Oliver Ruhnau : Citation Profile


Are you Oliver Ruhnau?

Hertie School

7

H index

3

i10 index

137

Citations

RESEARCH PRODUCTION:

8

Articles

18

Papers

1

Chapters

RESEARCH ACTIVITY:

   7 years (2015 - 2022). See details.
   Cites by year: 19
   Journals where Oliver Ruhnau has often published
   Relations with other researchers
   Recent citing documents: 58.    Total self citations: 15 (9.87 %)

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   Permalink: http://citec.repec.org/pru376
   Updated: 2024-12-03    RAS profile: 2023-12-06    
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Relations with other researchers


Works with:

Hirth, Lion (5)

Praktiknjo, Aaron (3)

Authors registered in RePEc who have co-authored more than one work in the last five years with Oliver Ruhnau.

Is cited by:

Löschel, Andreas (3)

Schill, Wolf-Peter (3)

Schularick, Moritz (3)

Baqaee, David (3)

Bachmann, Ruediger (3)

Bayer, Christian (3)

Zachmann, Georg (3)

Peichl, Andreas (3)

Madlener, Reinhard (2)

Trueby, Johannes (1)

Praktiknjo, Aaron (1)

Cites to:

Hirth, Lion (47)

Praktiknjo, Aaron (18)

Schill, Wolf-Peter (16)

Edenhofer, Ottmar (12)

Joskow, Paul (12)

Zerrahn, Alexander (9)

Staffell, Iain (5)

Madlener, Reinhard (5)

Nikolopoulos, Konstantinos (4)

Lijesen, Mark (4)

Stöckl, Fabian (4)

Main data


Where Oliver Ruhnau has published?


Journals with more than one article published# docs
Energy Economics2
Renewable and Sustainable Energy Reviews2
Applied Energy2

Working Papers Series with more than one paper published# docs
EconStor Preprints / ZBW - Leibniz Information Centre for Economics17

Recent works citing Oliver Ruhnau (2024 and 2023)


YearTitle of citing document
2023What is ESG? Rethinking the “E” pillar. (2023). Jantz, Brad ; Trahan, Ryan Thomas. In: Business Strategy and the Environment. RePEc:bla:bstrat:v:32:y:2023:i:7:p:4382-4391.

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2023Electricity market modeling considering a high penetration of flexible heating systems and electric vehicles. (2023). Rehtanz, Christian ; Peper, Jan ; Kroger, David. In: Applied Energy. RePEc:eee:appene:v:331:y:2023:i:c:s0306261922016634.

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2023Bottom-up system modeling of battery storage requirements for integrated renewable energy systems. (2023). Weinhardt, Christof ; Fischer, Peter ; Schaffer, Michael ; Henni, Sarah ; Staudt, Philipp. In: Applied Energy. RePEc:eee:appene:v:333:y:2023:i:c:s0306261922017883.

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2023Optimized operation of distributed energy resources: The opportunities of value stacking for Power-to-Gas aggregated with PV. (2023). Lorenzoni, Arturo ; Bignucolo, Fabio ; Coppo, Massimiliano ; Agostini, Marco ; Schwidtal, Jan Marc. In: Applied Energy. RePEc:eee:appene:v:334:y:2023:i:c:s0306261923000107.

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2023Probabilistic modeling of future electricity systems with high renewable energy penetration using machine learning. (2023). Aszodi, Attila ; Szucs, Botond ; Biro, Bence ; Mayer, Martin Janos. In: Applied Energy. RePEc:eee:appene:v:336:y:2023:i:c:s0306261923001654.

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2023The impact of heat electrification on the seasonal and interannual electricity demand of Great Britain. (2023). Matuszewski, Bogdan J ; Fragaki, Aikaterini ; Peacock, Malcolm. In: Applied Energy. RePEc:eee:appene:v:337:y:2023:i:c:s0306261923002490.

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2023Impact of climate and geological storage potential on feasibility of hydrogen fuels. (2023). Lindroos, Tomi J ; Ikaheimo, Jussi ; Kiviluoma, Juha. In: Applied Energy. RePEc:eee:appene:v:342:y:2023:i:c:s0306261923004579.

