Двигуни внутрішнього згоряння, установки та технічна експлуатація Internal Combustion Engines, Plants and Technical Maintenance Department

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Двигуни внутрішнього згоряння, установки та технічна експлуатація Internal Combustion Engines, Plants and Technical Maintenance Department

INFORMATION BASES OF DESIGN SYSTEM IN POWER ENGINEERING

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Type: selectiveLecturer: Olexander MitrofanovYear of preparation: 3rdSemester: 5thNumber of credits: 5 Number of modules: 1Number of content modules: 3Total number of hours: 150Type of control: залікWork programme 2024

Hours distribution

  • FULL-TIME FORM 

    Lectures

    30

    Practical

    30

    Independent work

    90

    Total

    150

  • PART-TIME FORM

    Lectures

    6

    Practical

    6

    Independent work

    138

    Total

    150

FULL-TIME FORM 

PART-TIME FORM

  • Lectures

    30

    6

  • Practical

    30

    6

  • Independent work

    90

    138

  • Total

    150

    150

General information

Acquired competences

● To understand the structure, composition and purpose of computer-aided design systems in power engineering, to acquire basic knowledge of algorithmisation and programming in order to solve typical applied problems arising in the process of designing and modernising internal combustion engines

Learning outcomes

● know the composition, structure and purpose of modern CAD in power engineering, algorithms for approximation, interpolation, search for an extremum of functions, algorithms for numerical solution of equations and systems of equations;● be able to create and edit text and tabular documents, create programs to implement basic algorithms in various software environments (Microsoft Excel, MathCAD, Visual Basic, etc.).

Programme of the academic discipline

Module 1.
Content module №1. General information and basic elements of CAD in power engineering.

Topic №1. Power plants and their elements as complex technical systems. General approaches to design in power engineering. Possible degree of automation of various stages of design development of power system elements.
Topic №2. Structure and composition of computer-aided design systems in power engineering.
Topic №3. Computational modelling unit: types and varieties of mathematical models, mathematical models for calculating work cycles, dynamics and strength of mechanisms in power engineering.
Topic №4. Graphic block of CAD in power engineering, main tasks and elements of the graphic block.

Content module №2. Algorithmic bases of CAD in power engineering.

Topic №5. Creation of linear algorithms in software environments of different levels, the main types and types of variables.
Topic №6. Creating branched algorithms in software environments of different levels.
Topic №7. Creating cyclic algorithms in software environments of different levels, working with arrays.

Content module №3. Numerical methods used in CAD elements of power engineering.

Topic №8. Methods of numerical integration in the processing of experimental data.
Topic №9. Interpolation of a function of one and several variables when working with tabular data.
Topic №10. Direct and numerical methods for solving systems of linear algebraic equations.
Topic №11. Approximation of a function of one and several variables when processing test results.

Content module №4. Fundamentals of the theory of planning numerical experiments.

Topic №12. Full factorial numerical experiment as a means of studying processes in internal combustion engines.
Topic №13. Fractional factor numerical experiment as a means of reducing the amount of calculations.

Content module №5. Solving optimisation problems in the design and maintenance of complexes and elements of power engineering.

Topic №14. Numerical methods of finding the minimum of a function of one and several variables in software tools of different levels.
Topic №15. Processing and analysis of experimental data using linear and polynomial regression.

Topics of practical classes

● Familiarity with software tools for calculating the working cycle, dynamics of an internal combustion engine, and strength of the main structural elements of an internal combustion engine. Determination of their mutual relationship.● General acquaintance with computer graphics tools.● Creation of linear algorithms in software environments of different levels, the main types and types of variables● Creating branched algorithms in software environments of different levels● Creating cyclic algorithms in software environments of different levels, working with arrays● Numerical integration methods for processing experimental data● Interpolation of a function of one and several variables when working with tabular data● Direct and numerical methods for solving systems of linear algebraic equations● Approximation of a function of one or more variables in the processing of test results● Full factorial numerical experiment as a means of studying processes in internal combustion engines.● Fractional factorial numerical experiment as a means of reducing the amount of calculations● Numerical methods for finding the minimum of a function of one variable in software of different levels● Numerical methods for finding the minimum of a function of several variables in software of different levels● Processing and analysis of experimental data using linear and polynomial regression.

Forms of current and final control 

The achievements of the applicant are assessed according to the 100-point system of the University.



