首页> 外文期刊>Journal of Marine Science and Engineering >Probabilistic Assessment of Overtopping of Sea Dikes with Foreshores including Infragravity Waves and Morphological Changes: Westkapelle Case Study
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Probabilistic Assessment of Overtopping of Sea Dikes with Foreshores including Infragravity Waves and Morphological Changes: Westkapelle Case Study

机译:包括次重力波和形态变化在内的沿海堤防突覆的概率评估:Westkapelle案例研究

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Shallow foreshores in front of coastal dikes can reduce the probability of dike failure due to wave overtopping. A probabilistic model framework is presented, which is capable of including complex hydrodynamics like infragravity waves, and morphological changes of a sandy foreshore during severe storms in the calculations of the probability of dike failure due to wave overtopping. The method is applied to a test case based on the Westkapelle sea defence in The Netherlands, a hybrid defence consisting of a dike with a sandy foreshore. The model framework consists of the process-based hydrological and morphological model XBeach, probabilistic overtopping equations (EurOtop) and the level III fully probabilistic method ADIS. By using the fully probabilistic level III method ADIS, the number of simulations necessary is greatly reduced, which allows for the use of more advanced and detailed hydro- and morphodynamic models. The framework is able to compute the probability of failure with up to 15 stochastic variables and is able to describe feasible physical processes. Furthermore, the framework is completely modular, which means that any model or equation can be plugged into the framework, whenever updated models with improved representation of the physics or increases in computational power become available. The model framework as described in this paper, includes more physical processes and stochastic variables in the determination of the probability of dike failure due to wave overtopping, compared to the currently used methods in The Netherlands. For the here considered case, the complex hydrodynamics like infragravity waves and wave set-up need to be included in the calculations, because they appeared to have a large influence on the probability of failure. Morphological changes of the foreshore during a severe storm appeared to have less influence on the probability of failure for this case. It is recommended to apply the framework to other cases as well, to determine if the effects of complex hydrodynamics as infragravity waves and morphological changes on the probability of sea dike failure due to wave overtopping as found in this paper hold for other cases as well. Furthermore, it is recommended to investigate broader use of the method, e.g., for safety assessment, reliability analysis and design.
机译:沿海堤防前的浅滩可减少由于波浪超载而导致堤防失败的可能性。提出了一个概率模型框架,该模型能够计算复杂的流体力学(如次重力波)以及在强风暴期间沙质前滨的形态变化,从而计算出因波浪翻覆而导致堤防失败的可能性。该方法应用于基于荷兰Westkapelle海上防御的测试用例,该防御是由堤防和前沙质地带组成的混合防御。该模型框架包括基于过程的水文和形态学模型XBeach,概率超支方程(EurOtop)和III级完全概率方法ADIS。通过使用完全概率的III级方法ADIS,所需的仿真次数大大减少,从而允许使用更高级和详细的流体动力学和形态动力学模型。该框架能够计算多达15个随机变量的故障概率,并且能够描述可行的物理过程。此外,该框架是完全模块化的,这意味着只要具有改进的物理表示或计算能力的更新模型可用,任何模型或方程式都可以插入到框架中。与荷兰目前使用的方法相比,本文中描述的模型框架在确定由于波浪超载而引起的堤防失败的可能性时,包括更多的物理过程和随机变量。对于这里考虑的情况,需要在计算中包括复杂的流体动力学,例如重力波和波浪建立,因为它们似乎对失效概率有很大影响。在强风暴期间,前滨的形态变化似乎对这种情况下的失败概率影响较小。建议将该框架也应用于其他情况,以确定如本文所述的复杂的水动力,如重力波和形态变化对波浪超顶引起的海堤破坏概率的影响是否也适用于其他情况。此外,建议调查该方法的广泛用途,例如用于安全评估,可靠性分析和设计。

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