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2023Inter-comparison of spatial models for high shares of renewable electricity in Switzerland. (2023). Sansavini, Giovanni ; Lehning, Michael ; Jain, Pranjal ; Gabrielli, Paolo ; Dujardin, Jerome ; Heinisch, Verena ; Trutnevyte, Evelina ; Schwarz, Marius ; Schaffner, Christian ; Sasse, Jan-Philipp. In: Applied Energy. RePEc:eee:appene:v:350:y:2023:i:c:s0306261923010644.

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2023What-where-when: Investigating the role of storage for the German electricity system transition. (2023). Mavromatidis, G ; Thimet, P J. In: Applied Energy. RePEc:eee:appene:v:351:y:2023:i:c:s0306261923011285.

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2024Multi-objective optimization design of the wind-to-heat system blades based on the Particle Swarm Optimization algorithm. (2024). Zhong, Xiaohui ; Sun, Xiangyu ; Qian, Jing ; Li, Qingan ; Shi, Kezhong ; Zhou, Teng ; Xu, Fei ; Zeng, Jiajun. In: Applied Energy. RePEc:eee:appene:v:355:y:2024:i:c:s0306261923015507.

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2024A distributed multi-objective optimization method for scheduling of integrated electricity and hydrogen systems. (2024). Chang, Xinyue ; Ding, Tao ; Yuan, YI ; Xue, Yixun ; Jia, Wenhao. In: Applied Energy. RePEc:eee:appene:v:355:y:2024:i:c:s0306261923016513.

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2024Power market models for the clean energy transition: State of the art and future research needs. (2024). Botterud, Audun ; Blaisdell-Pijuan, Paris L ; Haugen, Mari ; Somani, Abhishek ; Korps, Magnus ; Belsnes, Michael ; Zhou, Zhi ; Levin, Todd. In: Applied Energy. RePEc:eee:appene:v:357:y:2024:i:c:s0306261923018597.

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2024An equilibrium capacity expansion model for power systems considering Gencos coupled decisions between carbon and electricity markets. (2024). Gao, Xiang ; Zheng, Chenghang ; Ding, YI ; Guo, Chao ; Bao, Minglei ; Sun, Xiaocong. In: Applied Energy. RePEc:eee:appene:v:359:y:2024:i:c:s0306261923017506.

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2024Can an energy only market enable resource adequacy in a decarbonized power system? A co-simulation with two agent-based-models. (2024). de Vries, L J ; Schimeczek, C ; Kochems, J ; Cvetkovic, M ; Ribo-Perez, D ; Jimenez, Sanchez I. In: Applied Energy. RePEc:eee:appene:v:360:y:2024:i:c:s0306261924000783.

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2024Applying graph theory to find key leverage points in the transition toward urban renewable energy systems. (2024). Rozhkov, Anton. In: Applied Energy. RePEc:eee:appene:v:361:y:2024:i:c:s030626192400237x.

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2023An energy system model to study the impact of combining carbon pricing with direct support for renewable gases. (2023). Meeus, Leonardo ; Roach, Martin. In: Ecological Economics. RePEc:eee:ecolec:v:210:y:2023:i:c:s0921800923001180.

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2023Integration of power-to-gas into electricity markets during the ramp-up phase—Assessing the role of carbon pricing. (2023). Weber, Christoph ; Mikurda, Jennifer ; Bucksteeg, Michael. In: Energy Economics. RePEc:eee:eneeco:v:124:y:2023:i:c:s0140988323003031.

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2023The economic impacts of integrating European balancing markets: The case of the newly installed aFRR energy market-coupling platform PICASSO. (2023). Kraft, Emil ; Keles, Dogan ; Backer, Martijn. In: Energy Economics. RePEc:eee:eneeco:v:128:y:2023:i:c:s0140988323006229.

