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The performance of a weir-mounted tidal turbine: An experimental investigation

机译:堰型潮汐涡轮机的性能:实验研究

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The tidal flow between bridge pillars and through open barriers is a promising source of ocean energy which can be exploited using tidal stream turbines, as proven recently by operational demonstration plants. The aim of this study is to clarify the consequences for the power output of tidal turbines when placing them in a hydraulic structure. To this end, experimental measurements of turbine power and wakes are performed, using a down-scaled turbine mounted at a submerged weir. The results are compared to an analytical model, validating its range of application for optimising turbine-weir geometries. The experimental data show that the power coefficient of the turbine can be increased by optimising the blockage of the channel and the distance between the turbine and the structure, which is related to the wake configuration. In this way, the power coefficient increased by 40% when the turbine was re-positioned from the upstream to the downstream end of the structure. The theoretical model could reproduce the measured power within 10% accuracy, proving its value as a rapid assessment tool. As such, this work advances the knowledge needed to meet targets on the transition towards renewable energy. (c) 2020 The Authors. Published by Elsevier Ltd. This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
机译:桥柱与开放障碍之间的潮流是海洋能源的有希望的来源,可以使用潮汐流涡轮机进行利用,如最近通过运营示范厂的证明。本研究的目的是阐明在将潮汐涡轮机中放置在液压结构时的电力输出的后果。为此,使用安装在浸没堰的下缩放的涡轮机进行涡轮机动力和唤醒的实验测量。将结果与分析模型进行比较,验证其用于优化涡轮堰几何形状的应用范围。实验数据表明,通过优化与唤醒配置有关的通道的堵塞和涡轮机与结构之间的距离可以增加涡轮机的功率系数。以这种方式,当涡轮机从结构的上游端部重新定位时,功率系数增加了40%。理论模型可以在10%的准确度以内再现测量功率,证明其作为快速评估工具的价值。因此,这项工作推进了满足转型对可再生能源的目标所需的知识。 (c)2020作者。由elsevier有限公司发布这是CC下的开放式访问文章(http://creativecommomons.org/licenses/by/4.0/)。

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