一项利益相关者知情的能源危机中希腊能源转型建模研究:天然气的作用和气候雄心

Anastasios Karamaneas , Konstantinos Koasidis , Natasha Frilingou , Georgios Xexakis , Alexandros Nikas , Haris Doukas
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引用次数: 8

摘要

尽管化石燃料价格在2022年全球能源危机期间飙升,但欧盟激活了所有可用的化石燃料杠杆,希腊仍计划将天然气作为脱欧的过渡燃料,强烈担心能源贫困的潜在加剧和气候行动进展的障碍。这项研究一方面评估了希腊电力结构的轨迹及其在当前政策框架下对天然气的依赖,另一方面也评估了到2035年实现完全脱碳的宏伟设想。我们使用能源系统建模框架对这些场景进行建模,该框架包括希腊的LEAP和OSeMOSYS模型实施,并使用利益相关者知情的模糊认知映射练习来揭示过渡的不确定性。虽然根据现有政策,到2030年,天然气发电量预计将增长近50%,但拟议的脱碳方案有可能在2026年前实现完全独立于俄罗斯天然气,同时也带来更清洁、更便宜的电力行业。如果2022年后化石燃料价格居高不下,即使利益相关者强调的瓶颈(如社区接受度或技术限制)出现,并可能限制某些可再生能源技术的扩展,这种“更高的气候雄心”的设想也是可行的,也更稳健。除了利益相关者在建模科学方面投入的附加值,正如希腊利益相关者所强调的障碍的影响所反映的那样,我们的研究结果强调,多样化的能源供应组合以及大胆的能源效率战略是该国快速可行的脱碳的关键。
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A stakeholder-informed modelling study of Greece's energy transition amidst an energy crisis: The role of natural gas and climate ambition

While fossil fuel prices soar during the 2022 global energy crisis, the European Union activates all available fossil-fuel levers and Greece still plans to use natural gas as a transition fuel for delignitisation, with strong concerns over potential exacerbation of energy poverty and hurdles to progress in climate action. This study assesses the trajectory of the Greek electricity mix and its reliance on natural gas under the current policy framework on the one hand, and an ambitious scenario aiming for complete decarbonisation by 2035 on the other. We model these scenarios using an energy system modelling framework, comprising LEAP and OSeMOSYS model implementations for Greece, and use a stakeholder-informed fuzzy cognitive mapping exercise to uncover transition uncertainties. While power generation from natural gas is projected to increase by almost 50% until 2030 under existing policies, the proposed decarbonisation scenario has the potential to achieve complete independence from Russian gas by 2026 while also leading to a cleaner and considerably cheaper power sector. This ‘higher climate ambition’ scenario is found feasible and more robust in case high fossil fuel prices persist post-2022, even if bottlenecks stressed by stakeholders such as community acceptance or technological constraints emerge and potentially constrain the expansion of certain renewable energy technologies. Apart from the added value of stakeholder input in modelling science, as reflected in the impact of barriers Greek stakeholders critically highlighted, our results emphasise that a diversified energy-supply mix alongside bold energy efficiency strategies are key to rapid and feasible decarbonisation in the country.

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