Course: Plant design of energy units in E3D

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Course title Plant design of energy units in E3D
Course code KKE/E3D
Organizational form of instruction Lecture + Tutorial
Level of course Master
Year of study not specified
Semester Winter
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)
  • Uxa Petr, Ing.
Course content
Content of lectures by weeks 1. Basic acquaintance with the E3D program, its modules and use; Introduction of the Model module, general settings, applications. 2. - 3. Detailed introduction and practice of the EQUIPMENT application used to create device models. 4. - 5. Detailed introduction of the PIPEWORK application used for detailed modeling of pipelines. 6. - 7. Detailed introduction of the STRUCTURES application used for modeling steel structures. 8. Inputs and influences for the design of the layout solution: Process parameters, pipe classes, layout options, boundary conditions. 9. Introduction to the "laser scanning" application for work in existing operations. 10. Pipeline inspection, introduction of the ISODRAFT module. 11. Introduction of the DRAW module. 12. Summary and recommendations, Final test project assignment and explication of the task. 13. Test project support. Content of exercises by weeks 1. Basic acquaintance with the E3D program, its modules and use; Introduction of the Model module, general settings, applications. 2. - 3. Detailed practice of the EQUIPMENT application, creation of equipment (vessels, pumps, exchangers) in the model. 4. - 5. Detailed practice of the PIPING application, creation of piping between devices. 6. - 7. Detailed practice of the STRUCTURE application, creation of floors, steel structures around the equipment. 8. Piping design according to the process diagram, pipe classes, layout design. 9. Detailed practice of the the laser scan data application. 10. Pipe checking, isometry creation, 3D model export to the freeware 3D viewer NavisWorks. 11. Creation of documentation using the DRAW module. 12. - 13. Elaboration of the final project.

Learning activities and teaching methods
Lecture, Practicum
  • Team project (50/number of students) - 25 hours per semester
  • Practical training (number of hours) - 26 hours per semester
prerequisite
Knowledge
use independently theory of energy machinery and devices
Skills
use computer technology skills for technical drawing AutoCAD
Competences
N/A
learning outcomes
Knowledge
understand the design of technological units in a coordinated model from the assignment phase to the completion of drawing documentation
Skills
use the E3D software solution to design large technological units
Competences
N/A
teaching methods
Knowledge
Lecture with visual aids
One-to-One tutorial
Skills
Practicum
Competences
Students' portfolio
assessment methods
Knowledge
Project
Skills
Project
Competences
Group presentation at a seminar
Recommended literature
  • Wilda, Vladimír. Projektování průmyslových potrubí a potrubních rozvodů. 1. vyd. Praha : SNTL, 1968.


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