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A hierarchical analysis of terrestrial ecosystem model Biome-BGC: Equilibrium analysis and model calibration

机译:陆地生态系统模型Biome-BGC的层次分析:平衡分析和模型校准

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The increasing complexity of ecosystem models represents a major difficulty in tuning model parameters and analyzing simulated results. To address this problem, this study develops a hierarchical scheme that simplifies the Biome-BGC model into three functionally cascaded tiers and analyzes them sequentially. The first-tier model focuses on leaf-level ecophysiological processes; it simulates evapotranspiration and photosynthesis with prescribed leaf area index (LAI). The restriction on LAI is then lifted in the following two model tiers, which analyze how carbon and nitrogen is cycled at the whole-plant level (the second tier) and in all litter/soil pools (the third tier) to dynamically support the prescribed canopy. in particular, this study analyzes the steady state of these two model tiers by a set of equilibrium equations that are derived from Biome-BGC algorithms and are based on the principle of mass balance. Instead of spinning-up the model for thousands of climate years, these equations are able to estimate carbonitrogen stocks and fluxes of the target (steady-state) ecosystem directly from the results obtained by the first-tier model. The model hierarchy is examined with model experiments at four AmeriFlux sites. The results indicate that the proposed scheme can effectively calibrate Biome-BCC to simulate observed fluxes of evapotranspiration and photosynthesis; and the carbonitrogen stocks estimated by the equilibrium analysis approach are highly consistent with the results of model simulations. Therefore, the scheme developed in this study may serve as a practical guide to calibrate/analyze Biome-BGC; it also provides an efficient way to solve the problem of model spin-up, especially for applications over large regions. The same methodology may help analyze other similar ecosystem models as well.
机译:生态系统模型的复杂性日益增加,这是调节模型参数和分析模拟结果的主要困难。为了解决这个问题,本研究开发了一种层次结构的方案,该方案将Biome-BGC模型简化为三个功能级联的层,并对其进行了顺序分析。第一层模型侧重于叶片级的生态生理过程。它使用规定的叶面积指数(LAI)模拟蒸散和光合作用。然后,在以下两个模型层级中取消了对LAI的限制,这些层级分析了如何在整个工厂级别(第二层级)和所有垃圾/土壤池(第三层级)中循环利用碳和氮,以动态地支持规定的天篷。尤其是,本研究通过基于Biome-BGC算法并基于质量平衡原理的一组平衡方程来分析这两个模型层的稳态。这些方程式无需对数千个气候年的模型进行细化处理,而是可以直接根据第一层模型获得的结果来估算目标(稳态)生态系统的碳/氮储量和通量。在四个AmeriFlux站点通过模型实验检查模型层次。结果表明,该方案可以有效地校准Biome-BCC,以模拟观测到的蒸散通量和光合作用;平衡分析法估计的碳/氮储量与模型模拟的结果高度一致。因此,本研究开发的方案可作为校正/分析Biome-BGC的实用指南。它还提供了一种解决模型旋转问题的有效方法,特别是对于大区域的应用程序。相同的方法也可能有助于分析其他类似的生态系统模型。

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