Degree Course: Civil engineering for natural hazard mitigation
A.Y. 2014/2015
Conoscenza e capacità di comprensione
I laureati avranno:
• conoscenze e capacità di comprensione che estendono e rafforzano quelle acquisite nella formazione di primo livello e consentono di elaborare e applicare idee originali anche in un contesto di ricerca;
• competenze avanzate ad ampio spettro nell'area dell'ingegneria delle strutture e delle opere di difesa del suolo e delle acque.
Questi obiettivi saranno perseguiti attraverso i corsi di insegnamento caratterizzanti, soprattutto quelli di natura formale e metodologica e saranno verificati attraverso i relativi esami.
Capacità di applicare conoscenza e comprensione
I laureati saranno in grado di applicare le conoscenze acquisite alla risoluzione di problemi complessi relativi a tematiche nuove o non familiari, inserite in contesti ampi (anche interdisciplinari) connessi all'ingegneria delle strutture e delle opere di difesa del territorio.
In tali ambiti, i laureati saranno in grado di integrare le conoscenze e di condurre autonomamente attività di analisi, progettazione, realizzazione e gestione di sistemi complessi, nonché di formulare giudizi anche sulla base di informazioni limitate o incomplete.
In particolare, gli ambiti applicativi che vengono approfonditi nel corso di laurea magistrale sono:
• nell'orientamento "strutture", la progettazione dal livello preliminare a quello esecutivo delle strutture civili, la valutazione della sicurezza delle opere civili, la progettazione degli interventi di riabilitazione e protezione delle strutture dalle azioni e dai rischi naturali;
• nell'orientamento "difesa idraulica", la progettazione dal livello preliminare a quello esecutivo degli interventi di difesa del suolo e delle acque, la valutazione del rischio idrogeologico.
Questi obiettivi saranno perseguiti attraverso i corsi di insegnamento teorico e progettuale, corredati da attività sperimentale, la redazione di una tesi di laurea magistrale e l'eventuale attività di tirocinio.
Autonomia di giudizio
Nell'ambito dell'area dell'ingegneria civile, i laureati magistrali saranno in grado di assumere responsabilità decisionali autonome in progetti anche di grandi dimensioni e di partecipare attivamente al processo decisionale in contesti anche interdisciplinari.
Questo obiettivo sarà perseguito attraverso corsi di insegnamento teorici e progettuali, oltre che con la redazione della tesi di laurea magistrale.
Esso sarà verificato attraverso i relativi esami di profitto e l'esame di laurea magistrale.
Abilità comunicative
I laureati magistrali saranno in grado di comunicare efficacemente e interagire sulle tematiche di interesse con interlocutori specialisti e non specialisti, anche di alto livello, in contesti interdisciplinari.
Questo obiettivo sarà perseguito e verificato attraverso gli esami di profitto e l'esame finale di laurea magistrale.
Capacità di apprendimento
I laureati magistrali avranno sviluppato le basi necessarie per procedere, in maniera autonoma, nell'aggiornamento professionale e nell'approfondimento di studi e ricerche.
Questo obiettivo sarà perseguito e verificato attraverso gli esami di profitto, la tesi di laurea magistrale e l'eventuale attività di tirocinio.Requisiti di ammissione
In relazione alla nuova disciplina in vigore per le Lauree Magistrali (120 cfu) il Collegio Didattico in Ingegneria Civile ha così individuato le conoscenze minime richieste per l'accesso alla Laurea Magistrale in Protezione del Territorio dai Rischi Naturali:
a) Attività formative di base: 36 cfu dagli ambiti disciplinari "matematica, informatica e statistica" e " fisica e chimica" previsti dal decreto 16 marzo 2007 del MUR per la classe delle Lauree L7 in Ingegneria Civile Ambientale.
b) Attività formative caratterizzanti: 45 cfu nei SSD "ICAR/01, ICAR/02,ICAR/07, ICAR/08, ICAR/09" presenti nel decreto 16 marzo 2007 del MUR per la classe delle Lauree L7 in Ingegneria Civile Ambientale, avendo sostenuto almeno un esame per ciascuno dei SSD indicati.
La valutazione del possesso delle dette conoscenze minime sarà realizzata tramite l'analisi del curriculum presentato e, eventualmente, con un colloquio.
Specificamente, sarà effettuata la verifica della personale preparazione con modalità definite nel regolamento didattico del corso di studio.
