Feedback

Faculté des Sciences appliquées
Faculté des Sciences appliquées
Mémoire
VIEW 184 | DOWNLOAD 418
Nassimos, Meray ULiège
Promoteur(s) : Attia, Shady ULiège
Date de soutenance : 6-sep-2021/7-sep-2021 • URL permanente : http://hdl.handle.net/2268.2/13017
Détails
Titre : Expert decision support for early design stage of facades for office buildings in Belgium: A parametric approach
Auteur : Nassimos, Meray ULiège
Date de soutenance  : 6-sep-2021/7-sep-2021
Promoteur(s) : Attia, Shady ULiège
Membre(s) du jury : Reiter, Sigrid ULiège
de Boissieu, Aurélie ULiège
Amer, Mohamed 
Langue : Anglais
Mots-clés : [en] Design tools
[en] energy approach
[en] Daylighting
[en] Window-to-wall ratio
[en] Grasshopper
[en] simulation
Discipline(s) : Ingénierie, informatique & technologie > Architecture
Public cible : Chercheurs
Professionnels du domaine
Etudiants
Grand public
Autre
Institution(s) : Université de Liège, Liège, Belgique
Diplôme : Master en ingénieur civil architecte, à finalité spécialisée en ingénierie architecturale et urbaine
Faculté : Mémoires de la Faculté des Sciences appliquées

Résumé

[en] Design decision-making during the early stages of facade development has an influence on the final performance of buildings. Moreover, as sustainable buildings are becoming increasingly important, the role of the architects and designers is to integrate their design with the energetic analysis. Thus, this increases the design decision fatigue and requires considerable time to work through a building simulation tool, especially when there are many choices and possibilities.
This study presents an approach based on building performance criteria. In particular, this thesis investigates a parametric design for façades of office buildings in cities with a climate similar to that of Belgium. The adapted methodology is to develop a parallel coordinator graph for facades in a user-friendly tool (Design Explorer) passing by a parametric design tool (Grasshopper) with environmental plugins (Honeybee and Ladybug) and based on European standards and norms. In addition, a focus on the most influential parameters that we should be aware of during the decision-making is discussed.
Finally, we obtain many options to help façade designers choose between and arrive at the optimal choice combining the desired design target and their energetic needs.
In conclusion, this thesis helps to reduce design decision fatigue and guide architects and designers towards a better decision.


Fichier(s)

Document(s)

File
Access NASSIMOS Meray-TFE S192951-2020-2021.pdf
Description: -
Taille: 10.58 MB
Format: Adobe PDF
File
Access Summary- NASSIMOS Meray.pdf
Description: -
Taille: 22.29 kB
Format: Adobe PDF

Annexe(s)

File
Access Data- Design Explorer.csv
Description: -
Taille: 1.69 MB
Format: Microsoft Excel
File
Access Appendix 4.pdf
Description: -
Taille: 2.39 MB
Format: Adobe PDF

Auteur

  • Nassimos, Meray ULiège Université de Liège > Master ingé. civ. arch., à fin.

Promoteur(s)

Membre(s) du jury

  • Nombre total de vues 184
  • Nombre total de téléchargements 418










Tous les documents disponibles sur MatheO sont protégés par le droit d'auteur et soumis aux règles habituelles de bon usage.
L'Université de Liège ne garantit pas la qualité scientifique de ces travaux d'étudiants ni l'exactitude de l'ensemble des informations qu'ils contiennent.