System Dynamic Model for the Accumulation of Renewable Electricity using Power-to-Gas and Power-to-Liquid Concepts
By: Andra Blumberga, Lelde Timma and Dagnija Blumberga
References
- [1] Schiebahn S., Grube T., Robinius M., Tietze V., Kumar B., Stolten D. Power to gas: Technological overview, systems analysis and economic assessment for a case study in Germany.2015:40(12):4285–4294.
- [2] Gahleitner G. Hydrogen from renewable electricity: An international review of power-to-gas pilot plants for stationary applications.2013:38(5):2039–2061.
- [3] Götz M., Lefebvre J., Mörs F., McDaniel Koch A., Graf F., Bajohr S., Reimert R., Kolb T. Renewable Power-to-Gas: A technological and economic review.2016:85:1371–1390.
- [4] Qadrdan M., Abeysekera M., Chaudry M., Wu J., Jenkins N. Role of power-to-gas in an integrated gas and electricity system in Great Britain.2015:40(17):5763–5775.
- [5] Reiter G., Lindorfer J. Evaluating COsources for power-to-gas applications – A case study for Austria.2015:10:40–49.
- [6] Cinti G., Baldinelli A., Di Michele A., Desideri U. Integration of Solid Oxide Electrolyzer and Fischer-Tropsch: A sustainable pathway for synthetic fuel.2016:162:308–320.
- [7] Rönsch S., Schneider J., Matthischke S., Schlüter M., Götz M., Lefebvre J., Prabhakaran P., Bajohr S. Review on methanation – From fundamentals to current projects.2016:166:276–296.
- [8] Schiebahn S., Grube T., Robinius M., Tietze V., Kumar B., Stolten D. Power to gas: Technological overview, systems analysis and economic assessment for a case study in Germany.2015:40(12):4285–4294.
- [9] Guandalini G., Campanari S., Romano M. C. Power-to-gas plants and gas turbines for improved wind energy dispatchability: Energy and economic assessment.2015:147:117–130.
- [10] Varone A., Ferrari M. Power to liquid and power to gas: An option for the German Energiewenden.2015:45:207–218.
- [11] Blumberga D., Vigants E., Romagnoli F., Blumberga A., Kalnins S.N., Veidenbergs I. Hybrid System with Biomethanation for Wind Energy Accumulation in the Baltic Countries.2015:75:754–759.
- [12] Blumberga A., Timma L., Romagnoli F., Blumberga D. Dynamic modelling of a collection scheme of waste portable batteries for ecological and economic sustainability.2015:88:224–233.
- [13] Blumberga A., Timma L., Vilgerts J., Blumberga D. Assessment of sustainable collection and recycling policy of Lead-Acid accumulators from the perspective of system dynamics modelling.2014:39(Special Issue):649–654.
- [14] Vilgerts J., Timma L., Blumberga A., Blumberga D., Slišane D. Application of system dynamic model for the composting of petroleum contaminated soil under various policies.2013:11(2):391–404.
- [15] Timma L., Bariss U., Blumberga A., Blumberga D. Outlining Innovation Diffusion Processes in Households Using System Dynamics. Case Study: Energy Efficiency Lighting.2015:75:2859–2864.
- [16] Timma L., Blumberga A., Blumberga D. Understanding the technological substitution by hybrid modelling practice: A methodological approach.2015:45:379–384.
- [17] Lauka D., Blumberga A., Blumberga D., Timma L. Analysis of GHG Reduction in Non-ETS Energy Sector.2015:75:2534–2540.
- [18] Blumberga A., Timma L., Lauka D., Dace E., Barisa A., Blumberga D. Achieving sustainability in non-ETS sectors using system dynamics modelling practice.2015:45:871–876.
- [19] Dace E., Muizniece I., Blumberga A., Kaczala F. Searching for solutions to mitigate greenhouse gas emissions by agricultural policy decisions - Application of system dynamics modeling for the case of Latvia.2015:527–528:80–90.
DOI: https://doi.org/10.1515/rtuect-2015-0012 | Journal eISSN: 2255-8837 (formerly 2255-8845) | Journal ISSN: 1691-5208
Language: English
Page range: 54 - 68
Published on: Feb 12, 2016
Published by: Riga Technical University
In partnership with: Paradigm Publishing Services
Publication frequency: Volume open
Keywords:
Related subjects:
© 2016 Andra Blumberga, Lelde Timma, Dagnija Blumberga, published by Riga Technical University
This work is licensed under the Creative Commons Attribution 4.0 License.