Modules | Area | Type | Hours | Teacher(s) | |
SOSTENIBILITA' AMBIENTALE ED ENERGETICA NELL'ARCHITETTURA | ING-IND/11 | LEZIONI | 108 |
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The teaching aims, analyzing concrete cases, to help develop the student's ability to develop design solutions, aimed at innovation and sustainability in the construction sector. In particular, the student will be able to acquire knowledge regarding environmental sustainability protocols
For the assessment of the knowledge will be carried out tests in itinere using tests and / or meetings between the teacher and the group of students who develops the project
The assessment of ongoing knowledge will be added to the final evaluation which will consist of the oral test and the preparation of a report.
the student will be able to present in a written report the results of the analysis activity of the environmental energy sustainability protocols
The student will have to prepare and present a written report showing the results of the project activity
The student can acquire and / or develop sensitivity to energy and environmental issues
During the group work, the procedures for defining responsibilities, managing and organizing the project phases are verified
Following the seminar activities students will be asked to provide short reports on the topics covered
Conoscenze base di Fisica tecnica ambientale
Conoscenze di tematiche ambientali ed anergetiche
Basic knowledge of environmental technical physics
Knowledge of environmental and anergy themes
way in which the lessons are held: lectures, with the aid of slides
how the classroom / laboratory exercises take place: groups are formed, the personal PCs of the students are used
type of support tools: websites and seminars
type of interaction between student and teacher: use of receptions, use of e-mail and other communication tools
presence of educational projects
presence of intermediate tests
partial use of languages other than Italian
Formazione di gruppi di lavoro per la redazione del progetto finale e l’ elaborazione di una ricerca di approfondimento su alcune parole chiave del corso (. Modalità: in formato doc da consegnare (entro il 25 marzo) ed in formato PPT da presentare (prima dell’esame finale)
Viene richiesta la redazione di due tipologie di certificazione: una energetica, secondo la normativa nazionale, ed una ambientale, secondo il protocollo CasaClima Nature.
Le due certificazioni verranno eseguite ante e post interventi di miglioramento delle prestazioni termiche dell’involucro opaco e finestrato.
L’obiettivo del progetto sarà, oltre quello di prendere dimestichezza con alcuni software di valutazione energetica e ambientale presenti sul mercato nazionale, anche di comprendere le caratteristiche e le differenze delle due tipologie di protocolli e di saperne confrontare i risultati non solo in termini di impatto ambientale ma anche di rapporto costi/benefici.
The frame of reference
Sustainable architecture, environmental architecture, energy architecture: definitions and examples. Ecobuilding, almost zero or zero energy building. Eco-architecture.
Effects of environmental policies and legislation in the planning of the building process
Analysis and evaluation of the ecocompatibility of a building: the "life cycle" approach
Tools for assessing sustainability in the building process
Evaluation tools for building energy efficiency
Calculation of the energy needs of a building: examples of calculation
Interventions for energy improvement of buildings: opaque and windowed components, thermo-hygrometric characteristics, tools for energy diagnosis: thermography, thermoflowmeter, air tightness test
Tools for assessing sustainability in the building process
Assessment tools for the environmental sustainability of the building life cycle: International protocols for the energy-environmental certification of buildings. The BREEAM system. The LEED system. The GBC system. The PassivHouse system.
National protocols for the energy-environmental certification of buildings. The ITACA protocol. The CasaClima protocols
Assessment tools for the environmental compatibility of products: CE marking, international ecological brands
Minimum environmental criteria in construction and rating systems.
Goals on sustainable well-being
Thermo hygrometric (sustainable) wellbeing
Wellness and indoor air: natural and mechanical ventilation of confined spaces
Energy requalification and hygrometric correction of an envelope
Inertia accumulation and summer overheating
Materials for sustainable construction
Materials with structural function and binder
Thermal insulation: in-depth sheets, examples.
Energy saving systems
window systems, double-skin façade,
green roofs and hanging gardens,
coat systems,
plant systems: in-depth sheets, examples.
Constructive techniques for sustainable architecture, examples.
Fragarò Francesca (Curatore) Hoepli (Milano)
Domenico D’Olimpio
Editore: Legislazione tecnica
Roberto Giorndano
Editore: Esselibri
Curatore: C. Benedetti
Editore: Bozen-Bolzano University Press
Curatore: C. Benedetti
Editore:Bozen-Bolzano University Press
Curatore: C. Benedetti
Editore:Bozen-Bolzano University Press
Materiale fornito dal docente
Si consiglia la frequenza.
Prova orale con discussione degli elaborati realizzati durante le attività di esercitazione/laboratorio, svolte anche in gruppo, inerenti gli argomenti trattati durante le lezioni.
Oral exam with discussion of the papers produced during the exercise / laboratory activities, also carried out in groups, concerning the topics covered during the lessons.