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A data‐based mechanistic modelling (DBM) approach to understanding dynamic sediment transmission through Wyresdale Park Reservoir, Lancashire, UK

机译:一种基于数据的机械模型(DBM)方法,用于了解英国兰开夏郡Wyresdale公园水库的动态泥沙传播

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This paper outlines the application of a new data-based mechanistic (DBM) modelling methodology to the characterization of the sediment transmission dynamics in a small upland reservoir, Wyresdale Park, Lancashire. The DBM modelling strategy exploits advanced statistical procedures to infer the dynamic model structure and its associated parameters directly from the instrumented data, producing a parametrically efficient, continuous time, transfer function model which relates suspended sediment load at the reservoir inflow to the outflow at the event scale. The associated differential equation model parameters have physical attributes which can be interpreted in terms of sediment transmission processes and associated reservoir trap efficiency. Sedigraph analysis suggests that wind-induced resuspension episodically supplies an additional load to the reservoir outlet. The stochastic nature of the DBM model makes it ideal for evaluating the effects of uncertainty through Monte Carlo simulations (MCS) for discharge and sediment transmission. Copyright © 2000 John Wiley & Sons, Ltd.
机译:本文概述了一种新的基于数据的机械模型(DBM)建模方法在表征兰开夏郡Wyresdale Park小型陆地水库中泥沙传输动力学特征中的应用。 DBM建模策略利用先进的统计程序直接从仪器数据中推断出动态模型结构及其相关参数,从而生成参数有效,连续时间的传递函数模型,该模型将储层入流处的悬浮泥沙负荷与事件发生时的出流相关联规模。相关的微分方程模型参数具有可以根据沉积物传输过程和相关的储集层捕集效率来解释的物理属性。沉降图分析表明,风引起的悬浮运动向水库出口提供了额外的负荷。 DBM模型的随机性使其非常适合通过蒙特卡洛模拟(MCS)评估排放和沉积物传输的不确定性影响。版权所有©2000 John Wiley&Sons,Ltd.

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