Projects per year
Abstract
Recent studies have shown benefits of using tidal stream and wave energy in the electricity generation mix to improve supply–demand balancing on annual/subannual timeframes. This paper investigates this further by considering the variability of solar photovoltaic, onshore and offshore wind, wave, and tidal stream over multiple years. It also considers their ability to match with electricity demand when combined. Variability of demand and generation can have a significant impact on results. Over the sample of five years considered (2015–2019), demand varied by around 3%, and the availability of each renewable technology differed by up to 9%. This highlights the importance of considering multiple years of input data when assessing power system impacts, instead of relying on an ‘average’ year. It is also key that weather related correlations between renewable resources and with demand can be maintained in the data. Results from an economic dispatch model of Great Britain’s power system in 2030 are even more sensitive to the input data year, with costs and carbon emissions varying by up to 21% and 45%, respectively. Using wave or tidal stream as part of the future energy mix was seen to have a positive impact in all cases considered; 1 GW of wave and tidal (0.57% of total capacity) reduces annual dispatch cost by 0.2–1.3% and annual carbon emissions by 2.3–3.5%. These results lead to recommended best practises for modelling high renewable power systems, and will be of interest to modellers and policy makers.
| Original language | English |
|---|---|
| Article number | 3717 |
| Journal | Energies |
| Volume | 18 |
| Issue number | 14 |
| Early online date | 14 Jul 2025 |
| DOIs | |
| Publication status | E-pub ahead of print - 14 Jul 2025 |
Keywords / Materials (for Non-textual outputs)
- annual variability
- input data sensitivity
- power system modelling
- renewable energy
- tidal stream energy
- wave energy
Fingerprint
Dive into the research topics of 'Quantifying the System Benefits of Ocean Energy in the Context of Variability: A UK Example'. Together they form a unique fingerprint.Projects
- 1 Finished
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Economic Value of Ocean Energy (EVOLVE)
Jeffrey, H. (Principal Investigator) & Pennock, S. (Co-investigator)
22/07/20 → 31/07/23
Project: Research
Research output
- 1 Article
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A modelling framework to quantify the power system benefits from ocean energy deployments
Pennock, S., Noble, D. R., Vardanyan, Y., Delahaye, T. & Jeffrey, H., 1 Oct 2023, In: Applied Energy. 347, 121413.Research output: Contribution to journal › Article › peer-review
Open Access