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2024Long-term issues with the Energy-Only Market design in the context of deep decarbonization. (2024). Saguan, Marcelo ; Quemin, Simon ; Petitet, Marie ; Lebeau, Alexis. In: Energy Economics. RePEc:eee:eneeco:v:132:y:2024:i:c:s0140988324001269.

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2023Phasing out coal power in a developing country context: Insights from Vietnam. (2023). Burke, Paul ; Do, Thang Nam. In: Energy Policy. RePEc:eee:enepol:v:176:y:2023:i:c:s0301421523000976.

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2023The role of hydrogen for deep decarbonization of energy systems: A Chilean case study. (2023). Jalil-Vega, Francisca ; Homem-De, Tito ; Babonneau, Frederic ; Ferrada, Francisco. In: Energy Policy. RePEc:eee:enepol:v:177:y:2023:i:c:s0301421523001210.

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2023Exploring the feasibility of Europe’s renewable expansion plans based on their profitability in the market. (2023). di Cosmo, Valeria ; Bertsch, Valentin ; Finke, Jonas. In: Energy Policy. RePEc:eee:enepol:v:177:y:2023:i:c:s0301421523001519.

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2023Power sector effects of green hydrogen production in Germany. (2023). Schill, Wolf-Peter ; Kirchem, Dana. In: Energy Policy. RePEc:eee:enepol:v:182:y:2023:i:c:s0301421523003233.

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2023Flexible green hydrogen: The effect of relaxing simultaneity requirements on project design, economics, and power sector emissions. (2023). Schiele, Johanna ; Ruhnau, Oliver. In: Energy Policy. RePEc:eee:enepol:v:182:y:2023:i:c:s0301421523003488.

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2023Renewable origin, additionality, temporal and geographical correlation – eFuels production in Germany under the RED II regime. (2023). Ruppert, Manuel ; Langenmayr, Uwe. In: Energy Policy. RePEc:eee:enepol:v:183:y:2023:i:c:s0301421523004159.

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2024Concentration versus diversification: A spatial deployment approach to improve the economics of wind power. (2024). Madlener, Reinhard ; Klie, Leo. In: Energy Policy. RePEc:eee:enepol:v:185:y:2024:i:c:s0301421523005426.

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2024Investment cost specifications revisited. (2024). Azarova, Valeriya ; Mier, Mathias. In: Energy Policy. RePEc:eee:enepol:v:188:y:2024:i:c:s0301421524000788.

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2023A national data-based energy modelling to identify optimal heat storage capacity to support heating electrification. (2023). Chacartegui, Ricardo ; McCulloch, Malcolm ; Perez-Maqueda, Luis A ; Killendahl, Markus ; Renaldi, Renaldi ; Amghar, Nabil ; Wheeler, Scot ; Halloran, Claire E ; Lizana, Jesus. In: Energy. RePEc:eee:energy:v:262:y:2023:i:pa:s036054422202182x.

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2023Operation of district heat network in electricity and balancing markets with the power-to-heat sector coupling. (2023). Rosin, Argo ; Tervo, Seela ; Syri, Sanna ; Javanshir, Nima. In: Energy. RePEc:eee:energy:v:266:y:2023:i:c:s0360544222033096.

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2023How flexible electrification can integrate fluctuating renewables. (2023). Kendziorski, Mario ; Weibezahn, Jens ; Goke, Leonard. In: Energy. RePEc:eee:energy:v:278:y:2023:i:pa:s0360544223012264.

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2023Biofuels for a sustainable future: Examining the role of nano-additives, economics, policy, internet of things, artificial intelligence and machine learning technology in biodiesel production. (2023). Elahi, Manzoore ; Shahapurkar, Kiran ; Jathar, Laxmikant D ; Nikam, Keval Chandrakant ; Belkhode, Pramod N ; Shelare, Sagar D ; Rehan, Mohammad ; Nizami, Abdul-Sattar ; Kalam, M A ; Yunus, T M ; Veza, Ibham. In: Energy. RePEc:eee:energy:v:282:y:2023:i:c:s0360544223022685.