Prova finale
La prova finale è costituita dalla discussione di una tesi originale, elaborata in modo autonomo dallo studente sotto la guida di un relatore ed eventualmente di uno o più correlatori, in eventuale coordinamento con le attività di tirocinio.Sbocchi occupazionali e professionali previsti per i laureati
Gli ambiti professionali tipici del laureato magistrale in "Ingegneria Civile per la Protezione dai Rischi Naturali" sono:
- l'ambito della progettazione avanzata, della direzione dei lavori e della realizzazione di costruzioni civili, nonché di interventi di progettazione, recupero, riabilitazione, controllo delle strutture;
- l'ambito professionale della progettazione avanzata, della direzione dei lavori, e della realizzazione degli interventi di difesa del suolo e delle acque, nonché la valutazione del rischio idrogeologico e degli interventi di mitigazione relativi;
In relazione alle attività classificate dall'ISTAT
Fabbricazione di prodotti in calcestruzzo per l'edilizia
Lavori generali di costruzione per edifici e opere di ingegneria civile
Lavori di edilizia e genio civile
La costruzione di fabbricati e strade
Lavori generali di costruzione di edifici e lavori di ingegneria civile
Costruzione di opere di ingegneria civile: ponti, inclusi quelli per autostrade sopraelevate, viadotti, gallerie e sottopassaggi
Gestione di progetti di costruzione
Attività degli studi di architettura, ingegneria ed altri studi tecnici
Progettazione di edifici, direzione dei lavori di costruzione,
Attività di consulenza in campo ingegneristico, tecnico e di gestione di progetti connessi all'ingegneria civile, idraulica e delle strutture.
Orientamento in ingresso
Nel corso dell'anno accademico una Commissione ad hoc del Corso di Studio si occupa di fornire supporto agli studenti laureati triennali provenienti da altro ateneo.
La commissione:
- Valuta i Curricula pregressi degli studenti;
- Verifica i requisiti di ammissione e gli eventuali debiti formativi;
- Propone agli studenti un piano di studi con indicazione:
su eventuali corsi singoli da sostenere prima della ammissione;
su scelte di piano di studi individuale per finire di colmare i debiti formativi
Il Corso di Studio in breve
Il corso di laurea mira a formare laureati con solide basi metodologiche e con una elevata qualificazione professionale nell'area dell'Ingegneria Civile per la Protezione dai Rischi Naturali, che siano in grado di operare efficacemente nei numerosi settori applicativi che ne richiedono le competenze, di identificare, formulare e risolvere problemi complessi e/o che richiedano approcci e soluzioni originali, di promuovere e gestire l'innovazione tecnologica, di adeguarsi ai rapidi mutamenti tipici dei settori tecnici.
Lo studente espliciterà le proprie scelte al momento della presentazione,
tramite il sistema informativo di ateneo, del piano di completamento o del piano di studio individuale,
secondo quanto stabilito dal regolamento didattico del corso di studio.
Idraulica
FIRST YEAR
First semester
Course
|
Credits
|
Scientific Disciplinary Sector Code
|
Contact Hours
|
Exercise Hours
|
Laboratory Hours
|
Personal Study Hours
|
Type of Activity
|
Language
|
20801631 -
COMPUTATIONAL MECHANICS
(objectives)
THE PURPOSE OF THE COURSE IS TO FURNISH AN INTRODUCTION TO APPROXIMATE VARIATIONAL METHODS AND TO DIFFERENCE METHODS APPLIED TO ENGINEERING PROBLEMS. MATHEMATICAL MODELS FOR HYDRAULIC AND STRUCTURAL ENGINEERING WILL BE NUMERICAL SOLVED BY COMPUTER USING THE SOFTWARE MATHEMATICA
|
6
|
MAT/07
|
54
|
-
|
-
|
-
|
Related or supplementary learning activities
|
ITA |
20802069 -
PRESTRESSED CONCRETE STRUCTURES
(objectives)
THE COURSE AIMS TO PROVIDE STUDENTS ADDITIONAL KNOWLEDGE IN ADDITION TO WHAT ALREADY LEARNED IN PREVIOUS COURSES. EMPHASIS IS PAID ON STRUCTURES THAT REQUIRE AN ADEQUATE SPECIALIZATION: PRESTRESSED CONCRETE STRUCTURES AND COMPOSITE STEEL-CONCRETE. THE STUDENT WILL LEARN THE THEORETICAL AND ANALYTICAL-NUMERICAL TOOLS FOR THE DESIGN AND TESTING OF SUCH A STRUCTURES, WITH REFERENCE TO THE CURRENT NATIONAL CODE AND EUROCODES. FINALLY AN INTRODUCTION TO DESIGN METHODS OF D-REGIONS WILL BE PROVIDED.
