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SURROGATE MODEL DEVELOPMENT FOR COASTAL DUNE EROSION UNDER STORM CONDITIONS

机译:风暴条件下沿海沙丘侵蚀的替代模型开发

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Early coastal dune erosion predictions are essential to avoid potential flood consequences but most dune erosion numerical models are computationally expensive, hence their application in Early Warning Systems is limited. Here, based on a combination of optimally sampled synthetic sea storms with a calibrated and validated XBeach model, we develop a surrogate model capable of producing fast and accurate dune erosion predictions under storm conditions when water level and wave forecasts are available. The analysis is performed on Dauphin Island, AL where we train Multiple Linear Regression Models with oceanographic forcing from the selected sea storms (i.e., XBeach input) and predicted changes in the dune system (i.e., XBeach output). Surrogate model performance is assessed with a rigorous k-fold cross validation. Although changes in the location of dune features are not well predicted, the model attains good performance when predicting changes in dune elevation, barrier-island width and area.
机译:早期的海岛沙丘侵蚀预测对于避免潜在的洪水后果至关重要,但大多数沙丘腐蚀数值模型是计算昂贵的,因此它们在预警系统中的应用是有限的。在这里,基于具有校准和验证的Xbeach模型的最佳采样的合成海洋风暴的组合,我们开发了一种替代模型,能够在水位和波预测下在风暴条件下产生快速和准确的沙丘侵蚀预测。在Dauphin Island上进行分析,其中我们培训了从选定的海洋风暴(即Xbeach输入)的海洋中学迫使多个线性回归模型,并预测了沙丘系统的变化(即,Xbeach输出)。替代模型性能被评估,严谨的K折叠交叉验证。虽然Dune特征的位置的变化不受欢迎,但在预测沙丘高程,屏障 - 岛屿宽度和区域的变化时,该模型的性能良好。

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