosynthetic assimilation and net ecosystem exchange (NEE). Remote sensing can be developed as an operational tool to determine the fraction of absorbed photosynthetically active radiation (fPAR). A review of the methodological approach of mapping fPAR dynamics at tile regional scale by means of NOAA11-AVHRR/2 data for the year 1990 is given. The processing sequence from raw radiance values to fPAR is presented. An interesting aspect of incorporating remote sensing derived fPAR in ecosystem models is the potential for modeling actual as opposed to potential vegetation. Further work should prove whether the concepts presented and the assumptions made in this study are valid. [References: 32]
机译:在生态系统一级评估和预测碳动态变化是全球变化研究中的关键问题。本研究的目标是确定比利时领土的碳通量的操作概念。该方法基于将遥感数据集成到生态系统模型中,以评估光合作用和净生态系统交换(NEE)。可以将遥感开发为一种操作工具,以确定吸收的光合有效辐射(fPAR)的比例。回顾了1990年通过NOAA11-AVHRR / 2数据在区域尺度上绘制fPAR动态的方法学方法。给出了从原始辐射值到fPAR的处理顺序。将遥感派生的fPAR纳入生态系统模型的一个有趣方面是潜在建模的潜力,而非潜在植被的潜力。进一步的工作应证明本研究中提出的概念和假设是否有效。 [参考:32]

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