|
7
|
ICAR/09
|
63
|
-
|
-
|
-
|
Core compulsory activities
|
ITA |
20802071 -
ADVANCED HYDRAULICS
(objectives)
The aim is to increase the knowledge of the fundamentals of the hydraulics, In particular kinematics and liquid dynamics in order to estimate the phenomenological behaviour and to calculate the acting forces. Outlines and suitable models are introduced for the treatment of complex hydraulic problems, as prerequisite for the courses of the hydraulic engineering area.
|
8
|
ICAR/01
|
72
|
-
|
-
|
-
|
Core compulsory activities
|
ITA |
Optional Group:
comune Orientamento unico AFFINI INTEGRATIVE - (show)
|
12
|
|
|
|
|
|
|
|
20801616 -
APPLIED GEOLOGY
(objectives)
It presents an overview of Earth Sciences, illustrating the basic concepts of geology: the form, materials, internal dynamics, geological cycles. It provides the basic tools for reading and interpretation of geological maps at different scales. It provides the skills necessary to interpret the geological survey. It provides information relating to natural hazards, natural resources and environmental impact
|
6
|
GEO/05
|
54
|
-
|
-
|
-
|
Related or supplementary learning activities
|
ITA |
20801617 -
MATERIALS FOR CIVIL ENGINEERING
|
Also available in another semester or year
|
20801621 -
ENVIRONMENTAL HEALTH ENGINEERING
(objectives)
TEACHING MAKES THE GENERAL TERMS, EVEN IN RELATION TO REGIONAL AND NATIONAL LEGISLATION ON WASTE MANAGEMENT (COLLECTION, TREATMENT AND DISPOSAL) AND RECLAMATION OF CONTAMINATED SITES.
|
6
|
ICAR/03
|
54
|
-
|
-
|
-
|
Related or supplementary learning activities
|
ITA |
20801641 -
PUBLIC WORKS' LEGISLATION AND LAW
(objectives)
The course aims to provide students with basic knowledge regarding the management of public works in the field of civil engineering. Particular references will be done to the current regulations, the administrative procedures, and conceptual and methodological aspects from which the related technical activities derive.
|
|
20801641-2 -
DIRITTO DEI LAVORI PUBBLICI
(objectives)
FORMATIVE AIMS THE COURSE AIMS TO PROVIDE STUDENTS WITH BASIC KNOWLEDGE REGARDING THE MANAGEMENT OF PUBLIC WORKS IN THE FIELD OF CIVIL ENGINEERING. PARTICULAR REFERENCES WILL BE DONE TO THE CURRENT REGULATIONS, THE ADMINISTRATIVE PROCEDURES, AND CONCEPTUAL AND METHODOLOGICAL ASPECTS FROM WHICH THE RELATED TECHNICAL ACTIVITIES DERIVE.
|
3
|
IUS/10
|
27
|
-
|
-
|
-
|
Related or supplementary learning activities
|
ITA |
20801641-1 -
DIRITTO AMMINISTRATIVO E DELL'AMBIENTE
(objectives)
FORMATIVE AIMS THE COURSE AIMS TO PROVIDE STUDENTS WITH BASIC KNOWLEDGE REGARDING THE MANAGEMENT OF PUBLIC WORKS IN THE FIELD OF CIVIL ENGINEERING. PARTICULAR REFERENCES WILL BE DONE TO THE CURRENT REGULATIONS, THE ADMINISTRATIVE PROCEDURES, AND CONCEPTUAL AND METHODOLOGICAL ASPECTS FROM WHICH THE RELATED TECHNICAL ACTIVITIES DERIVE.
