| GCIV0628-1 | |||||
| Design of sustainable constructions | |||||
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Duration :
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| 30h Th, 30h Pr | |||||
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Number of credits :
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Lecturer :
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| Jean-Pierre Jaspart | |||||
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Language(s) of instruction :
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| English language | |||||
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Organisation and examination :
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| Teaching in the second semester | |||||
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Units courses prerequisite and corequisite :
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| Prerequisite or corequisite units are presented within each program | |||||
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Course contents :
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| PART A - Assessment of the sustainability of construction
A.1 - Concepts and general framework of sustainable development and sustainable construction.
A.2 - Assessment approaches and tools.
A.3 - Sustainability of steel constructions.
PART B - Design guidelines for sustainable construction B.1 - Life Cycle analysis. B.2 - Lifetime performance of structures. B.3 - Case studies B.4 - Assessment of the Sustainability of Buildings - Part 1 PART C - Heat Transfer C.1 - Mechanisms of heat transfer. C.2 - Numerical simulations of heat flow and heat transfer. PART D - Thermal Behaviour and Energy efficiency in buildings D.1 - Energy consumption of buildings. D.2 - Tools for prediction of energy consumption in buildings. D.3 - Energy consumption - key factors. D.4 - Energy efficiency of steel buildings. D.5 - Building services. PART E - Acoustic design of buildings E.1 - Basic theory on sound and vibration E.2 - Sound absorption E.3 - Airborne sound insulation E.4 - Impact sound insulation E.5 - Mechanical system noise and vibration PART F - Sustainable assessment of a buildings: case study approach A) Life cycle assessment of a light-weight steel building considering environmental and economical criteria (GaBi software); (= B4) B) Verification of the requirements of minimum energy consumption (DesignBuilder/EnergyPlus software); |
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Learning outcomes of the course :
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Prerequisite knowledge and skills :
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| Global knowledge in structural design of buildings and in building construction Activités d'apprentissage prévues et méthodes d'enseignement The frontal lectures of the course will held in three weeks. These lectures are organized in theoretical lectures and tutorials. Exercises are also palnned within this course: A) Design of the building based on the requirement of minimum energy consumption (DesignBuilder/EnergyPlus software); B) Life cycle assessment and optimization of the light-weight steel building considering environmental, economical and social criteria (GaBi software); C) Comparison of alternative designs (other structural solutions). | |||||
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Planned learning activities and teaching methods :
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| Frontal lectures + exercises to be developed during lectures and at home | |||||
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Mode of delivery (face-to-face ; distance-learning) :
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Recommended or required readings :
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Assessment methods and criteria :
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| The assessment consists of a final exam and project assignments. A minimum of 50% in the written exam is required. | |||||
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Work placement(s) :
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Organizational remarks :
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| This lecture will take place during the first semester | |||||
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Contacts :
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| Jean-Pierre Jaspart - jean-pierre.jaspart@ulg.ac.be Jean-François Demonceau - jfdemonceau@ulg.ac.be | |||||