The Path Towards Decarbonization: The Role of Hydropower in the Generation Mix
The evolution of the generation mix towards deep decarbonization poses pressing questions about the role of hydropower and its possible share in the future mix. Most technical–economic analyses of deeply decarbonized systems either rule out hydropower growth due to lack of additional hydro resources...
| 出版年: | Energies |
|---|---|
| 主要な著者: | , , , , |
| フォーマット: | 論文 |
| 言語: | 英語 |
| 出版事項: |
MDPI AG
2025-10-01
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| 主題: | |
| オンライン・アクセス: | https://www.mdpi.com/1996-1073/18/19/5248 |
| _version_ | 1848757596334325760 |
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| author | Fabio Massimo Gatta Alberto Geri Stefano Lauria Marco Maccioni Ludovico Nati |
| author_facet | Fabio Massimo Gatta Alberto Geri Stefano Lauria Marco Maccioni Ludovico Nati |
| author_sort | Fabio Massimo Gatta |
| collection | DOAJ |
| container_title | Energies |
| description | The evolution of the generation mix towards deep decarbonization poses pressing questions about the role of hydropower and its possible share in the future mix. Most technical–economic analyses of deeply decarbonized systems either rule out hydropower growth due to lack of additional hydro resources or take it into account in terms of additional reservoir capacity. This paper analyzes a generation mix made of photovoltaic, wind, open-cycle gas turbines, electrochemical storage and hydroelectricity, focusing on the optimal generation mix’s reaction to different methane gas prices, hydroelectricity availabilities, pumped hydro reservoir capacities, and mean filling durations for hydro reservoirs. The key feature of the developed model is the sizing of both optimal peak power and reservoir energy content for hydropower. The results of the study point out two main insights. The first one, rather widely accepted, is that cost-effective decarbonization requires the greatest possible amount of hydro reservoirs. The second one is that, even in the case of totally exploited reservoirs, there is a strong case for increasing hydro peak power. Application of the model to the Italian generation mix (with 9500 MWp and 7250 MWp of non-pumped and pumped hydro fleets, respectively) suggests that it is possible to achieve methane shares of less than 10% if the operating costs of open-cycle gas turbines exceed 160 EUR/MWh and with non-pumped and pumped hydro fleets of at least 9200 MWp and 28,400 MWp, respectively. |
| format | Article |
| id | doaj-art-e0f98df5d4e746348a5d58f709fedb36 |
| institution | Directory of Open Access Journals |
| issn | 1996-1073 |
| language | English |
| publishDate | 2025-10-01 |
| publisher | MDPI AG |
| record_format | Article |
| spelling | doaj-art-e0f98df5d4e746348a5d58f709fedb362025-10-15T12:47:42ZengMDPI AGEnergies1996-10732025-10-011819524810.3390/en18195248The Path Towards Decarbonization: The Role of Hydropower in the Generation MixFabio Massimo Gatta0Alberto Geri1Stefano Lauria2Marco Maccioni3Ludovico Nati4Department of Astronautics, Electrical and Energy Engineering (DIAEE), “Sapienza” University of Rome, 00184 Rome, ItalyDepartment of Astronautics, Electrical and Energy Engineering (DIAEE), “Sapienza” University of Rome, 00184 Rome, ItalyDepartment of Astronautics, Electrical and Energy Engineering (DIAEE), “Sapienza” University of Rome, 00184 Rome, ItalyDepartment of Astronautics, Electrical and Energy Engineering (DIAEE), “Sapienza” University of Rome, 00184 Rome, ItalyDepartment of Astronautics, Electrical and Energy Engineering (DIAEE), “Sapienza” University of Rome, 00184 Rome, ItalyThe evolution of the generation mix towards deep decarbonization poses pressing questions about the role of hydropower and its possible share in the future mix. Most technical–economic analyses of deeply decarbonized systems either rule out hydropower growth due to lack of additional hydro resources or take it into account in terms of additional reservoir capacity. This paper analyzes a generation mix made of photovoltaic, wind, open-cycle gas turbines, electrochemical storage and hydroelectricity, focusing on the optimal generation mix’s reaction to different methane gas prices, hydroelectricity availabilities, pumped hydro reservoir capacities, and mean filling durations for hydro reservoirs. The key feature of the developed model is the sizing of both optimal peak power and reservoir energy content for hydropower. The results of the study point out two main insights. The first one, rather widely accepted, is that cost-effective decarbonization requires the greatest possible amount of hydro reservoirs. The second one is that, even in the case of totally exploited reservoirs, there is a strong case for increasing hydro peak power. Application of the model to the Italian generation mix (with 9500 MWp and 7250 MWp of non-pumped and pumped hydro fleets, respectively) suggests that it is possible to achieve methane shares of less than 10% if the operating costs of open-cycle gas turbines exceed 160 EUR/MWh and with non-pumped and pumped hydro fleets of at least 9200 MWp and 28,400 MWp, respectively.https://www.mdpi.com/1996-1073/18/19/5248hydropowerdecarbonizationphotovoltaicwindopen-cycle gas turbine |
| spellingShingle | Fabio Massimo Gatta Alberto Geri Stefano Lauria Marco Maccioni Ludovico Nati The Path Towards Decarbonization: The Role of Hydropower in the Generation Mix hydropower decarbonization photovoltaic wind open-cycle gas turbine |
| title | The Path Towards Decarbonization: The Role of Hydropower in the Generation Mix |
| title_full | The Path Towards Decarbonization: The Role of Hydropower in the Generation Mix |
| title_fullStr | The Path Towards Decarbonization: The Role of Hydropower in the Generation Mix |
| title_full_unstemmed | The Path Towards Decarbonization: The Role of Hydropower in the Generation Mix |
| title_short | The Path Towards Decarbonization: The Role of Hydropower in the Generation Mix |
| title_sort | path towards decarbonization the role of hydropower in the generation mix |
| topic | hydropower decarbonization photovoltaic wind open-cycle gas turbine |
| url | https://www.mdpi.com/1996-1073/18/19/5248 |
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