|
3
|
IUS/10
|
27
|
-
|
-
|
-
|
Related or supplementary learning activities
|
ITA |
20801643 -
PURIFICATION PLANTS
|
Also available in another semester or year
|
20801669 -
SAFETY AT WORK AND ENVIRONMENTAL DEFENCE
(objectives)
ITALIAN DECREE 81.08 AND BS OHSAS 18001:07. WHY ORGANIZATIONS ARE IMPLEMENTING AN OCCUPATIONAL HEALTH AND SAFETY MANAGEMENT SYSTEM (OHSMS) AS PART OF THEIR RISK MANAGEMENT STRATEGY TO ADDRESS CHANGING LEGISLATION AND PROTECT THEIR WORKFORCE? THE ITALIAN DVR (RISK ASSESSMENT DOCUMENT) AND THE ART. 30. THE OHSMS AS A TOOL OF PROMOTION OF SAFE AND HEALTHY WORKING ENVIRONMENT. LEGISLATIVE COMPLIANCE AND OVERALL PERFORMANCE IMPROVING. OHSAS 18001:07 E UNI INAIL GUIDE LINES. THE INTERNATIONALLY RECOGNIZED ASSESSMENT SPECIFICATION FOR OCCUPATIONAL HEALTH AND SAFETY MANAGEMENT SYSTEMS. THE OHSAS 18001:07 COMPATIBILITY WITH ISO 9001 AND ISO 14001. THE PLAN – DO –CHECK – ACT SYSTEM. THE DEMING WHEEL. IMPROVING THE OCCUPATIONAL HEALTH AND SAFETY MANAGEMENT SYSTEM (OHSMS). PLANNING FOR HAZARD IDENTIFICATION, RISK ASSESSMENT AND RISK CONTROL. OHSAS MANAGEMENT PROGRAMME. STRUCTURE AND RESPONSIBILITY. TRAINING, AWARENESS AND COMPETENCE. CONSULTATION AND COMMUNICATION. OPERATIONAL CONTROL. EMERGENCY PREPAREDNESS AND RESPONSE. PERFORMANCE MEASURING, MONITORING AND IMPROVEMENT. OHSAS 18001:07 CONCLUSIONS. OHSMS AS AN EFFECTIVE TOOL TO REDUCE THE RISKS ASSOCIATED WITH HEALTH AND SAFETY IN THE WORKING ENVIRONMENT FOR EMPLOYEES, CUSTOMERS AND THE GENERAL PUBLIC. DATA AND CASE STUDIES.
|
6
|
ING-IND/28
|
54
|
-
|
-
|
-
|
Related or supplementary learning activities
|
ITA |
20801672 -
ENVIRONMENTAL TECHNICAL PHYSICS
|
Also available in another semester or year
|
20802041 -
RETROFITTING OF STRUCTURES
(objectives)
THE AIM OF THE COURSE IS TO PROVIDE THE TOOLS FOR STRUCTURAL ASSESSMENT OF EXISTING CONSTRUCTIONS. THE MAIN ISSUES CONCERNING MASONRY AND R.C. STRUCTURES ARE CONSIDERED, INCLUDING RECURRING FAILURE CONDITIONS, INSPECTION METHODS, STRENGTHENING CRITERIA AND STRUCTURAL REHABILITATION TECHNIQUES.
|
6
|
ICAR/19
|
54
|
-
|
-
|
-
|
Related or supplementary learning activities
|
ITA |
20802129 -
Fundamentals of Business and Accounting for students of Engineering
|
Also available in another semester or year
|
|
Second semester
Course
|
Credits
|
Scientific Disciplinary Sector Code
|
Contact Hours
|
Exercise Hours
|
Laboratory Hours
|
Personal Study Hours
|
Type of Activity
|
Language
|
20801636 -
APPLIED HYDROLOGY
(objectives)
THE COURSE DEVELOPS THE PRINCIPAL NOTIONS OF HYDROLOGY, BOTH SURFACE AND SUBSURFACE, AND INTRODUCES THE MODELING PROCEDURES FOR THE MAIN HYDROLOGICAL FEATURES OF PRACTICAL INTEREST. THE COURSE IS DIVIDED IN TWO PARTS: (I) A SERIES OF LECTURES FOCUSES ON THE BASIS KNOWLEDGE OF THE HYDROLOGICAL SCIENCE AND (II) TWO STUDY CASES TO BE DEVELOPED BY THE CLASS.
|
9
|
ICAR/02
|
81
|
-
|
-
|
-
|
Core compulsory activities
|
ITA |
20801648 -
PROBABILITY AND STATISTICS
(objectives)
TO PROVIDE THE FUNDAMENTAL ELEMENTS OF PROBABILITY THEORY AND MATHEMATICAL STATISTICS, ALONG WITH SOME TOOLS OF PARAMETRIC STATISTICS, WHICH MAY BE USEFUL IN PRACTICE.
