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Automated Design and Technological Preparation of Chemical Equipment
Major: Processes and Equipment of Chemical Plants
Code of subject: 7.161.09.E.022
Credits: 5.00
Department: Chemical Engineering
Lecturer: Roman Hosovskyi
Semester: 2 семестр
Mode of study: денна
Завдання: The study of an educational discipline involves the formation of competencies in students of education:
Integral competence (INT):
Ability to solve complex specialized tasks and problems of chemical technologies and engineering during professional activity or in the process of learning, which involves conducting research and/or implementing innovations and characterized by complexity and uncertainty of conditions and requirements.
general competences:
ZK2. Ability to apply knowledge in practical situations.
ZK3. Ability to search, process and analyze information from various sources.
professional competences:
FK1. Ability to research, classify and analyze quality indicators of chemical products, technological processes and equipment of chemical production.
FK3. Ability to use the results of scientific research and research and development for the improvement of existing and/or development of new technologies and equipment of chemical industries.
FK4. Ability to use modern special scientific equipment and software when conducting experimental research and conducting research and development in the field of chemical technologies and engineering.
FC5. Possession of working skills in specialized software designed for computer and (or) numerical modeling, engineering analysis and automated design preparation of industrial equipment of chemical production and related technological processes.
Learning outcomes: As a result of studying the academic discipline, the student must be able to demonstrate the following program learning outcomes:
1. Knowledge of the capabilities of modern modeling software and engineering analysis of chemical-technological processes and computer models of chemical technology equipment.
2. Ability to analyze and implement physical and mathematical models in the SOLIDWORKS software complex and its SOLIDWORKS Flow Simulation module.
Required prior and related subjects: Physics
Higher mathematics
Physical chemistry
Processes and devices of chemical technology
Machines and devices of chemical industries
Basics of aided design
Numerical modeling of hydromechanical processes
Numerical modeling of mass transfer processes
Numerical modeling of chemical reactors
Summary of the subject: The discipline allows to master the basics of computer modeling, verification, optimization of chemical-technological processes and chemical technology devices using the SOLIDWORKS automated design and engineering analysis software complex and the SOLIDWORKS Flow Simulation module.
Опис: Basic capabilities of Solidworks Flow Simulation
New Project Setup Wizard. Engineering database in Solidworks Flow Simulation. Entry of atypical environments into the engineering database
Project settings: calculation area, flows, boundary conditions, targets, grid. Solver. Output of project results
Parametric modeling in Solidworks Flow Simulation
Variable setting of the grid of the calculation area
Calculation of the external problem of hydrodynamics in Solidworks Flow Simulation. The use of equations in the selection of project goals
Modeling mixing of fluid flows in Solidworks Flow Simulation
Investigating the effectiveness of particle trapping in SolidWorks Flow Simulation
Investigation of porous media in SolidWorks Flow Simulation
Assessment methods and criteria: Examination control, oral survey, current control, performance of practical, laboratory work.
Критерії оцінювання результатів навчання: Current control 30
Examination control 70
Total for discipline 100
Recommended books: Basic
1. Flow Simulation 2022 Technical Reference. 158 p.
2. Tutorials Solidworks Flow Simulation 2022. 478 p.
Auxiliary
1. Ivashchuk O. S. Fundamentals of engineering analysis and preparation of production of chemical equipment. part 1: training manual / O. S. Ivashchuk. – Lviv: Publishing House of Lviv Polytechnic, 2020. – 140 p. – ISBN 978-966-941-562-2.