A First Shot at Time-Dependent CO 2 Intensities in Multi-Modal Energy Systems

作者: Florian Steinke , Christopher Ripp

DOI: 10.1109/EEM.2018.8469841

关键词:

摘要: CO2 emission reduction and increasing volatile renewable energy generation mandate stronger sector coupling the use of storage. In such multi-modal systems, it is challenging to assess exact impact consumption changes onto overall CO 2 emissions. This, however, important evaluate individual measures consumers. Due renewables' volatility, yearly average intensities per form are no longer accurate, but time should be considered. Moreover, highly coupled over different forms due We describe a novel method for computing time-dependent each system with input output streams into conversion process as well storage levels at step. Simulating test system, we discuss results limits approach.

参考文章(11)
Mark Howells, Holger Rogner, Neil Strachan, Charles Heaps, Hillard Huntington, Socrates Kypreos, Alison Hughes, Semida Silveira, Joe DeCarolis, Morgan Bazillian, Alexander Roehrl, OSeMOSYS: The Open Source Energy Modeling System: An introduction to its ethos, structure and development Energy Policy. ,vol. 39, pp. 5850- 5870 ,(2011) , 10.1016/J.ENPOL.2011.06.033
Robert Harmsen, Wina Graus, How much CO2 emissions do we reduce by saving electricity? A focus on methods Energy Policy. ,vol. 60, pp. 803- 812 ,(2013) , 10.1016/J.ENPOL.2013.05.059
Pia Stoll, Nils Brandt, Lars Nordström, Including dynamic CO2 intensity with demand response Energy Policy. ,vol. 65, pp. 490- 500 ,(2014) , 10.1016/J.ENPOL.2013.10.044
Wolfgang Mauch, Roger Corradini, Marco Schwentzek, Karin Wiesemeyer, Allokationsmethoden für spezifische CO2-Emissionen von Strom und Wärme aus KWK-Anlagen ET. Energiewirtschaftliche Tagesfragen. ,vol. 60, pp. 12- 14 ,(2010)
Simon Hilpert, Cord Kaldemeyer, Uwe Krien, Stephan Günther, Clemens Wingenbach, Guido Plessmann, The Open Energy Modelling Framework (oemof) - A novel approach in energy system modelling Preprints. ,(2017) , 10.20944/PREPRINTS201706.0093.V1