|
6
|
MAT/06
|
54
|
-
|
-
|
-
|
Related or supplementary learning activities
|
ITA |
20802028 -
GEOTECHNICS II
(objectives)
GEOTECHNICAL ANALYSIS, DESIGN CRITERIA AND CONSTRUCTION TECHNIQUES OF FOUNDATIONS AND RETAINING STRUCTURES.
|
9
|
ICAR/07
|
81
|
-
|
-
|
-
|
Core compulsory activities
|
ITA |
Optional Group:
comune Orientamento unico AFFINI INTEGRATIVE - (show)
|
12
|
|
|
|
|
|
|
|
|
SECOND YEAR
First semester
Course
|
Credits
|
Scientific Disciplinary Sector Code
|
Contact Hours
|
Exercise Hours
|
Laboratory Hours
|
Personal Study Hours
|
Type of Activity
|
Language
|
20802106 -
COASTAL ENGINEERING
(objectives)
To provide students with basic knowledge of Coastal and Maritime Engineering. Understanding of the basic meteoceanographic and hydraulic coastal processes: wind, currents, tides, waves. To provide with the fundamental design tools/methods for the design of coastal structures, with specific reference to rubble mound and caisson breakwaters. Basic rules for planning and designing harbours, with specific reference to marinas.
|
9
|
ICAR/02
|
81
|
-
|
-
|
-
|
Core compulsory activities
|
ITA |
Optional Group:
IDRAULICA Orientamento unico 6 CFU A SCELTA ICAR/01 - (show)
|
6
|
|
|
|
|
|
|
|
|
Optional Group:
IDRAULICA Orientamento unico 6 CFU A SCELTA ICAR/02 - (show)
|
6
|
|
|
|
|
|
|
|
|
Second semester
Course
|
Credits
|
Scientific Disciplinary Sector Code
|
Contact Hours
|
Exercise Hours
|
Laboratory Hours
|
Personal Study Hours
|
Type of Activity
|
Language
|
Optional Group:
IDRAULICA Orientamento unico 6 CFU A SCELTA ICAR/01 - (show)
|
6
|
|
|
|
|
|
|
|
|
Optional Group:
IDRAULICA Orientamento unico 6 CFU A SCELTA ICAR/02 - (show)
|
6
|
|
|
|
|
|
|
|
20801647 -
HYDRAULIC PROTECTION OF LAND
(objectives)
THE COURSE PROVIDE STUDENTS WITH THE SCIENTIFIC AND TECHNICAL BACKGROUND NECESSARY TO DESIGN THE MOST APPROPRIATE HYDRAULIC WORKS FOR LAND PROTECTION AGAINST FLOODS AND FLUVIAL EROSION.
|
6
|
ICAR/02
|
54
|
-
|
-
|
-
|
Core compulsory activities
|
ITA |
20802083 -
DESIGN OF HARBOURS AND MARITIME STRUCTURES
(objectives)
THE HYDRAULIC DESIGN OF HARBOURS AND MARITIME STRUCTURES IS DEVELEOPED. STUDENTS DEVELOP DESIGN DRAWINGS AND TECHNICAL REPORTS. METHODS FOR THE PLANNING AND THE DESIGN OF HARBOURS ARE EXPLAINED, WITH REFERENCE TO COMMEERCIAL/INDUSTRIAL TERMINALS AND MARINAS.ELEMENTS OF WAVE THEORIES AND NUMERICAL MODELLING ARE ALSO PROVIDED AS SUPPORT TO DESIGN ACTIVITIES.
