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Parameter sensitivity and uncertainty analysis for a storm surge and wave model

机译:风暴潮和波浪模型的参数敏感性和不确定性分析

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Development and simulation of synthetic hurricane tracks is a common methodology used to estimate hurricane hazards in the absence of empirical coastal surge and wave observations. Such methods typically rely on numerical models to translate stochastically generated hurricane wind and pressure forcing into coastal surge and wave estimates. The model output uncertainty associated with selection of appropriate model parameters must therefore be addressed. The computational overburden of probabilistic surge hazard estimates is exacerbated by the high dimensionality of numerical surge and wave models. We present a model parameter sensitivity analysis of the Delft3D model for the simulation of hazards posed by Hurricane Bob (1991) utilizing three theoretical wind distributions (NWS23, modified Rankine, and Holland). The sensitive model parameters (of 11 total considered) include wind drag, the depth-induced breaking gamma B, and the bottom roughness. Several parameters show no sensitivity (threshold depth, eddy viscosity, wave triad parameters, and depth-induced breaking alpha B)and can therefore be excluded to reduce the computational overburden of probabilistic surge hazard estimates. The sensitive model parameters also demonstrate a large number of interactions between parameters and a nonlinear model response. While model outputs showed sensitivity to several parameters, the ability of these parameters to act as tuning parameters for calibration is somewhat limited as proper model calibration is strongly reliant on accurate wind and pressure forcing data. A comparison of the model performance with forcings from the different wind models is also presented.
机译:在没有经验的沿海浪潮和波浪观测的情况下,合成飓风航迹的开发和模拟是用于估算飓风危害的常用方法。此类方法通常依赖于数值模型将随机生成的飓风风和压力强迫转换为沿海潮汐和海浪估算。因此,必须解决与选择适当的模型参数相关的模型输出不确定性。数值波动和波动模型的高维性加剧了概率波动风险估计的计算负担。我们介绍了Delft3D模型的模型参数敏感性分析,用于利用三种理论风分布(NWS23,改良的Rankine和Holland)模拟飓风鲍勃(1991)造成的危害。敏感的模型参数(总共考虑了11个)包括风阻,深度引起的断裂伽玛B和底部粗糙度。几个参数没有显示敏感度(阈值深度,涡流粘度,三重轴参数和深度引起的断裂αB),因此可以将其排除以减少概率性喘振危险估计的计算负担。敏感的模型参数还显示出参数与非线性模型响应之间的大量交互作用。尽管模型输出显示出对多个参数的敏感性,但是这些参数用作校准调整参数的能力在一定程度上受到了限制,因为适当的模型校准强烈依赖于精确的风和压力强迫数据。还介绍了模型性能与来自不同风模型的强迫的比较。

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