4.5 Article

Comparative analyses of seven technologies to facilitate the integration of fluctuating renewable energy sources

Journal

IET RENEWABLE POWER GENERATION
Volume 3, Issue 2, Pages 190-204

Publisher

INST ENGINEERING TECHNOLOGY-IET
DOI: 10.1049/iet-rpg:20080049

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Funding

  1. Danish Research Agency's
  2. Danish Technical Research Council (STVF)

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An analysis of seven different technologies is presented. The technologies integrate fluctuating renewable energy sources (RES) such as wind power production into the electricity supply, and the Danish energy system is used as a case. Comprehensive hour-by-hour energy system analyses are conducted of a complete system meeting electricity, heat and transport demands, and including RES, power plants, and combined heat and power production (CHP) for district heating and transport technologies. In conclusion, the most fuel-efficient and least-cost technologies are identified through energy system and feasibility analyses. Large-scale heat pumps prove to be especially promising as they efficiently reduce the production of excess electricity. Flexible electricity demand and electric boilers are low-cost solutions, but their improvement of fuel efficiency is rather limited. Battery electric vehicles constitute the most promising transport integration technology compared with hydrogen fuel cell vehicles (HFCVs). The costs of integrating RES with electrolysers for HFCVs, CHP and micro fuel cell CHIP are reduced significantly with more than 50% of RES.

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