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Generali:

  • Dipartimento: Ingegneria
  • Settore Ministeriale: ING-IND/14
  • Codice di verbalizzazione: 80300191
  • Metodi di insegnamento: Frontale E Altro
  • Metodi di valutazione: Scritto E Orale
  • Prerequisiti: There are no formal prerequisites.
  • Obiettivi: KNOWLEDGE AND UNDERSTANDING: The course aims to provide knowledge on the theoretical and applicative methodological aspects of advanced topics of structural calculation in the aerospace and aeronautical fields. The course presents continuity with the classes of structural mechanics, providing in-depth knowledge of the aerospace structures typologies and the calculation methods used for their sizing and verification. Design issues regarding the modeling of aerospace structures as a whole and of their primary and secondary components are addressed so as to be able to critically address the main design challenges of the sector with advanced numerical simulation tools. In particular, the course provides skills on the static, dynamic and stability behavior of these structures, considering architectures made of composite material. APPLYING KNOWLEDGE AND UNDERSTANDING: At the end of the course, the student will acquire the skills necessary to design and/or verify structural elements in the aerospace and aeronautical fields, verifying their resistance and reliability. The student will learn advanced tools to model and solve complex structural analysis problems through simulation with theoretical and numerical tools, developing the ability to perform preliminary and detailed evaluations of stress and deformation states using approaches of increasing complexity. This ability will be demonstrated by carrying out a project concerning a problem of applicative interest and utilizing multidisciplinary topics. MAKING JUDGMENTS and COMMUNICATION SKILLS: The project execution requires the usage of numerical simulation tools. The student will have to face and resolve specific problems of functional understanding, resistance, and evaluation of design alternatives in the context of aerospace structures, contributing to developing autonomy of judgment. The need to identify important elements and their relationships in the definition of a simulation model further stimulates the autonomy of judgment. The presentation and discussion of the contents, the sharing of design choices, methodologies and results of the individual projects assigned at the beginning of the course also contribute to developing communication skills. LEARNING SKILLS: Learning ability will be favored by carrying out the project regarding a topic defined at the beginning of the course. Furthermore, numerous bibliographical sources will be suggested and additional readings will be encouraged to complete and deepen preparation in more specific areas.
  • Ricevimento: Per appuntamento

Didattica:

  • A.A.: 2026/2027
  • Canale: UNICO
  • Crediti: 6