  • Type of work

    CМ 1. Тopic 3

    Practical training №1

    CМ 1. Тopic 4

    Practical training №2

    CМ 2. Тopic 5 

    Practical training №3

    CМ 2. Тopic 6 

    Practical training №4

    CМ 2. Тopic 7 

    Practical training №5

    CМ 3. Тopic 8

    Practical training №6

    CМ 4. Тopic 12

    Practical training №7

    CМ 5. Тopic 13

    Practical training №8

    CМ 5. Тopic 14

    Practical training №9

    CМ 5. Тopic 15

    Practical training №10



  • Number of points

    CМ 1. Тopic 3

    10

    CМ 1. Тopic 4

    10

    CМ 2. Тopic 5 

    10

    CМ 2. Тopic 6 

    10

    CМ 2. Тopic 7 

    10

    CМ 3. Тopic 8

    10

    CМ 4. Тopic 12

    10

    CМ 5. Тopic 13

    10

    CМ 5. Тopic 14

    10

    CМ 5. Тopic 15

    10

    Total

    100




  • Type of work

    Number of points

  • CМ 1. Тopic 3

    Practical training №1

    10

  • CМ 1. Тopic 4

    Practical training №2

    10

  • CМ 2. Тopic 5 

    Practical training №3

    10

  • CМ 2. Тopic 6 

    Practical training №4

    10

  • CМ 2. Тopic 7 

    Practical training №5

    10

  • CМ 3. Тopic 8

    Practical training №6

    10

  • CМ 4. Тopic 12

    Practical training №7

    10

  • CМ 5. Тopic 13

    Practical training №8

    10

  • CМ 5. Тopic 14

    Practical training №9

    10

  • CМ 5. Тopic 15

    Practical training №10

    10

  • Total


    100

Recommended sources of information

Main literature
1. Internal combustion engines: A series of textbooks in 6 volumes. Т.4. Fundamentals of CAD of internal combustion engines. / Edited by A. P. Marchenko, A. F. Shekhovtsov. - Kh.: Publishing centre of NTU ‘KhPI’, 2004. - 428 p.
2. Minchev, D. S., Nagirnyi, A. V. Information bases of computer-aided design systems for internal combustion engines: planning and processing of experimental results. Study guide - Mykolaiv: NUOS Publishing House, 2012 - 100 p.
3. Fundamentals of computer-aided design of internal combustion engines: a textbook for in-depth study of the course and gaining practical skills in creating mathematical models of internal combustion engine processes and the design of individual components and parts for students majoring in 142 ‘Power Engineering’ (specialisation ‘Internal Combustion Engines’) / V. Nalyvaiko, S. Tkachenko, V. Khomenko, R. Avdiunin - Mykolaiv: Torubara V. V. Publisher, 2017. - 138 p.
4. Planchard D. C. Engineering design with SolidWorks 2020. SDC Publications, 2019. - 816 p.
5. Sham Tickoo. SolidWorks 2018 for Designers, 16th Edition. Schererville: CADCIM Technologies, 2018. 1987 p.
6. SolidWorks 2018. Learn by doing - Part 1: parts, assembly, drawings, and sheet metal. Tutorial Books, 2018. 532 p.
7. SolidWorks 2018. Learn by doing - Part 2: surface design. Tutorial Books, 2018. 149 p.
8. Programming in Visual Basic / VBA. Lviv: Ivan Franko National University of Lviv Publishing Centre, 2004. 240 p.
9. Microsoft Excel VBA Programming FOR DUMMIES / by John Walkenbach. - 2nd edition. Wiley Publishing, Inc. - 433 p.
10. Kundrat A.M., Kundrat M.M. Scientific and technical calculations using MathCAD and MS Excel. Study guide. - Rivne: NUWHP, 2014. - 252 p.
11. Petryk M. Mathcad-technologies in engineering problems of the theory of calculation and design. - Ternopil: TSTU named after Iv. Pului, 2000. - 154 p.
12. Mathsoft Mathcad 11. User's Guide. USA: Mathsoft Engineering & Education, Inc., November, 2002. - 480 p.


Supporting literature
1. Moroz V. I., Bratchenko O. V., Linkov V. V. Fundamentals of design and CAD: Study guide. - Kharkiv: Nove Slovo Publishing House, 2003. 194 p.
2. Marchenko AP, Ryazantsev MK, Shekhovtsov AF Internal combustion engines: a series of textbooks in 6 vols. Vol. 2. Design of forced engines of land transport machines / edited by Prof. A. P. Marchenko and Honoured Worker of Science of Ukraine Prof. A. F. Shekhovtsov. Kharkiv: Prapor, 2004. - 288 p.
3. Moroz V. I., Bratchenko O. V., Logvinenko O. A. Fundamentals of design automation: Lecture notes. - Kharkiv: UkrDUZT, 2019. - 98 p.
4. Kozyar M. M., Feshchuk Y. V., Parfeniuk O. V. Computer graphics. SolidWorks: a textbook. Kherson: ALDI-PLUS, 2018. 252 с.
5. Kozyar M. M., Parfeniuk O. V. Four-dimensional modelling of technical objects by means of CAD: an electronic textbook. Rivne: NUWHP, 2018. 313 с.
6. Computer graphics SolidWorks: a textbook / M. Koziar, Y. Feshchuk, O. Parafeniuk / Kherson: Aldi-Plus, 2018. 252 p.
7. Engineering graphics in SolidWorks: Study guide / S. Pustulga, V. Samostyan, Y. Klak - Lutsk: Vezha, 2018. 172 p.
8. 3D modelling systems: Textbook / Palchevskyi B.O., Valetskyi B.P., Varanitskyi T.L. - Lutsk:, 2016 - 176 p.
9. Digital modelling of objects and dynamic systems: Study guide / O. V. Muravyov; Igor Sikorsky Kyiv Polytechnic Institute, 2022. 75 p.
10. VBA Visual Basic for Applications. - Tutorials Point. - 38 p. // https://www.tutorialspoint.com/vba/vba_tutorial.pdf. 


Information resources on the Internet
1. Blitz-PRO settlement service. Access mode: http://blitzpro.zeddmalam.com/application/index.