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Parameter sensitivity analysis of a 1-D cold region lake model for land-surface schemes

机译:陆地方案1-D冷区湖模型的参数灵敏度分析

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摘要

Lakes might be sentinels of climate change, but the uncertainty in their main feedback to the atmosphere heat- exchange fluxes - is often not considered within climate models. Additionally, these fluxes are seldom measured, hindering critical evaluation of model output. Analysis of the Canadian Small Lake Model (CSLM), a one-dimensional integral lake model, was performed to assess its ability to reproduce diurnal and seasonal variations in heat fluxes and the sensitivity of simulated fluxes to changes in model parameters, i.e., turbulent transport parameters and the light extinction coefficient (K-d). A C++ open-source software package, Problem Solving environment for Uncertainty Analysis and Design Exploration (PSUADE), was used to perform sensitivity analysis (SA) and identify the parameters that dominate model behavior. The generalized likelihood uncertainty estimation (GLUE) was applied to quantify the fluxes' uncertainty, comparing daily-averaged eddy-covariance observations to the output of CSLM. Seven qualitative and two quantitative SA methods were tested, and the posterior likelihoods of the modeled parameters, obtained from the GLUE analysis, were used to determine the dominant parameters and the uncertainty in the modeled fluxes. Despite the ubiquity of the equifinality issue - different parameter-value combinations yielding equivalent results-the answer to the question was unequivocal: K-d, a measure of how much light penetrates the lake, dominates sensible and latent heat fluxes, and the uncertainty in their estimates is strongly related to the accuracy with which K-d is determined. This is important since accurate and continuous measurements of K-d could reduce modeling uncertainty.
机译:湖泊可能是气候变化的哨兵,但其主要反馈的不确定性在气候模型中往往不考虑在气候中的热交换势态。另外,这些助焊剂很少测量,妨碍了模型输出的关键评估。对加拿大小湖模型(CSLM),一维整体湖模型进行分析,以评估其在热通量的昼夜繁殖和季节变化以及模拟通量的敏感性,以对模型参数的变化,即湍流运输的能力参数和光消光系数(KD)。用于不确定分析和设计探索的C ++开源软件包,解决环境求解环境(Psuade),用于执行灵敏度分析(SA)并确定主导模型行为的参数。应用广泛的似然不确定性估计(胶水)来量化助焊剂的不确定性,将每日平均涡流观察结果与CSLM的输出相比。测试了七种定性和两种定量的SA方法,并且从胶水分析中获得的建模参数的后似似的似然用于确定模拟助熔剂中的显性参数和不确定性。尽管有足够的平原问题 - 不同的参数价值组合,但产生了等效结果 - 问题的答案是明确的:KD,衡量光线渗透湖的衡量标准,占据了明智的和潜热通量,以及他们估计的不确定性与确定KD的准确性强烈相关。这是重要的,因为K-D的精确和连续测量可以降低建模不确定性。

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  • 来源
    《Hydrology and Earth System Sciences》 |2017年第12期|共18页
  • 作者单位

    Natl Hydrol Res Ctr Global Inst Water Secur 11 Innovat Blvd Saskatoon SK Canada;

    Natl Hydrol Res Ctr Global Inst Water Secur 11 Innovat Blvd Saskatoon SK Canada;

    Natl Hydrol Res Ctr Global Inst Water Secur 11 Innovat Blvd Saskatoon SK Canada;

    Environm &

    Climate Change Canada Sci &

    Technol Branch 4905 Dufferin Str Toronto ON M3H 5T4 Canada;

    Environm &

    Climate Change Canada Sci &

    Technol Branch 11 Innovat Blvd Saskatoon SK Canada;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 水文科学(水界物理学);
  • 关键词

  • 入库时间 2022-08-20 08:10:36

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