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Advantages of an innovative vertical breakwater with an overtopping wave energy converter

机译:创新垂直防堤的优点,具有泛型波能量转换器

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摘要

This paper presents an innovative vertical breakwater cross-section integrating an overtopping wave energy converter, named OBREC-V, and the analysis of its hydraulic performance and stability response to hydraulic loading. The structure is composed of a vertically-faced caisson with a sloping ramp on the top, a reservoir and a set-back crown-wall. The analysis of the structure is carried out by performing numerical simulations based on the Volume-Averaged Reynolds Averaged Navier-Stokes (VARANS) equations. The numerical simulations are performed to compare the performance of a traditional and innovative vertical caissons under the action of irregular waves, in terms of wave reflection, overtopping and wave acting forces. Results show that the reflection coefficients are lower than those computed in front of the traditional breakwater, with a reduction of up to the 40%. New formulations are proposed to better estimate the reflection coefficient and the wave overtopping at the rear side of the structure taking into account the non-conventional geometry of the device. The analysis of the forces indicate that the non-conventional geometry of the innovative OBREC-caisson increases the overall stability of the structure. The values of the safety factor against sliding, C-s, on innovative caissons are similar or greater than those calculated on the traditional vertical structure for almost all the tests. The downward force on the ramp and reservoir and the time lag between the vertical and horizontal forces, lead to a significant reduction of the maximum destabilizing forces F-s in the innovative breakwater, whose values range between 60 and 80% of the ones computed on the traditional structure. The obtained results show the co-benefits, in terms of functionality and hydraulic stability, that an OBREC-V entails with respect to a traditional vertical breakwater.
机译:本文介绍了一种创新的垂直防波堤横截面,整合了一个名为OBREC-V的转换波能量转换器,以及对液压荷载的液压性能和稳定性响应分析。该结构由垂直面的沉箱组成,顶部倾斜斜坡,储存器和嵌入冠壁。通过基于体积平均雷诺平均的Navier-Stokes(varans)方程,通过执行数值模拟来执行结构的分析。在波反射,转换和波动力方面,执行数值模拟以比较在不规则波的作用下传统和创新垂直沉箱的性能。结果表明,反射系数低于传统防波堤前面计算的重量系数,减少了40%。考虑到装置的非传统几何形状,提出了更好地估计在结构后侧的反射系数和波浪在结构后侧估计的反射系数和波浪。对力的分析表明,创新的OBREC-CAISSON的非传统几何形状增加了结构的整体稳定性。用于滑动的安全系数C-S在创新的沉箱上的值类似于或大于几乎所有测试的传统垂直结构计算的值。坡道和储存器上的向下力以及垂直和水平力之间的时间延迟,导致创新防波堤中最大稳定力FS的显着降低,其值范围在传统上计算的60%至80%之间的值范围结构体。所获得的结果表明,在功能和液压稳定性方面,该结果表明了OBREC-V关于传统的垂直防波堤的共同益处。

著录项

  • 来源
    《Coastal engineering》 |2020年第8期|103713.1-103713.17|共17页
  • 作者单位

    Univ Campania Luigi Vanvitelli Dipartimento Ingn Via Roma 29 I-81031 Aversa Italy;

    Univ Cantabria IHCantabria Inst Hidraul Ambiental C Isabel Torres 15 Santander 39011 Spain;

    Univ Cantabria IHCantabria Inst Hidraul Ambiental C Isabel Torres 15 Santander 39011 Spain;

    Univ Cantabria IHCantabria Inst Hidraul Ambiental C Isabel Torres 15 Santander 39011 Spain;

    Univ Campania Luigi Vanvitelli Dipartimento Ingn Via Roma 29 I-81031 Aversa Italy;

    Univ Campania Luigi Vanvitelli Dipartimento Ingn Via Roma 29 I-81031 Aversa Italy|CNR INM Inst Marine Engn Via Vallerano 139 I-00128 Rome Italy;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Innovative breakwater; Numerical analysis; Hydraulic performance; Stability analysis;

    机译:创新防波堤;数值分析;液压性能;稳定性分析;

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