Articulo de referencia

Brian Vad Mathiesen

Brian Vad Mathiesen (born 10 October 1978) is a Danish engineer and professor at Aalborg University . He was listed among ISI Highly Cited researchers in 2015 [ 1 ] and 2016, [ ...

Brian Vad Mathiesen (born 10 October 1978) is a Danishengineer and professor at Aalborg University. He was listed among ISI Highly Cited researchers in 2015[1] and 2016,[2] making him one of the leading engineers in the world.

Life and research activity

Mathiesen studied environmental management at Aalborg university and obtained a MSc. Eng. in 2003. From 2004 to 2005 he worked as an energy and environmental planner, then returned to university. In 2008 he finished his PhD thesis and was named assistant professor at Aalborg University. Besides he served as a guest professor and visiting researcher at University of Zagreb. From 2010 to 2013 he was associate professor at Aalborg University and in 2014 he became full professor.

Mathiesen researches 100% renewable energy systems and paths to transition the energy system to 100% renewable sources. He is also doing feasibility studies and technical energy system analyses and works on ways to base energy systems mainly on variable renewable energy sources such as wind power.

In 2020 he became editor-in-chief of the newly founded scientific journal Smart Energy.[3]

Publications (selection)

  • A. Hauch, R. Küngas, P. Blennow, A. B. Hansen, J. B. Hansen, B.V. Mathiesen, M. B. Mogensen: Recent advances in solid oxide cell technology for electrolysis. Science 370, 186, 2020, doi:10.1126/science.aba6118
  • Henrik Lund et al.: The status of 4th generation district heating: Research and results. In: Energy 164, (2018), 147–159, doi:10.1016/j.energy.2018.08.206.
  • D. Connolly, H. Lund, B. V. Mathiesen: Smart Energy Europe :The technical and economic impact of one potential 100% renewable energy scenario for the European Union. In: Renewable and Sustainable Energy Reviews 60, (2016), 1634–1653, doi:10.1016/j.rser.2016.02.025.
  • B. V. Mathiesen, H. Lund, D. Conolly, H. Wenzel, P.A. Østergaard, B. Möller, S. Nielsen, I. Ridjan, P. Karnøe, K. Sperling, F. K. Hvelplund, Smart Energy Systems for coherent 100% renewable energy and transport solutions. In: Applied Energy 145, (2015), 139–154, doi:10.1016/j.apenergy.2015.01.075.
  • D. Connolly, H. Lund, BV Mathiesen, S. Werner, B. Möller, U. Persson, T. Boermans, D. Trier, PA Østergaard, S. Nielsen, Heat Roadmap Europe: Combinar la calefacción urbana con el ahorro de calor para descarbonizar el sistema energético de la UE . En: Energy Policy 65, (2014), 475–489, doi : 10.1016/j.enpol.2013.10.035 .
  • H. Lund, BV Mathiesen, El papel de la captura y almacenamiento de carbono en un futuro sistema energético sostenible . En: Energy 44, número 1, (2012) 469–476, doi : 10.1016/j.energy.2012.06.002 .
  • H. Lund, AN Andersen, PA Østergaard, BV Mathiesen, D. Conolly, De las redes eléctricas inteligentes a los sistemas energéticos inteligentes: un enfoque y comprensión basados ​​en la operación del mercado . En: Energy 42, número 1, (2012) 96–102, doi : 10.1016/j.energy.2012.04.003 .
  • BV Mathiesen, H. Lund, K. Karlsson, Sistemas de energía 100% renovable, mitigación del cambio climático y crecimiento económico . En: Applied Energy 88, número 2, (2011) 488–501, doi : 10.1016/j.apenergy.2010.03.001 .
  • D. Conolly, H. Lund, BV Mathiesen, M Leahy, Una revisión de herramientas informáticas para analizar la integración de energías renovables en diversos sistemas energéticos . En: Applied Energy 87, Número 4, (2010), 1059–1082, doi : 10.1016/j.apenergy.2009.09.026 .
  • H. Lund, B. Möller, BV Mathiesen, A. Dyrelund, El papel de la calefacción urbana en los futuros sistemas de energía renovable . En: Energy 35, número 3, (2010), 1381–1390, doi : 10.1016/j.energy.2009.11.023 .
  • BV Mathiesen, H. Lund, Análisis comparativos de siete tecnologías para facilitar la integración de fuentes de energía renovables fluctuantes . En: IET Renewable Power Generation 3, Número 2, (2009), 190–204, enlace .
  • H. Lund, BV Mathiesen, Análisis del sistema energético de sistemas de energía 100% renovables: el caso de Dinamarca en los años 2030 y 2050. En: Energy 34, número 5, (2009), 524–531, doi : 10.1016/j.energy.2008.04.003 .
  • BV Mathiesen, H. Lund, P. Nørgaard, Sistemas integrados de transporte y energías renovables . En: Utilities Policy 16, número 2, (2008), 107–116, doi : 10.1016/j.jup.2007.11.007 .

Referencias

  1. Investigadores más citados en 2015. Thomson Reuters, 26 de enero de 2016.
  2. Investigadores altamente citados en 2016. Clariviate Analytics, 8 de marzo de 2018.
  3. Energía inteligente . Elsevier. Consultado el 27 de septiembre de 2020.
  • Universidad de Aalborg
  • CV
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