|
6
|
ICAR/02
|
54
|
-
|
-
|
-
|
Core compulsory activities
|
ITA |
20801644 -
WATER QUALITY MANAGEMENT
|
Also available in another semester or year
|
|
20810000 -
A SCELTA STUDENTE
|
12
|
|
-
|
-
|
-
|
-
|
Elective activities
|
ITA |
20802015 -
TRAINING
|
6
|
|
54
|
-
|
-
|
-
|
Other activities
|
ITA |
20801908 -
DEGREE THESIS
|
24
|
|
300
|
-
|
-
|
-
|
Final examination and foreign language test
|
ITA |
Strutture
FIRST YEAR
First semester
Course
|
Credits
|
Scientific Disciplinary Sector Code
|
Contact Hours
|
Exercise Hours
|
Laboratory Hours
|
Personal Study Hours
|
Type of Activity
|
Language
|
20801631 -
COMPUTATIONAL MECHANICS
(objectives)
THE PURPOSE OF THE COURSE IS TO FURNISH AN INTRODUCTION TO APPROXIMATE VARIATIONAL METHODS AND TO DIFFERENCE METHODS APPLIED TO ENGINEERING PROBLEMS. MATHEMATICAL MODELS FOR HYDRAULIC AND STRUCTURAL ENGINEERING WILL BE NUMERICAL SOLVED BY COMPUTER USING THE SOFTWARE MATHEMATICA
|
6
|
MAT/07
|
54
|
-
|
-
|
-
|
Related or supplementary learning activities
|
ITA |
20801651 -
STRUCTURAL DYNAMICS
(objectives)
A GOAL OF THE COURSE IS TO SHOW THE COMMON FORMAL STRUCTURE SHARED BY ALL THE TYPICAL PROBLEMS OF LINEAR ELASTO-DYNAMICS AND TO ILLUSTRATE THE ANALYTICAL METHODS USED TO GRASP SUCH PROBLEMS; MOREOVER, SOME PROTOTYPE PROBLEMS WILL BE EXTENSIVELY ANALYZED AND EXPOUNDED. AS A COMPLEMENT, ARE PROVIDED COMPUTER PRACTICALS WITH THE USE OF SCIENTIFIC SOFTWARE TO IMPLEMENT THE PROBLEMS STUDIED.
|
6
|
ICAR/08
|
54
|
-
|
-
|
-
|
Core compulsory activities
|
ITA |
20802069 -
PRESTRESSED CONCRETE STRUCTURES
(objectives)
THE COURSE AIMS TO PROVIDE STUDENTS ADDITIONAL KNOWLEDGE IN ADDITION TO WHAT ALREADY LEARNED IN PREVIOUS COURSES. EMPHASIS IS PAID ON STRUCTURES THAT REQUIRE AN ADEQUATE SPECIALIZATION: PRESTRESSED CONCRETE STRUCTURES AND COMPOSITE STEEL-CONCRETE. THE STUDENT WILL LEARN THE THEORETICAL AND ANALYTICAL-NUMERICAL TOOLS FOR THE DESIGN AND TESTING OF SUCH A STRUCTURES, WITH REFERENCE TO THE CURRENT NATIONAL CODE AND EUROCODES. FINALLY AN INTRODUCTION TO DESIGN METHODS OF D-REGIONS WILL BE PROVIDED.
|
7
|
ICAR/09
|
63
|
-
|
-
|
-
|
Core compulsory activities
|
ITA |
Optional Group:
comune Orientamento unico AFFINI INTEGRATIVE - (show)
|
12
|
|
|
|
|
|
|
|
20801616 -
APPLIED GEOLOGY
(objectives)
It presents an overview of Earth Sciences, illustrating the basic concepts of geology: the form, materials, internal dynamics, geological cycles. It provides the basic tools for reading and interpretation of geological maps at different scales. It provides the skills necessary to interpret the geological survey. It provides information relating to natural hazards, natural resources and environmental impact
|
6
|
GEO/05
|
54
|
-
|
-
|
-
|
Related or supplementary learning activities
|
ITA |
20801617 -
MATERIALS FOR CIVIL ENGINEERING
|
Also available in another semester or year
|
20801621 -
ENVIRONMENTAL HEALTH ENGINEERING
(objectives)
TEACHING MAKES THE GENERAL TERMS, EVEN IN RELATION TO REGIONAL AND NATIONAL LEGISLATION ON WASTE MANAGEMENT (COLLECTION, TREATMENT AND DISPOSAL) AND RECLAMATION OF CONTAMINATED SITES.
|
6
|
ICAR/03
|
54
|
-
|
-
|
-
|
Related or supplementary learning activities
|
ITA |
20801641 -
PUBLIC WORKS' LEGISLATION AND LAW
(objectives)
The course aims to provide students with basic knowledge regarding the management of public works in the field of civil engineering. Particular references will be done to the current regulations, the administrative procedures, and conceptual and methodological aspects from which the related technical activities derive.
|
|
20801641-2 -
DIRITTO DEI LAVORI PUBBLICI
(objectives)
FORMATIVE AIMS THE COURSE AIMS TO PROVIDE STUDENTS WITH BASIC KNOWLEDGE REGARDING THE MANAGEMENT OF PUBLIC WORKS IN THE FIELD OF CIVIL ENGINEERING. PARTICULAR REFERENCES WILL BE DONE TO THE CURRENT REGULATIONS, THE ADMINISTRATIVE PROCEDURES, AND CONCEPTUAL AND METHODOLOGICAL ASPECTS FROM WHICH THE RELATED TECHNICAL ACTIVITIES DERIVE.
