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The trade-off between tidal-turbine array yield and environmental impact: A habitat suitability modelling approach

机译:潮汐涡轮机发电量与环境影响之间的权衡:栖息地适应性建模方法

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In the drive towards a carbon-free society, tidal energy has the potential to become a valuable part of the UK energy supply. Developments are subject to intense scrutiny, and potential environmental impacts must be assessed. Unfortunately many of these impacts are still poorly understood, including the implications that come with altering the hydrodynamics. Here, methods are proposed to quantify ecological impact and to incorporate its minimisation into the array design process. Four tidal developments in the Pentland Firth are modelled with the array optimisation tool OpenTidalFarm, that designs arrays to generate the maximum possible profit. Maximum entropy modelling is used to create habitat suitability maps for species that respond to changes in bed-shear stress. Changes in habitat suitability caused by an altered tidal regime are assessed. OpenTidalFarm is adapted to simultaneously optimise array design to maximise both this habitat suitability and to maximise the profit of the array. The problem is thus posed as a multi-objective optimisation problem, and a set of Pareto solutions found, allowing trade-offs between these two objectives to be identified. The methods proposed generate array designs that have reduced negative impact, or even positive impact, on the habitat suitability of specific species or habitats of interest. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在迈向无碳社会的过程中,潮汐能有可能成为英国能源供应的重要组成部分。对开发进行严格审查,必须评估潜在的环境影响。不幸的是,对这些影响中的许多影响仍然知之甚少,包括随着流体动力学的改变而产生的影响。在这里,提出了量化生态影响并将其最小化纳入阵列设计过程的方法。使用阵列优化工具OpenTidalFarm对Pentland Firth的四个潮汐开发进行建模,该工具设计阵列以产生最大可能的利润。最大熵建模用于为响应床剪应力变化的物种创建栖息地适宜性图。评估了由潮汐变化引起的栖息地适应性变化。 OpenTidalFarm适用于同时优化阵列设计,以最大程度地提高栖息地的适应性并最大化阵列的利润。因此,该问题被视为多目标优化问题,并且找到了一组Pareto解决方案,从而可以确定这两个目标之间的折衷。提出的方法产生的阵列设计对特定物种或感兴趣的栖息地的栖息地适应性具有减少的负面影响,甚至减少了正面影响。 (C)2019 Elsevier Ltd.保留所有权利。

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