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首页> 外文期刊>Geoscientific Model Development >Representation of fire, land-use change and vegetation dynamics in the Joint UK Land Environment Simulator vn4.9 (JULES)
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Representation of fire, land-use change and vegetation dynamics in the Joint UK Land Environment Simulator vn4.9 (JULES)

机译:英国联合土地环境模拟器vn4.9(JULES)中火灾,土地用途变化和植被动态的表示

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Disturbance of vegetation is a critical component of land cover, but is generally poorly constrained in land surface and carbon cycle models. In particular, land-use change and fire can be treated as large-scale disturbances without full representation of their underlying complexities and interactions. Here we describe developments to the land surface model JULES (Joint UK Land Environment Simulator) to represent land-use change and fire as distinct processes which interact with simulated vegetation dynamics. We couple the fire model INFERNO (INteractive Fire and Emission algoRithm for Natural envirOnments) to dynamic vegetation within JULES and use the HYDE (History Database of the Global Environment) land cover dataset to analyse the impact of land-use change on the simulation of present day vegetation. We evaluate the inclusion of land use and fire disturbance against standard benchmarks. Using the Manhattan metric, results show improved simulation of vegetation cover across all observed datasets. Overall, disturbance improves the simulation of vegetation cover by 35?% compared to vegetation continuous field (VCF) observations from MODIS and 13?% compared to the Climate Change Initiative (CCI) from the ESA. Biases in grass extent are reduced from ?66 % to 13?%. Total woody cover improves by 55?% compared to VCF and 20?% compared to CCI from a reduction in forest extent in the tropics, although simulated tree cover is now too sparse in some areas. Explicitly modelling fire and land use generally decreases tree and shrub cover and increases grasses. The results show that the disturbances provide important contributions to the realistic modelling of vegetation on a global scale, although in some areas fire and land use together result in too much disturbance. This work provides a substantial contribution towards representing the full complexity and interactions between land-use change and fire that could be used in Earth system models.
机译:植被扰动是土地覆盖的重要组成部分,但在地表和碳循环模型中通常受约束较弱。特别是,土地使用的变化和火灾可以被视为大规模的干扰,而不能完全反映其潜在的复杂性和相互作用。在这里,我们描述了土地表面模型JULES(联合英国土地环境模拟器)的发展,以将土地利用变化和火灾表示为与模拟植被动态相互作用的不同过程。我们将火灾模型INFERNO(自然环境的交互式火和排放算法)与JULES内的动态植被耦合,并使用HYDE(全球环境历史数据库)土地覆盖数据集来分析土地利用变化对当前模拟的影响一天的植被。我们根据标准基准评估土地使用和火灾干扰的范围。使用曼哈顿度量标准,结果显示所有观察到的数据集的植被覆盖度模拟得到改善。总体而言,与MODIS的植被连续场(VCF)观测相比,扰动使植被覆盖模拟提高了35%,与ESA的气候变化倡议(CCI)相比,扰动使植被覆盖模拟提高了13%。草丛中的偏差从66%降低到13%。由于热带地区森林面积的减少,总的树木覆盖率比VCF提高了55%,与CCI相比提高了20%,尽管现在某些地区的模拟树木覆盖率太少了。明确模拟火灾和土地利用通常会减少树木和灌木的覆盖面积,并增加草皮。结果表明,尽管在某些地区,火灾和土地使用共同导致了太多的干扰,但这些干扰为全球范围内的真实植被建模提供了重要的贡献。这项工作为表示地球系统模型中可能使用的土地利用变化与火灾之间的复杂性和相互作用提供了实质性的贡献。

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