|
3
|
IUS/10
|
27
|
-
|
-
|
-
|
Related or supplementary learning activities
|
ITA |
20801641-1 -
DIRITTO AMMINISTRATIVO E DELL'AMBIENTE
(objectives)
FORMATIVE AIMS THE COURSE AIMS TO PROVIDE STUDENTS WITH BASIC KNOWLEDGE REGARDING THE MANAGEMENT OF PUBLIC WORKS IN THE FIELD OF CIVIL ENGINEERING. PARTICULAR REFERENCES WILL BE DONE TO THE CURRENT REGULATIONS, THE ADMINISTRATIVE PROCEDURES, AND CONCEPTUAL AND METHODOLOGICAL ASPECTS FROM WHICH THE RELATED TECHNICAL ACTIVITIES DERIVE.
|
3
|
IUS/10
|
27
|
-
|
-
|
-
|
Related or supplementary learning activities
|
ITA |
20801643 -
PURIFICATION PLANTS
|
Also available in another semester or year
|
20801669 -
SAFETY AT WORK AND ENVIRONMENTAL DEFENCE
(objectives)
ITALIAN DECREE 81.08 AND BS OHSAS 18001:07. WHY ORGANIZATIONS ARE IMPLEMENTING AN OCCUPATIONAL HEALTH AND SAFETY MANAGEMENT SYSTEM (OHSMS) AS PART OF THEIR RISK MANAGEMENT STRATEGY TO ADDRESS CHANGING LEGISLATION AND PROTECT THEIR WORKFORCE? THE ITALIAN DVR (RISK ASSESSMENT DOCUMENT) AND THE ART. 30. THE OHSMS AS A TOOL OF PROMOTION OF SAFE AND HEALTHY WORKING ENVIRONMENT. LEGISLATIVE COMPLIANCE AND OVERALL PERFORMANCE IMPROVING. OHSAS 18001:07 E UNI INAIL GUIDE LINES. THE INTERNATIONALLY RECOGNIZED ASSESSMENT SPECIFICATION FOR OCCUPATIONAL HEALTH AND SAFETY MANAGEMENT SYSTEMS. THE OHSAS 18001:07 COMPATIBILITY WITH ISO 9001 AND ISO 14001. THE PLAN – DO –CHECK – ACT SYSTEM. THE DEMING WHEEL. IMPROVING THE OCCUPATIONAL HEALTH AND SAFETY MANAGEMENT SYSTEM (OHSMS). PLANNING FOR HAZARD IDENTIFICATION, RISK ASSESSMENT AND RISK CONTROL. OHSAS MANAGEMENT PROGRAMME. STRUCTURE AND RESPONSIBILITY. TRAINING, AWARENESS AND COMPETENCE. CONSULTATION AND COMMUNICATION. OPERATIONAL CONTROL. EMERGENCY PREPAREDNESS AND RESPONSE. PERFORMANCE MEASURING, MONITORING AND IMPROVEMENT. OHSAS 18001:07 CONCLUSIONS. OHSMS AS AN EFFECTIVE TOOL TO REDUCE THE RISKS ASSOCIATED WITH HEALTH AND SAFETY IN THE WORKING ENVIRONMENT FOR EMPLOYEES, CUSTOMERS AND THE GENERAL PUBLIC. DATA AND CASE STUDIES.
|
6
|
ING-IND/28
|
54
|
-
|
-
|
-
|
Related or supplementary learning activities
|
ITA |
20801672 -
ENVIRONMENTAL TECHNICAL PHYSICS
|
Also available in another semester or year
|
20802041 -
RETROFITTING OF STRUCTURES
(objectives)
THE AIM OF THE COURSE IS TO PROVIDE THE TOOLS FOR STRUCTURAL ASSESSMENT OF EXISTING CONSTRUCTIONS. THE MAIN ISSUES CONCERNING MASONRY AND R.C. STRUCTURES ARE CONSIDERED, INCLUDING RECURRING FAILURE CONDITIONS, INSPECTION METHODS, STRENGTHENING CRITERIA AND STRUCTURAL REHABILITATION TECHNIQUES.
