Course: null

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Course title -
Course code AUART/TAPD2
Organizational form of instruction Seminary
Level of course Master
Year of study not specified
Semester Summer
Number of ECTS credits 2
Language of instruction Czech
Status of course unspecified
Form of instruction Face-to-face
Work placements This is not an internship
Recommended optional programme components None
Lecturer(s)
  • Dlabaja Štěpán, Ing. Ph.D.
Course content
During the semester, the student will be introduced to selected topics from practice through presentations: Week 1 - Aerodynamics and hydrodynamics - laminar and turbulent flow Week 2 - Aerodynamics - Effect of faults, grooves and slots Week 3 - Aerodynamics - Non-stationary phenomena. Von Karman vortices, their risks and suppression Week 4 - Aerodynamics - Fundamentals of proper design with respect to aerodynamic performance Week 5 - Thermodynamics - Basic concepts and units. Conduction, convection, radiation Week 6 - Thermodynamics - Possible heat sources and their consideration in design Week 7 - Thermodynamics - Demonstration of computational methods for thermodynamic calculations Week 8 - 9 - Acoustics Week 11 - Fundamentals of design scripting Week 12 - Fundamentals of Design Scripting - Blender Python Week 13 - Design Scripting Basics - Unity and Unreal Engine

Learning activities and teaching methods
  • Participation in classes - 26 hours per semester
  • Home preparation for classes - 24 hours per semester
prerequisite
Knowledge
Prerequisite is credit from the course TAPD1
Prerequisite is credit from the course TAPD1
Skills
Prerequisite are the skills acquired in TAPD1
Prerequisite are the skills acquired in TAPD1
learning outcomes
Knowledge
Describe the effect of fractures, grooves and slots on the aerodynamic properties of objects.
Describe the effect of fractures, grooves and slots on the aerodynamic properties of objects.
Characterise the principles of good design with regard to aerodynamic performance
Characterise the principles of good design with regard to aerodynamic performance
Define basic concepts and units in thermodynamics
Define basic concepts and units in thermodynamics
Describe the different heat sources and their consideration in design.
Describe the different heat sources and their consideration in design.
Describe the basic principles of acoustics and their application in design
Describe the basic principles of acoustics and their application in design
Skills
Create a design optimised for aerodynamic performance
Create a design optimised for aerodynamic performance
Design with acoustic properties in mind
Design with acoustic properties in mind
Create a basic Blender Python script to automate and streamline design tasks
Create a basic Blender Python script to automate and streamline design tasks
Create an interactive scene in Unity or Unreal
Create an interactive scene in Unity or Unreal
Apply knowledge of thermodynamics to the design of buildings considering different heat sources
Apply knowledge of thermodynamics to the design of buildings considering different heat sources
teaching methods
Knowledge
Exercises on PC
Exercises on PC
Demonstration
Demonstration
Monologic (Exposition, lecture, briefing)
Monologic (Exposition, lecture, briefing)
Skills
Practice exercises
Practice exercises
Exercises on PC
Exercises on PC
assessment methods
Knowledge
Systematic observation of the student
Analysis of the student's performance
Systematic observation of the student
Analysis of the student's performance
Grade (Using a grade system)
Grade (Using a grade system)
Recommended literature
  • Stage lighting design. Second edition. .
  • Shigley, Joseph Edward. Konstruování strojních součástí. 1. vyd. Brno : VUTIUM, 2010. ISBN 978-80-214-2629-0.
  • ŠUMAN-HREBLAY, M. Aerodynamické automobily. Computer Press ČR 2013. 2013.


Study plans that include the course
Faculty Study plan (Version) Category of Branch/Specialization Recommended year of study Recommended semester