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Analyzing the economic, social, and technological determinants of renewable and nonrenewable electricity production in China: Findings from time series models. (2023). Xu, Jinpeng ; Liu, Tianya. In: Energy. RePEc:eee:energy:v:282:y:2023:i:c:s036054422302282x.

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2023Deviations from commitments: Markov decision process formulations for the role of energy storage. (2023). Nadar, Emre ; Kocaman, Ayse Selin ; Avci, Harun ; Karakoyun, Ece Cigdem. In: International Journal of Production Economics. RePEc:eee:proeco:v:255:y:2023:i:c:s0925527322002936.

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2023The green hydrogen revolution. (2023). Nicita, Agatino ; Maggio, Gaetano ; Squadrito, Gaetano. In: Renewable Energy. RePEc:eee:renene:v:216:y:2023:i:c:s0960148123009552.

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2023Prediction and innovation of sustainable continuous flow microwave processing based on numerical simulations: A systematic review. (2023). Fan, Daming ; Chen, Wei ; Yan, Bowen ; Yang, Huayu. In: Renewable and Sustainable Energy Reviews. RePEc:eee:rensus:v:175:y:2023:i:c:s1364032123000394.

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2024The value of solar forecasts and the cost of their errors: A review. (2024). Kumar, Dhivya Sampath ; Zhang, Wenjie ; Gandhi, Oktoviano ; Srinivasan, Dipti ; Reindl, Thomas ; Yang, Dazhi ; Yagli, Gokhan Mert ; Rodriguez-Gallegos, Carlos D. In: Renewable and Sustainable Energy Reviews. RePEc:eee:rensus:v:189:y:2024:i:pb:s1364032123007736.

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2023Hydrogen as Short-Term Flexibility and Seasonal Storage in a Sector-Coupled Electricity Market. (2023). Auer, Hans ; Lettner, Georg ; Maldet, Matthias ; Schwabeneder, Daniel ; Loschan, Christoph. In: Energies. RePEc:gam:jeners:v:16:y:2023:i:14:p:5333-:d:1192521.

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2023A Feasibility Study of Profiting from System Imbalance Using Residential Electric Vehicle Charging Infrastructure. (2023). Straka, Milan ; Tomaov, Marian ; Buzna, Ubo ; Bracinik, Peter ; Martinko, David. In: Energies. RePEc:gam:jeners:v:16:y:2023:i:23:p:7820-:d:1289479.

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2023A Comprehensive Review: Study of Artificial Intelligence Optimization Technique Applications in a Hybrid Microgrid at Times of Fault Outbreaks. (2023). Tiako, Remy ; Carpanen, Rudiren Pillay ; Thanduxolo, Musawenkosi Lethumcebo. In: Energies. RePEc:gam:jeners:v:16:y:2023:i:4:p:1786-:d:1065011.

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2023Optimization-Based Operation of District Heating Networks: A Case Study for Two Real Sites. (2023). Jasek, Patricia ; Medwenitsch, Karina ; Puchegger, Markus ; Gnam, Lukas ; Schindler, Markus. In: Energies. RePEc:gam:jeners:v:16:y:2023:i:5:p:2120-:d:1076598.

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2023Can Hydrogen Production Be Economically Viable on the Existing Gas-Fired Power Plant Location? New Empirical Evidence. (2023). Majstrovi, Goran ; Lenz, Nela Vlahini ; Dumani, Andrea. In: Energies. RePEc:gam:jeners:v:16:y:2023:i:9:p:3737-:d:1134149.

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2023Assessing the Optimal Contributions of Renewables and Carbon Capture and Storage toward Carbon Neutrality by 2050. (2023). Tsuji, Takeshi ; Chapman, Andrew ; Nguyen, Dinh Hoa. In: Sustainability. RePEc:gam:jsusta:v:15:y:2023:i:18:p:13447-:d:1235359.

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2023Theoretical Evaluation of Photovoltaic Thermal Water Source Heat Pump, Application Potential and Policy Implications: Evidence from Yangtze River Economic Belt, China. (2023). Wu, Qiuyi. In: Sustainability. RePEc:gam:jsusta:v:15:y:2023:i:18:p:13638-:d:1238341.

