A graph-based formulation for modeling macro-energy systems
arXiv:2004.10184 · doi:10.1016/j.apenergy.2021.117377
Abstract
Averting the impending harms of climate change requires to replace fossil fuels with renewables as a primary source of energy. Non-electric renewable potential being limited, this implies extending the use of electricity generated from wind and solar beyond the power sector, either by direct electrification or synthetic fuels. Modeling the transformation towards such an energy system is challenging, because it imposes to consider fluctuations of wind and solar and the manifold ways the demand side could adjust to these fluctuations. This paper introduces a graph-based method to formulate energy system models to address these challenges. By organizing sets in rooted trees, two features to facilitate modeling high shares of renewables and sector integration are enabled. First, the method allows the level of temporal and spatial detail to be varied by energy carrier. This enables modeling with a high level of detail and a large scope, while keeping models computationally tractable. Second, the degree to which energy carriers are substitutable when converted, stored, transported, or consumed can be modeled to achieve a detailed but flexible representation of sector integration. An application of the formulation demonstrates that the variation of temporal detail achieves an average reduction in computation time of 70\%.
References in corpus (2)
Cited by in corpus (11)
- How flexible electrification can integrate fluctuating renewables
- Adequacy of time-series reduction for renewable energy systems
- Accounting for spatiality of renewables and storage in transmission planning
- Stabilized Benders decomposition for energy planning under climate uncertainty
- A collective blueprint, not a crystal ball: How expectations and participation shape long-term energy scenarios
- AnyMOD.jl: A Julia package for creating energy system models
- Renewable Energy Targets and Unintended Storage Cycling: Implications for Energy Modeling
- Evaluating Policy Implications on the Restrictiveness of Flow-based Market Coupling with High Shares of Intermittent Generation: A Case Study for Central Western Europe
- Resilience metrics to guide back-up investments in the power system during extreme weather
- Voltage-Aware Grid Aggregation: Expanding the European High-Voltage Network
- The Potential of Sufficiency Measures to Achieve a Fully Renewable Energy System -- A case study for Germany