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首页> 外文期刊>Journal of hydrologic engineering >Simulating Transient Sediment Waves in Aggraded Alluvial Channels by Double-Decomposition Method
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Simulating Transient Sediment Waves in Aggraded Alluvial Channels by Double-Decomposition Method

机译:用双分解法模拟冲积河道中的瞬时泥沙波

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By using the double-decomposition (DD) method, this study simulates transient sediment waves caused by aggradation described by a diffusion-type partial differential equation (PDE). The DD method solves the PDE by decomposing the solution function for sediment rate into a summation of M number of components, where M stands for the order of approximation. The solution was approximated by considering only the first three terms. The model satisfactorily simulated laboratory-measured aggradation bed profiles with, on average, a mean absolute error (MAE) of 0.70 cm, a root-mean-square error (RMSE) of 0.84 cm, a mean relative error (MRE) of 1.11 %, and R~2 = 0.95. The model performance was also tested by using numerical and error-function solutions. In addition, the results obtained from application of the DD solution to hypothetical field cases were found to be theoretically compatible with what may be observed in natural streams. However, sediment wave fronts in later periods of the simulation time reached equilibrium bed levels more quickly, around in the middle section of the channel.
机译:通过使用双分解(DD)方法,本研究模拟了由扩散型偏微分方程(PDE)描述的由凝结引起的瞬态泥沙波。 DD方法通过将沉积速率的解函数分解为M个分量的总和来求解PDE,其中M表示近似阶数。通过仅考虑前三个项来近似解决方案。该模型令人满意地模拟了实验室测得的凝结床剖面,平均绝对误差(MAE)为0.70 cm,均方根误差(RMSE)为0.84 cm,平均相对误差(MRE)为1.11% ,R〜2 = 0.95。还使用数值和误差函数解决方案测试了模型性能。此外,发现将DD解决方案应用于假设的现场案例所获得的结果在理论上与在自然流中观察到的结果是相容的。但是,在模拟时间后期,沉积物波前在通道中部附近达到平衡床水位的速度更快。

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