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Optimizing opening dimensions for naturally ventilated buildings

Author

Listed:
  • Stephan, Louis
  • Bastide, Alain
  • Wurtz, Etienne

Abstract

Since naturally ventilated buildings respond to site conditions and microclimate, we cannot establish a "one set of criteria" for every naturally ventilated building. So natural ventilation should be optimized to deal with thermal comfort in passive buildings during summer. A survey of existing tools for natural ventilation simulation shows the dominance of so-called "analysis" tools over "design" tools. In this present work, we will propose a new method to size natural ventilation openings based on inverse calculation, reduction of the number of independent parameters and optimization of occupants thermal comfort.

Suggested Citation

  • Stephan, Louis & Bastide, Alain & Wurtz, Etienne, 2011. "Optimizing opening dimensions for naturally ventilated buildings," Applied Energy, Elsevier, vol. 88(8), pages 2791-2801, August.
  • Handle: RePEc:eee:appene:v:88:y:2011:i:8:p:2791-2801
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    Citations

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    Cited by:

    1. Favoino, Fabio & Overend, Mauro & Jin, Qian, 2015. "The optimal thermo-optical properties and energy saving potential of adaptive glazing technologies," Applied Energy, Elsevier, vol. 156(C), pages 1-15.
    2. Foucquier, Aurélie & Robert, Sylvain & Suard, Frédéric & Stéphan, Louis & Jay, Arnaud, 2013. "State of the art in building modelling and energy performances prediction: A review," Renewable and Sustainable Energy Reviews, Elsevier, vol. 23(C), pages 272-288.
    3. Oropeza-Perez, Ivan & Østergaard, Poul Alberg, 2014. "Potential of natural ventilation in temperate countries – A case study of Denmark," Applied Energy, Elsevier, vol. 114(C), pages 520-530.
    4. Hong, Taehoon & Koo, Choongwan & Kim, Daeho & Lee, Minhyun & Kim, Jimin, 2015. "An estimation methodology for the dynamic operational rating of a new residential building using the advanced case-based reasoning and stochastic approaches," Applied Energy, Elsevier, vol. 150(C), pages 308-322.
    5. George M. Stavrakakis & Dimitris Al. Katsaprakakis & Markos Damasiotis, 2021. "Basic Principles, Most Common Computational Tools, and Capabilities for Building Energy and Urban Microclimate Simulations," Energies, MDPI, vol. 14(20), pages 1-41, October.
    6. Favoino, Fabio & Fiorito, Francesco & Cannavale, Alessandro & Ranzi, Gianluca & Overend, Mauro, 2016. "Optimal control and performance of photovoltachromic switchable glazing for building integration in temperate climates," Applied Energy, Elsevier, vol. 178(C), pages 943-961.

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