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An integrated tool for modelling oscillating water column (OWC) wave energy converters (WEC) in vertical breakwaters

机译:用于模拟垂直防波堤中的振荡水柱(OWC)波能转换器(WEC)的集成工具

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摘要

This paper describes the preliminary developments of an innovative integrated tool for the numerical modelling of oscillating water column (OWC) wave energy converters ('NEC) integrated in vertical breakwaters. The main purpose of the tool is the numerical modelling of wave propagation from offshore to nearshore, wave-structure interaction, and the complex nonlinear hydrodynamic and aerodynamic phenomena that occur in OWC-WECs. The tool development and validation were supported by experimental data from physical model tests carried out in a wave flume at the Portuguese National Laboratory for Civil Engineering (LNEC). Prototype data were also available for the Pico OWC-WEC in the Azores, Portugal, monitored by the Portuguese Wave Energy Centre since 2005. Application of the tool for sea-wave characterization at the Azores archipelago and calculation of the corresponding wave power for a period of 10 years at various points around each island show that, in winter, there is good availability of wave energy in most quadrants of each island. In summer, the resource exploitation is only worthwhile on the north-west coasts of the islands. Physical and numerical modelling results for an OWC with a fully open chamber show good agreement between experimental data and numerical values for several incident wave conditions. The analysed results include the time series of the free-surface elevation at different locations, the time series of the mean free surface inside the water chamber, the amplification factors, the phase angles and the velocity vectors at the highest and the lowest positions of the mean free surface inside the chamber. The tool showed its potential to be useful in supporting ocean and coastal engineering projects due to its capacity to effectively reproduce the main phenomena involved in these types of studies.
机译:本文介绍了用于集成在垂直防波堤中的振荡水柱(OWC)波能转换器('NEC)数值模拟的创新集成工具的初步开发。该工具的主要目的是对从近海到近岸的波传播,波结构相互作用以及OWC-WEC中发生的复杂的非线性流体动力和空气动力现象进行数值模拟。在葡萄牙国家土木工程国家实验室(LNEC)的波浪槽中进行的物理模型测试得到的实验数据为工具开发和验证提供了支持。自2005年以来,葡萄牙海浪能源中心一直在监测葡萄牙亚速尔群岛的Pico OWC-WEC的原型数据。该工具在亚速尔群岛中用于海浪表征的工具的使用,并计算了一段时间内的相应海浪功率每个岛屿周围各个点10年的观测表明,在冬季,每个岛屿的大多数象限都有良好的波浪能利用率。在夏季,仅在群岛的西北海岸才值得进行资源开发。具有完全开放腔室的OWC的物理和数值模拟结果表明,在几种入射波条件下,实验数据和数值之间具有良好的一致性。分析的结果包括不同位置的自由表面高程的时间序列,水室内平均自由表面的时间序列,放大系数,相角和速度矢量的最高和最低位置。腔室内的平均自由表面。由于该工具能够有效地重现这些类型的研究中涉及的主要现象,因此其在支持海洋和沿海工程项目方面显示出了潜力。

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  • 来源
    《Journal of hydro-environment research》 |2018年第3期|198-213|共16页
  • 作者单位

    Natl Lab Civil Engn LNEC, Hydraul & Environm Dept DHA, Harbours & Maritime Struct Div NPE, Av Brasil 101, P-1700066 Lisbon, Portugal;

    Natl Lab Civil Engn LNEC, Hydraul & Environm Dept DHA, Harbours & Maritime Struct Div NPE, Av Brasil 101, P-1700066 Lisbon, Portugal;

    Natl Lab Civil Engn LNEC, Hydraul & Environm Dept DHA, Harbours & Maritime Struct Div NPE, Av Brasil 101, P-1700066 Lisbon, Portugal;

    Natl Lab Civil Engn LNEC, Hydraul & Environm Dept DHA, Harbours & Maritime Struct Div NPE, Av Brasil 101, P-1700066 Lisbon, Portugal;

    Natl Lab Civil Engn LNEC, Hydraul & Environm Dept DHA, Harbours & Maritime Struct Div NPE, Av Brasil 101, P-1700066 Lisbon, Portugal;

    Natl Lab Civil Engn LNEC, Hydraul & Environm Dept DHA, Harbours & Maritime Struct Div NPE, Av Brasil 101, P-1700066 Lisbon, Portugal;

    Univ Nova Lisboa, UNIDEMI, FCT, Campus Caparica, P-2829516 Monte De Caparica, Portugal;

    Natl Lab Civil Engn LNEC, Hydraul & Environm Dept DHA, Harbours & Maritime Struct Div NPE, Av Brasil 101, P-1700066 Lisbon, Portugal;

    Univ Fed Rio Grande, Escola Engn, Ave Italia,Km 8,Campus Carreiros, BR-96203900 Rio Grande, RS, Brazil;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Oscillating water column (OWC) wave energy converter (WEC); Wave-structure interaction; Physical modelling; Nonlinear numerical modelling; SWAN-URANS models; Wave power;

    机译:振荡水柱(OWC)波能转换器(WEC);波结构相互作用;物理建模;非线性数值建模;SWAN-URANS模型;波功率;

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