How do technological choices affect the economic and environmental performance of offshore wind farms?

S. Kainz, A. Guilloré, C. Bottasso
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Abstract

The ongoing energy transition towards fully sustainable energy systems requires designing wind farms looking beyond the sole levelized cost of energy, in order to concurrently ensure not only the economic profitability but also the environmental friendliness of future plants. Within this new approach to design, it becomes necessary to understand the effects that various possible technological choices have on both the economic and the environmental performance of wind farms. This study presents a framework designed to support these coupled economic-environmental assessments. The capabilities of the code are showcased by analysing the impact of different choices in terms of support structure type, specific power, tower height, powertrain type, and array and export voltage level for an exemplary offshore farm, chosen here as the IEA Wind 740-10-MW Reference Offshore Wind Plant with irregular layout. While the effects of many technological choices on the cost of energy are already well understood by industry, the present analysis shows that — at least in this specific case — climate change impacts are mainly driven by steel production, due to the massive amount of required material, but also, interestingly, by vessel activities. A low specific power, tall towers, and a high export cable voltage appear to offer the greatest potential for the concurrent improvement of the environmental and economic performance of the plant.
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技术选择如何影响海上风电场的经济和环境绩效?
目前,能源正在向完全可持续的能源系统过渡,这就要求风电场的设计不能仅仅考虑平准化能源成本,而是要同时确保未来发电厂的经济效益和环境友好性。在这种新的设计方法中,有必要了解各种可能的技术选择对风电场经济和环境性能的影响。本研究提出了一个旨在支持这些经济-环境耦合评估的框架。通过分析不同选择在支撑结构类型、比功率、塔架高度、动力总成类型以及阵列和出口电压水平方面的影响,展示了该代码的能力。虽然许多技术选择对能源成本的影响已为工业界所熟知,但本分析表明,至少在这一特定情况下,气候变化的影响主要来自钢铁生产,因为需要大量材料,但有趣的是,也来自船舶活动。低比功率、高塔架和高出口电缆电压似乎为同时改善发电厂的环境和经济效益提供了最大的潜力。
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