PORTALE DELLA DIDATTICA

PORTALE DELLA DIDATTICA

PORTALE DELLA DIDATTICA

Elenco notifiche



Advanced topics in the finite element method

01QCEIW

A.A. 2019/20

Course Language

Inglese

Degree programme(s)

Doctorate Research in Ingegneria Aerospaziale - Torino

Course structure
Teaching Hours
Lezioni 20
Lecturers
Teacher Status SSD h.Les h.Ex h.Lab h.Tut Years teaching
Gherlone Marco Professore Ordinario IIND-01/D 20 0 0 0 8
Co-lectures
Espandi

Context
SSD CFU Activities Area context
*** N/A ***    
2019/20
PERIOD: FEBRUARY The Finite Element Method (FEM) is a numerical approach to solve partial differential equations and is widely adopted both in the industrial world and for scientific research. The aim of the course is to provide an overview on advanced topics regarding FEM, usually not covered by MS courses and applicable to different fields of engineering. However, examples and applications will be mainly focused on the structural analysis field. The course will be taught in English. Knowledge of some issues related to the use of the Finite Element Method (convergence, accuracy, locking phenomena, dynamic applications) and methods to address them (choice of shape functions). Awareness on the possibility to use the Finite Element Method in unconventional ways (to interpolate and integrate functions), in particular on complex geometric domains. Basic knowledge of the Finite Element Method.
PERIOD: FEBRUARY The Finite Element Method (FEM) is a numerical approach to solve partial differential equations and is widely adopted both in the industrial world and for scientific research. The aim of the course is to provide an overview on advanced topics regarding FEM, usually not covered by MS courses and applicable to different fields of engineering. However, examples and applications will be mainly focused on the structural analysis field. The course will be taught in English. Knowledge of some issues related to the use of the Finite Element Method (convergence, accuracy, locking phenomena, dynamic applications) and methods to address them (choice of shape functions). Awareness on the possibility to use the Finite Element Method in unconventional ways (to interpolate and integrate functions), in particular on complex geometric domains. Basic knowledge of the Finite Element Method.
The Finite Element Method (FEM) is a numerical approach to solve partial differential equations and is widely adopted both in the industrial world and for scientific research. The aim of the course is to provide an overview on advanced topics regarding FEM, usually not covered by MS courses and applicable to different fields of engineering. However, examples and applications will be mainly focused on the structural analysis field.
The Finite Element Method (FEM) is a numerical approach to solve partial differential equations and is widely adopted both in the industrial world and for scientific research. The aim of the course is to provide an overview on advanced topics regarding FEM, usually not covered by MS courses and applicable to different fields of engineering. However, examples and applications will be mainly focused on the structural analysis field.
0.Organizzazione dell'insegnamento Dopo aver presentato gli aspetti teorici del corso, è prevista una discussione con gli studenti sui contenuti e le modalità di redazione dell'elaborato finale. At the end of the theoretical lessons, a discussion with students on the contents and preparation of the final assignment will be scheduled. Testi richiesti o raccomandati: letture, dispense, altro materiale didattico Appunti e riferimenti bibliografici forniti dal docente. Testi consigliati per la parte teorica: • O. C. Zienkiewicz, R. L. Taylor, J. Z. Zhu, The Finite Element Method: Its Basis And Fundamentals, Elsevier • O. C. Zienkiewicz, R. L. Taylor, The Finite Element Method For Solid And Structural Mechanics, Elsevier Notes and references provided by the teacher. For further reading on the theoretical aspects of the course: • O. C. Zienkiewicz, R. L. Taylor, J. Z. Zhu, The Finite Element Method: Its Basis And Fundamentals, Elsevier • O. C. Zienkiewicz, R. L. Taylor, The Finite Element Method For Solid And Structural Mechanics, Elsevier Criteri, regole e procedure per l'esame Verrà richiesto di scrivere un breve report finale sulla possibile applicazione di uno dei concetti visti nel corso ad un problema di interesse dello studente. La valutazione finale sarà basata su tale report. A short report will be required on the application of one of the topics presented during the course to a problem related to each student’s activity. The final evaluation will be based on the report.
0.Organizzazione dell'insegnamento Dopo aver presentato gli aspetti teorici del corso, è prevista una discussione con gli studenti sui contenuti e le modalità di redazione dell'elaborato finale. At the end of the theoretical lessons, a discussion with students on the contents and preparation of the final assignment will be scheduled. Testi richiesti o raccomandati: letture, dispense, altro materiale didattico Appunti e riferimenti bibliografici forniti dal docente. Testi consigliati per la parte teorica: • O. C. Zienkiewicz, R. L. Taylor, J. Z. Zhu, The Finite Element Method: Its Basis And Fundamentals, Elsevier • O. C. Zienkiewicz, R. L. Taylor, The Finite Element Method For Solid And Structural Mechanics, Elsevier Notes and references provided by the teacher. For further reading on the theoretical aspects of the course: • O. C. Zienkiewicz, R. L. Taylor, J. Z. Zhu, The Finite Element Method: Its Basis And Fundamentals, Elsevier • O. C. Zienkiewicz, R. L. Taylor, The Finite Element Method For Solid And Structural Mechanics, Elsevier Criteri, regole e procedure per l'esame Verrà richiesto di scrivere un breve report finale sulla possibile applicazione di uno dei concetti visti nel corso ad un problema di interesse dello studente. La valutazione finale sarà basata su tale report. A short report will be required on the application of one of the topics presented during the course to a problem related to each student’s activity. The final evaluation will be based on the report.
La prima lezione si terrà il 14 febbraio alle ore 11:30 presso la Sala Audiovisivi del Laboratorio di Meccanica.
La prima lezione si terrà il 14 febbraio alle ore 11:30 presso la Sala Audiovisivi del Laboratorio di Meccanica.
Modalità di esame:
Exam:
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Gli studenti e le studentesse con disabilità o con Disturbi Specifici di Apprendimento (DSA), oltre alla segnalazione tramite procedura informatizzata, sono invitati a comunicare anche direttamente al/la docente titolare dell'insegnamento, con un preavviso non inferiore ad una settimana dall'avvio della sessione d'esame, gli strumenti compensativi concordati con l'Unità Special Needs, al fine di permettere al/la docente la declinazione più idonea in riferimento alla specifica tipologia di esame.
Exam:
In addition to the message sent by the online system, students with disabilities or Specific Learning Disorders (SLD) are invited to directly inform the professor in charge of the course about the special arrangements for the exam that have been agreed with the Special Needs Unit. The professor has to be informed at least one week before the beginning of the examination session in order to provide students with the most suitable arrangements for each specific type of exam.
Esporta Word