Estimating the stability of a bed protection of a weir-mounted tidal turbine

Q3 Engineering International Marine Energy Journal Pub Date : 2020-05-13 DOI:10.36688/IMEJ.3.21-24
M. Verbeek, R. Labeur, W. Uijttewaal
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引用次数: 1

Abstract

Coastal infrastructure, such as bridges and storm surge barriers with weirs, provides an attractive location for harvesting renewable energy using tidal turbines. Often stone layers are applied downstream of coastal infrastructure to protect the sea bed from erosion. However, little is known about the potential effect of tidal energy extraction on the stability of this granular bed protection. This paper describes a study of the flow conditions influencing the stability of the bed protection downstream of a weir-mounted tidal turbine, using hydrodynamic data of an experimental test. The analysis indicates that the flow recirculation zone downstream of a weir may become shorter and flatter due to the presence of a horizontal-axis turbine. As a result, energetic turbulence eddies can transport more horizontal momentum towards the bed – hence the reason a heavier bed protection may be required for granular beds downstream of weirs when a turbine is installed. This information is essential when designing safe bed protections for coastal infrastructure with tidal turbines.
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堰式潮汐涡轮机河床保护的稳定性评估
沿海基础设施,如桥梁和带堰的风暴潮屏障,为使用潮汐涡轮机收集可再生能源提供了一个有吸引力的位置。通常在沿海基础设施的下游铺设石层,以保护海床免受侵蚀。然而,人们对潮汐能提取对这种颗粒床保护的稳定性的潜在影响知之甚少。本文利用实验试验的流体动力学数据,研究了影响堰式潮汐涡轮机下游护床稳定性的流动条件。分析表明,由于存在水平轴涡轮机,堰下游的流量再循环区可能会变得更短、更平坦。因此,高能湍流涡流可以向河床输送更多的水平动量——因此,当安装涡轮机时,堰下游的颗粒床可能需要更重的河床保护。在设计潮汐涡轮机沿海基础设施的安全河床保护时,这些信息至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
International Marine Energy Journal
International Marine Energy Journal Engineering-Ocean Engineering
CiteScore
1.70
自引率
0.00%
发文量
24
审稿时长
12 weeks
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