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A new parameterisation for runup on gravel beaches

机译:用于砾石海滩的新参数化

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Video derived runup statistics from ten separate deployments at six field sites have been used to develop a new parameterisation for the prediction of runup of runup on gravel beaches. These data were collected over a 2-year period under energetic storm conditions with significant wave heights of H-s = 1-8 m from gravel beaches and barriers composed of fine gravel (D-50 = 2 mm) to large pebbles (D-50 =160 mm). An additional data set was generated using the numerical model XBeach-G, developed specifically for gravel beaches, and this synthetic dataset was used to further explore the role of hydrodynamic and morphological parameters on wave runup. A runup equation was developed using the synthetic data set and validated using the field data. The four parameters in this equation are, in decreasing order of importance, significant deep water wave height (H-s), spectral mean period (T-m - 1,T-0), beach slope (tan beta) and grain size (D-50). The new gravel beach runup equation was found to fit the synthetic data set and the field data extremely well (r(2) = 0.97 and 0.89, respectively) and the new equation performs significantly better than existing runup equations, even those specifically developed for gravel beaches. (C) 2016 The Authors. Published by Elsevier B.V.
机译:来自六个现场站点的十个独立部署的视频导出的运行统计数据已用于开发新的参数化,以预测砾石海滩上的运行速度。这些数据是在高能暴风雨条件下,从砾石滩和由细砾石(D-50 = 2 mm)到大卵石(D-50 = 160毫米)。使用专门为砾石海滩开发的数值模型XBeach-G生成了一个附加数据集,该合成数据集用于进一步探索流体动力学和形态学参数在波浪传播中的作用。使用综合数据集开发了运行方程,并使用现场数据进行了验证。该方程式中的四个参数按重要性从高到低的顺序依次为深水波高(Hs),光谱平均周期(Tm-1,T-0),滩坡(tan beta)和晶粒尺寸(D-50)。 。发现新的砾石滩面加速方程非常适合合成数据集和现场数据(分别为r(2)= 0.97和0.89),并且新方程的性能明显优于现有的加速方程,即使是专门为砾石开发的方程也是如此。海滩。 (C)2016作者。由Elsevier B.V.发布

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