
Ternopil Ivan Puluj National Technical University

Каф. будівельної механіки
Building constructions, buildings and structures
syllabus
1. Educational programs for which discipline is mandatory:
# | Educational stage | Broad field | Major | Educational program | Course(s) | Semester(s) |
---|---|---|---|---|---|---|
1 | bachelor's | 19. Архітектура та будівництво | 192. Будівництво та цивільна інженерія (бакалавр) | 3 | 5 |
2. The course is offered as elective for all levels of higher education and all educational programs.
4. Information about the course |
|
---|---|
Study hours structure |
Lectures: 32 Practical classes: 32 Laboratory classes: 0 Amount of hours for individual work: 86 ECTS credits: 5,0 |
Teaching language | english |
Form of final examination | exam |
Link to an electronic course on the e-learning platform of the university | https://dl.tntu.edu.ua/bounce.php?course=4711 |
5. Program of discipline
Description of academic discipline, its goals, subject of study and learning outcomes
The purpose: Formation of specialized competence in the ability to design building structures, buildings and structures, applying calculation methods and basic design principles based on knowledge of basic concepts concerning building structures, buildings and structures, their classification, calculation methods, basic design principles, as well as laws and regulations.
A student has to demonstrate such learning outcomes on the discipline:
- know: basic concepts that relate to building structures and engineering struc-tures, their classification, design features, calculation methodology and basic design principles, legislative and regulatory documents related to a certain type of building structures and engineering structures;
- understand: the relationship between the correct calculations of building structures and engineering structures, their design and construction quality;
- apply: calculation methods and basic principles of designing various build-ing structures and engineering structures for calculating and designing these struc-tures and structures;
- analyze: the results of calculations and design of various building structures and engineering structures;
- synthesize: results of analysis of calculations and design of various building structures and engineering structures;
- evaluate: the correctness of calculations and design of various building structures and engineering structures.
A student has to demonstrate such learning outcomes on the discipline:
- know: basic concepts that relate to building structures and engineering struc-tures, their classification, design features, calculation methodology and basic design principles, legislative and regulatory documents related to a certain type of building structures and engineering structures;
- understand: the relationship between the correct calculations of building structures and engineering structures, their design and construction quality;
- apply: calculation methods and basic principles of designing various build-ing structures and engineering structures for calculating and designing these struc-tures and structures;
- analyze: the results of calculations and design of various building structures and engineering structures;
- synthesize: results of analysis of calculations and design of various building structures and engineering structures;
- evaluate: the correctness of calculations and design of various building structures and engineering structures.
Contents of the academic discipline
Lectures (titles/topics)
Topic 1. General information about building structures, buildings and structures. Fundamentals of calculation of building structures, buildings and structures for limiting states.
Topic 2. Loads and impacts. Calculation schemes.
Topic 3. Basics of calculating building structures operating in compression. Calculation of steel columns and wooden posts.
Topic 4. Stretched elements
Topic 5. Calculation of reinforced concrete columns and brick pillars for compression.
Topic 6. Basics of calculating building structures working in bending. Calculation of steel and timber beams.
Topic 7. Calculation of reinforced concrete beams and slabs working in bending
Topic 8. Bases and foundations
Topic 9. Highways, streets and roads: design basics and calculation.
Topic 10. Highways, streets and roads: roadbed.
Topic 11. Railways
Topic 12. Retaining wall.
Topic 13. Bridge structures and pipes on highways and city roads.
Topic 14. Tunnels
Topic 15. Airfields.
Topic 16. Water facilities
Topic 2. Loads and impacts. Calculation schemes.
Topic 3. Basics of calculating building structures operating in compression. Calculation of steel columns and wooden posts.
Topic 4. Stretched elements
Topic 5. Calculation of reinforced concrete columns and brick pillars for compression.
Topic 6. Basics of calculating building structures working in bending. Calculation of steel and timber beams.
Topic 7. Calculation of reinforced concrete beams and slabs working in bending
Topic 8. Bases and foundations
Topic 9. Highways, streets and roads: design basics and calculation.
Topic 10. Highways, streets and roads: roadbed.
Topic 11. Railways
Topic 12. Retaining wall.
Topic 13. Bridge structures and pipes on highways and city roads.
Topic 14. Tunnels
Topic 15. Airfields.
Topic 16. Water facilities
Practical classes (topics)
1. Design characteristics of materials
2. Calculation of floor loads
3. Calculation of loads on roofing, beam and column
4. Calculation of steel columns
5. Selection of the section of a wooden rack
6. Calculation of reinforced concrete columns
7. Calculation of retaining walls
8. Calculation of the length of the runway in the local conditions of the aerodrome
2. Calculation of floor loads
3. Calculation of loads on roofing, beam and column
4. Calculation of steel columns
5. Selection of the section of a wooden rack
6. Calculation of reinforced concrete columns
7. Calculation of retaining walls
8. Calculation of the length of the runway in the local conditions of the aerodrome
Laboratory classes (topics)
not included in the program
Learning materials and resources
Malcolm Millais. Buildin structure. – London, 2005.- 412 р.
Approved by the department
(protocol №
on «
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y.).