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A new average wave overtopping prediction formula with improved accuracy for smooth steep low-crested structures

机译:一种新的平均波浪泛价预测公式,精度改善了光滑陡峭的低冠结构

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摘要

Wave overtopping is a key process in coastal protection and its assessment defines the design of the sea defence structures. An existing knowledge gap in wave overtopping prediction is identified for steep low-crested structures, i.e., structures with steep slopes up to the limit case of vertical structures, with small relative freeboards down to the limit case of zero freeboards. This type of structure is increasingly relevant in a sea level rise context due to climate change. Additionally, steep low-crested structures are also of interest when used as overtopping wave energy converters. To cover the identified knowledge gap, more than 900 2D hydraulic model tests have been performed in the wave flume of the Department of Civil Engineering at Ghent University. Wave conditions and the overtopping performance have been measured. After analysing the average overtopping rates of the new tests, we found that there is a lack of accuracy of the recommended EurOtop 2018 manual overtopping prediction formulae for steep low-crested structures. Based on the new tests, a new average overtopping prediction formula for steep low-crested structures is obtained. This formula improves the prediction accuracy of the average overtopping rates for steep low-crested structures with respect to the recommended predictions in the EurOtop 2018 manual by reducing the RMSE by 35% for zero freeboards, by 16% for very small relative freeboards, by 31% for very steep slopes and by 24% for vertical structures. The accuracy of the EurOtop 2018 manual for other structural is maintained.
机译:Wave Overpoping是沿海保护的关键过程,其评估定义了海防结构的设计。对于陡峭的低冠结构,即陡峭的低冠状结构,即垂直结构的极限情况,陡峭的结构,具有陡峭的壳体的结构,识别出陡峭的低冠的结构的现有知识间隙。由于气候变化,这种类型的结构在海平面上升背景下越来越重要。另外,当用作旧波能量转换器时,陡峭的低冠状结构也是如此感兴趣的。为了涵盖所确定的知识差距,在根特大学土木工程系的波浪水彩中进行了超过900个液压模型试验。衡量了波条件和拓展性能。在分析新测试的平均概述率之后,我们发现推荐的EuroTop 2018手册缺乏准确性,用于陡峭的低冠结构的预测预测公式。基于新测试,获得了陡峭的低冠结构的新的平均过度预测公式。该公式通过将RMSE减少35%的零空间,提高了陡峭的低冠形结构的平均概要速率的预测准确性,对于EuroTop 2018的推荐预测,对于零空间,对于非常小的相对收银器,对于非常小的相对收银器,达到31%对于非常陡峭的斜率和垂直结构的24%的%。维持EuroTop 2018手册的准确性,保持其他结构。

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