Climate change impacts on net load under technological uncertainty in European power systems
Luna Bloin-Wibe, Erich Fischer, Leonard G\"oke, Reto Knutti, Francesco de Marco, Jan Wohland

TL;DR
This study assesses how climate change influences net load variability in European power systems, highlighting the importance of system design in mitigating or amplifying climate impacts on energy reliability.
Contribution
It introduces a comprehensive framework that evaluates the interaction between climate change and energy system design uncertainties on net load, using climate model data and multiple system scenarios.
Findings
Climate change impacts on net load are highly sensitive to system design.
High net load events increase by 30% in wind-dominated systems under climate change.
Electrified net zero systems see a 50% decrease in high net load events during winter and spring.
Abstract
Renewable energy sources play a major role in future net-zero energy systems. However, achieving energy system resilience remains challenging, since renewables depend on weather fluctuations, and future energy systems are subject to major design uncertainty. Existing literature mostly treats these types of uncertainty separately. Therefore, the assessment of uncertainties surrounding climate change and energy system design, and particularly their interactions, is insufficiently understood. To close this gap, we evaluate net load to assess energy system stress without relying on perfect foresight, while maintaining temporal and spatial correlations of the climate system. Net load is calculated from hourly historical and future climate model data translated to energy variables. To scope the extent of plausible energy systems, we consider eight different design scenarios inspired by the…
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Taxonomy
TopicsIntegrated Energy Systems Optimization · Water-Energy-Food Nexus Studies · Electric Power System Optimization
