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风电变流技术 储能系统 ★ 5.0

南非陆上风电场生命周期外部成本评估

Life cycle external cost assessment of an onshore wind farm in South Africa

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中文摘要

摘要 过去十年中,风能在全球能源转型中发挥了关键作用。这种转型在撒哈拉以南非洲地区尤为明显,其中南非处于领先地位。陆上风能在南非的能源转型中至关重要,但该技术全面的外部成本仍缺乏深入研究。本研究通过对一个138兆瓦的风电场进行生命周期评估(LCA),旨在填补现有文献中的空白,评估其温室气体(GHG)和非温室气体影响,并将其转化为成本形式。本研究为理解陆上风能对环境、人类健康、生物多样性、农作物以及材料资源的影响提供了重要见解,有助于提升海上风电整体可持续性。研究结果表明,气候变化影响为26.1克二氧化碳当量/千瓦时(gCO₂ eq/kWh),而人类健康影响则是最主要的非温室气体影响。该陆上风电场的外部成本介于5.95至9.88南非兰特/千瓦时(ZAc/kWh)之间(即2.9–4.82欧元/兆瓦时,€/MWh),中位值为6.75 ZAc/kWh(3.29 €/MWh),处于文献报道范围之内。气候变化与人类健康共同占中位外部成本的89.4%,这些影响主要与制造和建设阶段相关。本研究强调,在技术成本不断下降的背景下,将外部成本纳入风能综合评估具有重要意义。研究结果突显出必须考虑气候变化和人类健康成本,以更全面地理解陆上风能在整个生命周期内的可持续性。

English Abstract

Abstract Wind power has been crucial in global energy transitions over the past decade. Such transitions are evident in sub-Saharan Africa, where South Africa is a leading player. Onshore wind power is pivotal in South Africa's energy transition, but the comprehensive external costs of the technology remain unexplored. Conducting a life cycle assessment (LCA) of a 138 MW wind farm, this study aims to fill the existing gap in the literature, by assessing greenhouse gas (GHG) and non-GHG impacts, and then converting them into costs. This study provides critical insights into the environmental, health, biodiversity, crops, and materials impact of onshore wind power, contributing towards improving the overall sustainability of offshore wind power. Findings from the study indicate that climate change impacts contribute 26.1 gCO 2 eq/kWh, while human health impacts emerge as the most significant non-GHG impact. The onshore wind farm's external cost ranges from 5.95 to 9.88 ZAc/kWh (2.9–4.82 €/MWh), with a median of 6.75 ZAc/kWh (3.29 €/MWh), falling within ranges observed in the literature. Climate change and human health jointly account for 89.4 % of the median external costs, primarily associated with the manufacturing and construction phases. This study underscores the importance of including external costs in the comprehensive assessment of wind power, driven by the decreasing technology costs. The findings highlight the need to incorporate climate change and human health costs to better understand the sustainability of onshore wind power across its life cycle.
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SunView 深度解读

该生命周期成本研究对阳光电源风储一体化方案具有重要参考价值。研究显示制造和建设阶段占外部成本89.4%,验证了我司ST系列储能变流器及PowerTitan系统在提升风电全生命周期效益的战略意义。通过储能系统平抑风电波动可降低电网健康影响成本,iSolarCloud平台的预测性维护能延长设备寿命减少制造环节碳排放分摊。研究量化的3.29欧元/MWh外部成本为我司风储混合解决方案的经济性评估提供了新维度,支撑GFM控制技术在可再生能源并网中的价值论证。