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首页> 外文期刊>The Science of the Total Environment >A modelling approach for offshore wind farm feasibility with respect to ecosystem-based marine spatial planning
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A modelling approach for offshore wind farm feasibility with respect to ecosystem-based marine spatial planning

机译:基于生态系统的海洋空间规划的海上风电场可行性建模方法

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Demand for renewable energy is increasing steadily and regulated by national and international policies. Offshore wind energy sector has been clearly the fastest in its development among other options, and development of new wind farms requires large ocean space. Therefore, there is a need of efficient spatial planning process, including the site selection constrained by technical (wind resource, coastal distance, seafloor) and environmental (impacts) factors and competence of uses. We present a novel approach, using Bayesian Belief Networks (BBN), for an integrated spatially explicit site feasibility identification for offshore wind farms. Our objectives are to: (i) develop a spatially explicit model that integrates the technical, economic, environmental and social dimensions; (ii) operationalize the BBN model; (iii) implement the model at local (Basque Country) and regional (North East Atlantic and Western Mediterranean), and (iv) develop and analyse future scenarios for wind farm installation in a local case study. Results demonstrated a total of 1% (23 km(2)) of moderate feasibility areas in local scaled analysis, compared to 4% of (21,600 km(2)) very high, and 5% (30,000 km(2)) of high feasibility in larger scale analysis. The main challenges were data availability and discretization when trying to expand the model from local to regional level. The use of BBN models to determine the feasibility of offshore wind farm areas has been demonstrated adequate and possible, both at local and regional scales, allowing managers to take management decisions regarding marine spatial planning when including different activities, environmental problems and technological constraints. (C) 2019 Elsevier B.V. All rights reserved.
机译:对可再生能源的需求正在稳定增长,并受到国家和国际政策的管制。在其他选择中,海上风能行业显然是发展最快的,新风电场的开发需要广阔的海洋空间。因此,需要一种有效的空间规划过程,包括受技术(风力资源,沿海距离,海底)和环境(影响)因素以及使用能力限制的选址。我们提出一种新颖的方法,使用贝叶斯信念网络(BBN),对海上风电场进行综合的空间显式站点可行性识别。我们的目标是:(i)建立一个在空间上明确的模型,该模型整合了技术,经济,环境和社会方面; (ii)实施BBN模型; (iii)在当地(巴斯克地区)和地区(东北大西洋和地中海西部)实施该模型,并且(iv)在本地案例研究中开发和分析风电场安装的未来方案。结果表明,在局部规模分析中,中度可行性区域总计为1%(23 km(2)),相比之下,极高的(21,600 km(2))为4%,而极高的5%(30,000 km(2))大规模分析的可行性。尝试将模型从本地扩展到区域时,主要挑战是数据可用性和离散化。事实证明,在地方和区域范围内,使用BBN模型确定海上风电场区域的可行性是充分和可能的,从而允许管理人员在包括不同活动,环境问题和技术约束时就海洋空间规划做出管理决策。 (C)2019 Elsevier B.V.保留所有权利。

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