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Computational prediction of pressure change in the vicinity of tidal stream turbines and the consequences for fish survival rate

机译:潮流涡轮机附近压力变化的计算预测及其对鱼类成活率的影响

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The presence of Tidal Stream Turbines (TST) for tidal power production, leads to changes in the local physical environment that could affect fish. While other work has considered the implications with respect to conventional hydroelectric devices (i.e. hydroelectric dams), including studies such as physical impact with the rotors and pressure variation effects, this research considers the effects of sudden changes in pressure and turbulence on the hypothetical fish with respect to TSTs. Computational fluid dynamics (CFD) is used to investigate changes to the environment, and thus study the implications for fish. Two CFD methods are employed, an embedded Blade Element representation of the rotor in a RANS CFD model, and a blade resolved geometry using a moving reference frame. A new data interpretation approach is proposed as the primary source of environmental impact data; 'rate of change of pressure' with time along a streamtrace. This work also presents results for pressure, pressure gradients, shear rates and turbulence to draw conclusions about changes to the local physical environment. The assessment of the local impact is discussed in terms of the implications to individual fish passing a single or array of TST devices. (C) 2016 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:用于产生潮汐能的潮汐涡轮机(TST)的存在会导致当地自然环境的变化,从而可能影响鱼类。尽管其他工作已经考虑了与常规水力发电设备(即水力发电大坝)有关的影响,包括诸如对转子的物理影响和压力变化效应等研究,但这项研究考虑了压力和湍流突然变化对假想鱼的影响。关于TST。计算流体动力学(CFD)用于研究环境变化,从而研究对鱼类的影响。采用了两种CFD方法:在RANS CFD模型中嵌入转子的叶片元素表示,以及使用移动参考系的叶片解析几何。提出了一种新的数据解释方法,作为环境影响数据的主要来源;随着时间的流逝,“压力变化率”随时间变化。这项工作还提供了压力,压力梯度,剪切速率和湍流的结果,以得出有关当地物理环境变化的结论。根据对单个或多个TST设备通过单个鱼类的影响,讨论了对当地影响的评估。 (C)2016作者。由Elsevier Ltd.发布。这是CC BY许可下的开放访问文章(http://creativecommons.org/licenses/by/4.0/)。

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