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首页> 外文期刊>Remote Sensing of Environment: An Interdisciplinary Journal >Modeling gross primary production of alpine ecosystems in the Tibetan Plateau using MODIS images and climate data
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Modeling gross primary production of alpine ecosystems in the Tibetan Plateau using MODIS images and climate data

机译:利用MODIS影像和气候数据模拟青藏高原高山生态系统的初级生产总值

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The eddy covariance technique provides measurements of net ecosystem exchange (NEE) Of CO2 between the atmosphere and terrestrial ecosystems, which is widely used to estimate ecosystem respiration and gross primary production (GPP) at a number Of CO2 eddy flux tower sites. In this paper, canopy-level maximum light use efficiency, a key parameter in the satellite-based Vegetation Photosynthesis Model (VPM), was estimated by using the observed CO2 flux data and photosynthetically active radiation (PAR) data from eddy flux tower sites in an alpine swamp ecosystem, an alpine shrub ecosystem and an alpine meadow ecosystem in Qinghai-Tibetan Plateau, China. The VPM model uses two improved vegetation indices (Enhanced Vegetation Index (EVI), Land Surface Water Index (LSWI)) derived from the Moderate Resolution Imaging Spectral radiometer (MODIS) data and climate data at the flux tower sites, and estimated the seasonal dynamics of GPP of the three alpine grassland ecosystems in Qinghai-Tibetan Plateau. The seasonal dynamics of GPP predicted by the VPM model agreed well with estimated GPP from eddy flux towers. These results demonstrated the potential of the satellite-driven VPM model for scaling-up GPP of alpine grassland ecosystems, a key component for the study of the carbon cycle at regional and global scales. (c) 2006 Elsevier Inc. All rights reserved.
机译:涡度协方差技术提供了大气与陆地生态系统之间的净二氧化碳生态系统交换(NEE)的测量值,该方法被广泛用于估算许多CO2涡流塔站点的生态系统呼吸作用和初级总产值(GPP)。在本文中,通过使用观测到的来自涡流通量塔站点的CO2通量数据和光合有效辐射(PAR)数据,估算了基于卫星的植被光合作用模型(VPM)中的关键参数树冠级最大光利用效率。青藏高原的高寒沼泽生态系统,高寒灌木生态系统和高寒草甸生态系统。 VPM模型使用了两个改进的植被指数(增强植被指数(EVI),地表水指数(LSWI)),这些指数是通过中分辨率成像光谱辐射计(MODIS)数据和通量塔站点的气候数据得出的,并估算了季节动态青藏高原三个高寒草地生态系统GPP的变化VPM模型预测的GPP的季节动态与涡流塔估计的GPP吻合得很好。这些结果证明了卫星驱动的VPM模型在扩大高山草原生态系统GPP方面的潜力,这是研究区域和全球规模碳循环的关键组成部分。 (c)2006 Elsevier Inc.保留所有权利。

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