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Évaluation des apports solaires à l'échelle d'un quartier urbain en période de chauffe selon sa typologie, son orientation et sa latitude dans un contexte de densification de la ville

Translated title of the thesis: Evaluation of the contributions of the solar passive gains in an urban distric for the heating period according to the geometry of the area, the orientation and the lattitude in a context of a city densification
  • Laurent Chénard

Student thesis: Master's thesisMaster in Engineering: Engineering

Abstract

Mass urbanization is a major issue for town administrators. Population increase will have an impact on the quality of the environment for citizens. Government will have to take decisions to limit those effects. Green energies are part of the solution to reach fixed goals by the public administration for sustainable development. Passive solar energy is studied in this work in an urban canopy located in five different towns: San Francisco, Montréal, Bordeaux, Lyon and Stockholm. Passive solar energy is calculated in the heating season. Direct and diffuse solar radiation is considered by using the Perez model. Radiosity is not taken into account. Heating demand is calculated by the heating degree day method. Seven urban forms have been created to determine the amount of solar energy entering in every window of the urban canopy while taking into account urban context and forms. Optimal orientation of the canopy shows an increase of 5% of the passive solar radiation from original orientation, 180 degrees rotation from first orientation straight south. This value goes lower when stories are added to the urban context. A rotation of 90 degrees from the first orientation shows a decrease of 6 to 15% in solar passive gain. Densification of the urban canopy by adding stories to the buildings results in a loss up to 65% of the solar gain for the first story. It is showed that solar passive energy has a low ratio of 5% for space heating for old buildings, 1960 constructions. Today’s buildings have a difference between passive solar energy and heating demand of 10 to 75% depending on the model and location.
Date26 May 2014
Original languageFrench
Awarding Institution
  • École de technologie supérieure
SupervisorFrédéric Monette (Supervisor) & Benoit Beckers (Co-supervisor)

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