High Rise Buildings
- Course
- CVLE548 - High Rise Buildings
- Department
- Civil Engineering - English - Master
- Course Type
- Course
- Status
- Required
- Language
- English
- Credit
- 3
- ECTS
- 6
- T+P+L
- 3 + 0 + 0
- Course Coordinator(s)
- -
- Prerequisite
- -
Course Description
The course provides an in-depth analysis and design on high rise buildings with emphasis on fundamental approach. Manual computation will be introduced from the basics throughout the seminar to facilitate the understanding, complemented by computer methods as means of verification and implementation. Some novel techniques such as two-cycle moment distribution, principle of virtual displacement (with short cut), powerful simplified unified approach in concrete section analysis/design, stability index and FC method are highlighted. Participants would surely have eye-opening to the fundamentals of high rise building from the perspectives of consulting engineers. It covers the introduction and general considerations for tall buildings, Structural systems in tall buildings, Wind effects, Structural analysis and design, Seismic design, Earthquake behavior & performance and planning & site organization for tall buildings.
High Rise Buildings
Evaluation Tools (Active Term)
No evaluation items have been defined.
Course outcomes
No course outcomes have been defined yet.
Course Syllabus
| Week | Topic |
|---|---|
| Week 1 | Introduction to High-rise buildings |
| Week 2 | Loads on tall buildings |
| Week 3 | Loads on tall buildings |
| Week 4 | Loads on tall buildings |
| Week 5 | Seismic force on tall buildings |
| Week 6 | Seismic force on tall buildings |
| Week 7 | Thermal effects |
| Week 8 | Midterm week |
| Week 9 | Thermal effects |
| Week 10 | Blast Loading |
| Week 11 | Blast Loading |
| Week 12 | Structural systems for high-rise buildings |
| Week 13 | Structural systems for high-rise buildings |
| Week 14 | - |
| Week 15 | - |
Reference Books & Course Materials
- 01 "STRUCTURAL DESIGN OF HIGH-RISE BUILDINGS", ERIK HALLEBRAND and WILHELM JAKOBSSON
- 02 "Multi-purpose High-rise Towers and Tall Buildings", Ing. H. R. Viswanath, J. J. A. Tolloczko and J. N. Clarke
- 03 "Simplified Dynamic Analysis of High-Rise Buildings", Hideo Takabatake, Yukihiko Kitada, Izuru Takewaki, Akiko Kishida
Learning Outcomes
No learning outcomes have been defined.
Program Outcomes
- 1. Analyzes, compares, and synthesizes advanced theoretical and applied knowledge in subfields of civil engineering.
- 2. Identifies a problem in the field, formulates a research question, collects and analyzes data, and draws conclusions using scientific methods.
- 3. Develops innovative solutions by applying modeling, analysis, and interpretation skills to complex engineering problems.
- 4. Designs new systems, processes, or materials by considering real-world constraints such as economy, environment, sustainability, and safety.
- 5. Plans laboratory or field studies, collects data, performs statistical analysis, and derives scientific results.
- 6. Effectively uses modern analysis and design software, information technologies, and measurement tools in civil engineering applications.
- 7. Recognizes, interprets, and integrates relationships between civil engineering and other engineering or scientific disciplines.
- 8. Acts in accordance with ethical principles, demonstrates professional responsibility, and evaluates the societal impacts of engineering practices.
- 9. Communicates research and engineering outcomes clearly and effectively through written, oral, and visual means.
- 10. Works effectively in intra- and interdisciplinary teams and assumes leadership roles when necessary.
- 11. Follows, critically evaluates, and continuously improves professional knowledge and skills through lifelong learning.
- 12. Evaluates the environmental, sustainability, and societal impacts of engineering practices and develops responsible solutions.
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