Bianchi M, Arnal A J, Astorkiza-Andres M, Clavell-Diaz J, Marques A, Isasa-Sarralde M
TECNALIA, Basque Research and Technology Alliance (BRTA), Astondo Bidea, Edificio700, E-48160, Derio, Bizkaia, Spain.
Magallanes Renovables S.L. Prego de Montaos, 7, 36800, Redondela, Pontevedra, Spain.
Heliyon. 2024 Jun 14;10(12):e32515. doi: 10.1016/j.heliyon.2024.e32515. eCollection 2024 Jun 30.
Ocean currents are emerging as key contributors to renewable energy generation. However, technologies for harvesting tidal current energy are still in the early stages of development. In this context, environmental and economic studies on tidal energy converters (TECs) are crucial to further advance tidal technology and facilitate its entry into the market. This article presents a life cycle and economic assessment of a 34.5 MW tidal farm project comprising 23 second-generation tidal devices, each with a rated power of 1.5 MW. The tidal system was simulated using primary data from the full-scale floating platform Atir. The Atir is a pre-commercial tidal device designed with a steel trimaran and a submerged section for TEC installation. An assessment of 18 environmental impact categories was conducted using the ReCiPe 2016 MidPoint method, with process flow systems modelled using SimaPro v9.2.0.1 software. The environmental assessment indicates emissions of 42.11 g CO2eq per kWh, primarily stemming from manufacturing processes that demand substantial amounts of steel. The economic analysis reveals a Levelized Cost of Electricity (LCOE) of 0.125 EUR/kWh, consistent with European Commission projections. Although the platform structure represents a high initial investment, the lower maintenance costs of the Atir device provide long-term savings and, overall, result in a competitive LCOE. The study also introduces a methodological framework for harmonised environmental and economic assessments in tidal energy projects, proving crucial in supporting decision-making processes.
洋流正逐渐成为可再生能源发电的关键贡献者。然而,潮汐能发电技术仍处于发展初期。在此背景下,对潮汐能转换器(TECs)进行环境和经济研究对于进一步推动潮汐技术发展并促进其进入市场至关重要。本文介绍了一个34.5兆瓦潮汐发电场项目的生命周期和经济评估,该项目由23台第二代潮汐装置组成,每台额定功率为1.5兆瓦。利用来自全尺寸浮动平台阿蒂尔的原始数据对潮汐系统进行了模拟。阿蒂尔是一种商业前的潮汐装置,设计为钢质三体船,并设有用于安装TEC的水下部分。使用ReCiPe 2016中点方法对18个环境影响类别进行了评估,并使用SimaPro v9.2.0.1软件对工艺流程系统进行了建模。环境评估表明,每千瓦时排放42.11克二氧化碳当量,主要源于需要大量钢材的制造过程。经济分析显示,平准化度电成本(LCOE)为0.125欧元/千瓦时,与欧盟委员会的预测一致。尽管平台结构代表了较高的初始投资,但阿蒂尔装置较低的维护成本提供了长期节省,总体而言,实现了具有竞争力的LCOE。该研究还引入了一个用于潮汐能源项目中统一环境和经济评估的方法框架,这对于支持决策过程至关重要。