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Biophysics and vegetation cover change: a process-based evaluation framework for confronting land surface models with satellite observations

机译:生物物理学和植被覆盖变化:基于过程的评估框架,用于与卫星观测对峙的地表模型

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Abstract. Land use and land cover change (LULCC) alter the biophysical properties of the Earth's surface. The associated changes in vegetation cover can perturb the local surface energy balance, which in turn can affect the local climate. The sign and magnitude of this change in climate depends on the specific vegetation transition, its timing and its location, as well as on the background climate. Land surface models (LSMs) can be used to simulate such land–climate interactions and study their impact in past and future climates, but their capacity to model biophysical effects accurately across the globe remain unclear due to the complexity of the phenomena. Here we present a framework to evaluate the performance of such models with respect to a dedicated dataset derived from satellite remote sensing observations. Idealized simulations from four LSMs (JULES, ORCHIDEE, JSBACH and CLM) are combined with satellite observations to analyse the changes in radiative and turbulent fluxes caused by 15 specific vegetation cover transitions across geographic, seasonal and climatic gradients. The seasonal variation in net radiation associated with land cover change is the process that models capture best, whereas LSMs perform poorly when simulating spatial and climatic gradients of variation in latent, sensible and ground heat fluxes induced by land cover transitions. We expect that this analysis will help identify model limitations and prioritize efforts in model development as well as inform where consensus between model and observations is already met, ultimately helping to improve the robustness and consistency of model simulations to better inform land-based mitigation and adaptation policies. The dataset consisting of both harmonized model simulation and remote sensing estimations is available at https://doi.org/10.5281/zenodo.1182145.
机译:抽象。土地利用和土地覆被变化(LULCC)会改变地球表面的生物物理特性。植被覆盖的相关变化会扰乱当地的表面能平衡,进而影响当地的气候。气候变化的迹象和幅度取决于特定的植被过渡,时间和位置以及背景气候。地表模型(LSM)可用于模拟这种土地与气候的相互作用,并研究其在过去和未来气候中的影响,但是由于现象的复杂性,它们在全球范围内精确模拟生物物理效应的能力仍然不清楚。在这里,我们提供了一个框架,可根据卫星遥感观测数据导出的专用数据集评估此类模型的性能。将来自四个LSM(JULES,ORCHIDEE,JSBACH和CLM)的理想模拟与卫星观测结果相结合,以分析由15种特定的植被覆盖变化跨地理,季节和气候梯度引起的辐射通量和湍流通量的变化。与土地覆被变化相关的净辐射的季节性变化是模型捕获最好的过程,而当模拟由土地覆被过渡引起的潜热,感热和地面热通量变化的空间和气候梯度时,LSM的表现较差。我们希望这种分析将有助于确定模型局限性并确定模型开发的优先顺序,并告知模型和观测值之间已达成共识的地方,最终有助于改善模型模拟的鲁棒性和一致性,从而更好地为陆上减灾和适应提供信息政策。可在https://doi.org/10.5281/zenodo.1182145上获得由统一模型仿真和遥感估计组成的数据集。

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