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首页> 外文期刊>Earth System Science Data Discussions >Use of various remote sensing land cover products for plant functional type mapping over Siberia
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Use of various remote sensing land cover products for plant functional type mapping over Siberia

机译:将各种遥感土地覆盖产品用于西伯利亚的工厂功能类型映射

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High-latitude ecosystems play an important role in the global carbon cycle and in regulating the climate system and are presently undergoing rapid environmental change. Accurate land cover data sets are required to both document these changes as well as to provide land-surface information for benchmarking and initializing Earth system models. Earth system models also require specific land cover classification systems based on plant functional types (PFTs), rather than species or ecosystems, and so post-processing of existing land cover data is often required. This study compares over Siberia, multiple land cover data sets against one another and with auxiliary data to identify key uncertainties that contribute to variability in PFT classifications that would introduce errors in Earth system modeling. Land cover classification systems from GLC 2000, GlobCover 2005 and 2009, and MODIS collections 5 and 5.1 are first aggregated to a common legend, and then compared to high-resolution land cover classification systems, vegetation continuous fields (MODIS VCFs) and satellite-derived tree heights (to discriminate against sparse, shrub, and forest vegetation). The GlobCover data set, with a lower threshold for tree cover and taller tree heights and a better spatial resolution, tends to have better distributions of tree cover compared to high-resolution data. It has therefore been chosen to build new PFT maps for the ORCHIDEE land surface model at 1 km scale. Compared to the original PFT data set, the new PFT maps based on GlobCover 2005 and an updated cross-walking approach mainly differ in the characterization of forests and degree of tree cover. The partition of grasslands and bare soils now appears more realistic compared with ground truth data. This new vegetation map provides a framework for further development of new PFTs in the ORCHIDEE model like shrubs, lichens and mosses, to represent the water and carbon cycles in northern latitudes better. Updated land cover data sets are critical for improving and maintaining the relevance of Earth system models for assessing climate and human impacts on biogeochemistry and biophysics. The new PFT map at 5 km scale is available for download from the PANGAEA website at 10.1594/PANGAEA.810709.
机译:高纬度生态系统在全球碳循环和调节气候系统中发挥着重要作用,目前正在经历快速的环境变化。需要准确的土地覆盖数据集来记录这些变化以及提供基准和初始化地球系统模型的土地表面信息。地球系统模型还需要基于植物功能类型(PFT)而非物种或生态系统的特定土地覆被分类系统,因此通常需要对现有土地覆被数据进行后处理。这项研究比较了西伯利亚的多个土地覆盖数据集和辅助数据,以识别导致PFT分类变异的关键不确定因素,这些不确定因素会在地球系统建模中引入误差。首先将GLC 2000,GlobCover 2005和2009以及MODIS集合5和5.1的土地覆盖分类系统汇总为一个共同的图例,然后将其与高分辨率的土地覆盖分类系统,植被连续域(MODIS VCF)和人造卫星进行比较树高(区分稀疏,灌木和森林植被)。 GlobCover数据集具有较低的树木覆盖率阈值,较高的树木高度和更好的空间分辨率,与高分辨率数据相比,它倾向于具有更好的树木覆盖率分布。因此,已选择为ORCHIDEE地表模型以1 km的比例尺构建新的PFT地图。与原始PFT数据集相比,基于GlobCover 2005的新PFT映射和更新的人行横道方法主要在森林特征和树木覆盖度方面有所不同。与地面真实数据相比,草原和裸露的土壤现在显得更加现实。这张新的植被图为进一步开发ORCHIDEE模型中的新PFT(例如灌木,地衣和苔藓)提供了框架,以更好地表示北纬地区的水和碳循环。更新的土地覆盖数据集对于改善和保持地球系统模型的相关性至关重要,该模型对于评估气候和人类对生物地球化学和生物物理学的影响是至关重要的。可从PANGEA网站(10.1594 / PANGAEA.810709)下载5公里比例的新PFT地图。

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