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Flexergy; a Methodical system approach for user oriented agent based process management of energy flows in the built environment

  • W. Zeiler
  • , M.A. Houten, van
  • , G. Boxem
  • , J.A.J. Velden, van der
  • , W. Wortel
  • , J.F. Haan, de
  • , I.G. Kamphuis
  • , M.P.F. Hommelberg
  • , H.J. Broekhuizen

Research output: Chapter in Book/Report/Conference proceedingConference contributionAcademicpeer-review

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Abstract

The main challenge for future developments of renewable energy infrastructure is to reach an acceptable price level and a minimized environmental impact. Design tools for renewable energy installations are available on the level of individual installations. The potential for the application of renewable energy installations in the build environment is defined in an earlier phase of development: the design of the energy infrastructure for new build or renovated district areas. Design tools for the energy infrastructure are now lacking: renewable energy installations, tuning demand and supply in a dynamic way and tuning to the decision process. The objective is to develop design tools starting from the existing dynamic tools for single installations. New technological solutions are needed to make renewable energy solutions natural, easy and intuitively understandable for architect and consultants. The paper will discuss the approach to reach these goals.
Original languageEnglish
Title of host publicationProceedings of the 9th REHVA World Congress: WellBeing Indoors (Clima 2007) 10-14 June 2007, Helsinki, Finland
EditorsO. Seppänen, J. Säteri, J. Sätteri
Place of PublicationHelsinki, Finland
PublisherFINVAC
Pages1-9
ISBN (Print)978-952-99898-3-6
Publication statusPublished - 2007
EventClima 2007, Helsinki, Finland -
Duration: 10 Jun 200714 Jun 2007

Conference

ConferenceClima 2007, Helsinki, Finland
Period10/06/0714/06/07
OtherClima 2007, Helsinki, Finland

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 7 - Affordable and Clean Energy
    SDG 7 Affordable and Clean Energy

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