|
6
|
ICAR/19
|
54
|
-
|
-
|
-
|
Related or supplementary learning activities
|
ITA |
20802129 -
Fundamentals of Business and Accounting for students of Engineering
|
Also available in another semester or year
|
|
Second semester
Course
|
Credits
|
Scientific Disciplinary Sector Code
|
Contact Hours
|
Exercise Hours
|
Laboratory Hours
|
Personal Study Hours
|
Type of Activity
|
Language
|
20801615 -
THEORY OF STRUCTURES
(objectives)
VARIATIONAL AND ENERGY FORMULATIONS OF EQUILIBIUM IN LINEAR ELASTICITY, AND THEIR USE IN APPOXIMATE METHODS OF SOLUTION OF EQUILIBRIUM PROBLEMS; APPLICATIONS TO EQUILIBRIUM OF PLATES.
|
6
|
ICAR/08
|
54
|
-
|
-
|
-
|
Core compulsory activities
|
ITA |
20801648 -
PROBABILITY AND STATISTICS
(objectives)
TO PROVIDE THE FUNDAMENTAL ELEMENTS OF PROBABILITY THEORY AND MATHEMATICAL STATISTICS, ALONG WITH SOME TOOLS OF PARAMETRIC STATISTICS, WHICH MAY BE USEFUL IN PRACTICE.
|
6
|
MAT/06
|
54
|
-
|
-
|
-
|
Related or supplementary learning activities
|
ITA |
20802028 -
GEOTECHNICS II
(objectives)
GEOTECHNICAL ANALYSIS, DESIGN CRITERIA AND CONSTRUCTION TECHNIQUES OF FOUNDATIONS AND RETAINING STRUCTURES.
|
9
|
ICAR/07
|
81
|
-
|
-
|
-
|
Core compulsory activities
|
ITA |
20802082 -
CONSTRUCTIONS IN SEISMIC ZONES
(objectives)
Bases for design of structures in seismic areas are given. The course consists of a theoretical part in which main aspects of dynamic response and seismic design of different materials and structural typologies are given including an overview of national and international Codes for design. Furthermore a practical application for the design of a structure: a building or a simple structure, is carried out by the students for the entire period of the course. A modulus on seismology is a further essential part of the course.
|
8
|
ICAR/09
|
72
|
-
|
-
|
-
|
Core compulsory activities
|
ITA |
Optional Group:
comune Orientamento unico AFFINI INTEGRATIVE - (show)
|
12
|
|
|
|
|
|
|
|
|
SECOND YEAR
First semester
Course
|
Credits
|
Scientific Disciplinary Sector Code
|
Contact Hours
|
Exercise Hours
|
Laboratory Hours
|
Personal Study Hours
|
Type of Activity
|
Language
|
20802106 -
COASTAL ENGINEERING
(objectives)
To provide students with basic knowledge of Coastal and Maritime Engineering. Understanding of the basic meteoceanographic and hydraulic coastal processes: wind, currents, tides, waves. To provide with the fundamental design tools/methods for the design of coastal structures, with specific reference to rubble mound and caisson breakwaters. Basic rules for planning and designing harbours, with specific reference to marinas.
|
9
|
ICAR/02
|
81
|
-
|
-
|
-
|
Core compulsory activities
|
ITA |
Second semester
Course
|
Credits
|
Scientific Disciplinary Sector Code
|
Contact Hours
|
Exercise Hours
|
Laboratory Hours
|
Personal Study Hours
|
Type of Activity
|
Language
|
20801654 -
BRIDGE THEORY AND DESIGN
(objectives)
The course aims at providing to the student the basic knowledge and analysis tools concerning the design of bridges, with particular reference to small to medium span bridges of simple typology. During the lectures, construction procedures and analysis methods of bridges are shown, including some criteria that guide the student to different design choices. As application, the student will carry out a simple design of a railway or road bridge under the guide of the instructor.
|
9
|
ICAR/09
|
81
|
-
|
-
|
-
|
Core compulsory activities
|
ITA |
20810000 -
A SCELTA STUDENTE
|
12
|
|
-
|
-
|
-
|
-
|
Elective activities
|
ITA |
20802015 -
TRAINING
|
6
|
|
54
|
-
|
-
|
-
|
Other activities
|
ITA |
20801908 -
DEGREE THESIS
|
24
|
|
300
|
-
|
-
|
-
|
Final examination and foreign language test
|
ITA |