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The influence of canopy radiation parameter uncertainty on model projections of terrestrial carbon and energy cycling

机译:冠层辐射参数不确定性对地球碳和能量循环模型投影的影响

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摘要

Reducing uncertainties in Earth System Model predictions requires carefully evaluating core model processes. Here we examined how canopy radiative transfer model (RTM) parameter uncertainties, in combination with canopy structure, affect terrestrial carbon and energy projections in a demographic land-surface model, the Ecosystem Demography model (ED2). Our analyses focused on temperate deciduous forests and tested canopies of varying structural complexity. The results showed a strong sensitivity of tree productivity, albedo, and energy balance projections to RTM parameters. Impacts of radiative parameter uncertainty on stand-level canopy net primary productivity ranged from ~2 to > 20% and was most sensitive to canopy clumping and leaf reflectance/transmittance in the visible spectrum (~400–750 nm). ED2 canopy albedo varied by ~1 to ~10% and was most sensitive to near-infrared reflectance (~800–1200 nm). Bowen ratio, in turn, was most sensitive to wood optical properties parameterization; this was much larger than expected based on literature, suggesting model instabilities. In vertically and spatially complex canopies the model response to RTM parameterization may show an apparent reduced sensitivity when compared to simpler canopies, masking much larger changes occurring within the canopy. Our findings highlight both the importance of constraining canopy RTM parameters in models and valuating how the canopy structure responds to those parameter values. Finally, we advocate for more model evaluation, similar to this study, to highlight possible issues with model behavior or process representations, particularly models with demographic representations, and identify potential ways to inform and constrain model predictions.
机译:减少地球系统模型预测中的不确定性需要仔细评估核心模型过程。在这里,我们研究了树冠辐射传递模型(RTM)参数的不确定性,结合树冠结构,如何影响人口土地表面模型(生态系统人口统计学模型(ED2))中的陆地碳和能量投影。我们的分析重点是温带落叶林和结构复杂程度不同的经过测试的冠层。结果表明,树木生产力,反照率和能量平衡对RTM参数的预测非常敏感。辐射参数不确定性对林分冠层净初级生产力的影响范围从〜2到> 20%,并且对可见光谱(〜400–750 nm)中的冠层结块和叶片反射率/透射率最敏感。 ED2冠层反照率变化范围为〜1至〜10%,并且对近红外反射率(〜800–1200 nm)最敏感。反过来,鲍恩比对木材的光学性能参数设置最敏感;这比文献中的预期要大得多,这表明模型存在不稳定性。在垂直和空间复杂的树冠中,与简单树冠相比,对RTM参数化的模型响应可能会显示出明显的灵敏度降低,从而掩盖了树冠内部发生的更大变化。我们的发现既强调了在模型中限制冠层RTM参数的重要性,又评估了冠层结构如何响应这些参数值的重要性。最后,我们提倡与本研究类似的更多模型评估,以突出模型行为或过程表示形式(尤其是具有人口统计学表示形式的模型)可能出现的问题,并确定潜在的方法来告知和约束模型预测。

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