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2023Portfolio Effects in Green Hydrogen Production Under Temporal Matching Requirements. (2023). Madlener, Reinhard ; Ruhnau, Oliver ; Casas, Nieves M. In: FCN Working Papers. RePEc:ris:fcnwpa:2023_018.

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2024.

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Works by Oliver Ruhnau:


YearTitleTypeCited
2022How flexible electricity demand stabilizes wind and solar market values: The case of hydrogen electrolyzers In: Applied Energy.
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article19
2021How flexible electricity demand stabilizes wind and solar market values: the case of hydrogen electrolyzers.(2021) In: EconStor Preprints.
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This paper has nother version. Agregated cites: 19
paper
2022Phasing out coal: An impact analysis comparing five large-scale electricity market models In: Applied Energy.
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article4
2021Phasing out coal - An impact analysis comparing five large-scale electricity market models.(2021) In: EconStor Preprints.
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This paper has nother version. Agregated cites: 4
paper
2021Electricity balancing as a market equilibrium: An instrument-based estimation of supply and demand for imbalance energy In: Energy Economics.
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article7
2020Heating with wind: Economics of heat pumps and variable renewables In: Energy Economics.
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article18
2020Heating with wind: Economics of heat pumps and variable renewables.(2020) In: EconStor Preprints.
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This paper has nother version. Agregated cites: 18
paper
2019Direct or indirect electrification? A review of heat generation and road transport decarbonisation scenarios for Germany 2050 In: Energy.
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article36
2020Economic implications of forecasting electricity generation from variable renewable energy sources In: Renewable Energy.
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article6
2022Why electricity market models yield different results: Carbon pricing in a model-comparison experiment In: Renewable and Sustainable Energy Reviews.
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article8
2021Why electricity market models yield different results: Carbon pricing in a model-comparison experiment.(2021) In: EconStor Preprints.
[Full Text][Citation analysis]
This paper has nother version. Agregated cites: 8
paper
2022The transformation of integrated electricity and heat systems—Assessing mid-term policies using a model comparison approach In: Renewable and Sustainable Energy Reviews.
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article3
2021The transformation of integrated electricity and heat systems—Assessing mid-term policies using a model comparison approach.(2021) In: EconStor Preprints.
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This paper has nother version. Agregated cites: 3
paper
2015Economic Implications of Enhanced Forecast Accuracy: The Case of Photovoltaic Feed-In Forecasts In: FCN Working Papers.
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paper1
2017Feed-In Forecasts for Photovoltaic Systems and Economic Implications of Enhanced Forecast Accuracy In: Operations Research Proceedings.
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chapter1
2020On capital utilization in the hydrogen economy: The quest to minimize idle capacity in renewables-rich energy systems In: EconStor Preprints.
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paper5
2020Electricity balancing as a market equilibrium: Estimating supply and demand of imbalance energy In: EconStor Preprints.
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paper1
2020Market-based renewables: How flexible hydrogen electrolyzers stabilize wind and solar market values In: EconStor Preprints.
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paper7
2021Electricity balancing as a market equilibrium In: EconStor Preprints.
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paper3
2021Blue hydrogen and industrial base products: The future of fossil fuel exporters in a net-zero world In: EconStor Preprints.
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paper0
2021Storage requirements in a 100% renewable electricity system: Extreme events and inter-annual variability In: EconStor Preprints.
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paper2
2021The European Electricity Market Model EMMA - Model Description In: EconStor Preprints.
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paper1
2022The (very) short-term price elasticity of German electricity demand In: EconStor Preprints.
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paper2
2022Update and extension of the When2Heat dataset In: EconStor Preprints.
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paper2
2022European industry responds to high energy prices: The case of German ammonia production In: EconStor Preprints.
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paper7
2022Flexible green hydrogen: Economic benefits without increasing emissions In: EconStor Preprints.
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paper2
2022Flexible green hydrogen: Economic benefits without increasing power sector emissions In: EconStor Preprints.
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paper2

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