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SUSTAINABLE BUILDING

Degree course Civil Engineering
Curriculum PROGETTAZIONE STRUTTURALE, INFRASTRUTTURALE E GEOTECNICA
Learnings Orientamento unico
Academic Year 2014/2015
ECTS 6
Scientific Disciplinary Sector ING-IND/11
Year Second year
Time unit First semester
Class hours 48
Educational activity Educational activities chosen by the student (art.10, paragraph 5, letter a)

Single group

Professor CONCETTINA MARINO
Objectives eee
Programme Building Thermophysics
Fundamental Principles of Heat Transfer. conduction, convection and radiation. Conduction in transient regime. Numerical solution of the heat conduction equation. Steady state conduction in two and three dimensions. Combined phenomena (conduction, convection and radiation) of heat transfer.
Analysis of the building thermophysical performance. Modelling of the heat transfer phenomena through the building envelope structures in transient regime. Methods used to pattern the convective and radiative heat fluxes among the building surfaces and both the indoor and outdoor environments. Heat transfer coefficient of the building surfaces. Thermal storage capacity of buildings. Building thermal load.

Weather data
Climate data treatment. Weather Data for Simulation: reference year-type weather data. Calculation of sun's position in the sky. Sun path graphs. Solar radiation component. Methods to assess the solar radiation on a tilted surface. Hourly, daily, monthly average solar radiation.

The building energy performance certificate
The building sector contribute to the global final energy demand. Energy saving opportunity in the building sector. The European directives on the building energy performance and their transposition in the Italian law. Calculation of the building energy performance in accordance with the Italian and European technical rules. Procedure leading to the building energy certificate.
Books Course Notes

L. Schibuola, L. Cecchinato. Sistemi solari attivi e passivi degli edifici. Progetto Leonardo
Società editrice Esculapio s.r.l- Bologna.

A. K. Athienitis, M. Santamouris. Thermal Analysis and Design of Passive solar Buildings.
James & James (Science Publishers) Ltd. London, UK.

M. A. Cucumo, V. Marinelli, G. Oliveti. Ingegneria solare- principi ed applicazioni. Pitagora
Editrice Bologna.

M. Santamouris, D. Asimakopoulos. Passive Cooling of Buildings. James & James
(Science Publishers) Ltd. London, UK.

J. D. Balcomb. Passive solar buildings. The MIT Press Cambrige, Massachussetts.

V. Corrado, S. Paduos. La nuova legislazione sull’efficienza energetica degli edifici.
Requisiti e metodi di calcolo. Celid (Torino).
Traditional teaching method Yes
Distance teaching method No
Mandatory attendance No
Written examination evaluation No
Oral examination evaluation Yes
Aptitude test evaluation No
Project evaluation No
Internship evaluation No
Evaluation in itinere No
Practice Test No

Further information

Description Document
dispense (varie) Document
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