CONSTRUCTIN RISK MANAGEMENT
- Course
- CVLE662 - CONSTRUCTIN RISK MANAGEMENT
- Department
- Civil Engineering - English - PhD
- Course Type
- Course
- Status
- Required
- Language
- English
- Credit
- 3
- ECTS
- 8
- T+P+L
- 3 + 0 + 0
- Course Coordinator(s)
- -
- Prerequisite
- -
Course Description
This course focuses on the ways in which construction industry assess, control, and transfer risk. This process, known as the risk management process, is becoming an increasingly important tool in the management of construction and construction company financial health. An effective and efficient construction risk management program leads to knowledge and control of costs and an improved bottom line. This is accomplished by means of studying quantitative techniques for project risk analysis, application of risk management, information technology for risk management, risk in estimating, and management financial risk in major construction projects, contract strategy, and dealing with risk in contracts, tenders-the risk to clients and contractors, case studies.
CONSTRUCTIN RISK MANAGEMENT
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 the course, Project Management Framework |
| Week 2 | Risk Factor identification |
| Week 3 | Risk Factor identification |
| Week 4 | Preparing questioneer |
| Week 5 | Preparing questioneer |
| Week 6 | Sample size formula resarch |
| Week 7 | Sample size formula resarch |
| Week 8 | Midterm |
| Week 9 | Impact/priority tables |
| Week 10 | Impact/priority tables |
| Week 11 | Risk Table Qualitative analysis |
| Week 12 | Risk Table Qualitative analysis |
| Week 13 | Risk Table Quantitative analysis |
| Week 14 | Risk Table Quantitative analysis |
| Week 15 | Final Exam |
Reference Books & Course Materials
- 01 Guide to Project Management Body of Knowledge, (PMBOK) GUIDE Fifth Edition, PMI.
- 02 Lecture Presentations
Learning Outcomes
No learning outcomes have been defined.
Program Outcomes
- 1. Critically evaluates current and advanced knowledge in civil engineering and makes original contributions that expand the boundaries of the field.
- 2. Identifies complex engineering problems, develops new methods or models, and scientifically validates them.
- 3. Analyzes existing theories, methods, and applications in depth and applies them to new areas of research.
- 4. Designs, conducts, and interprets independent scientific research within disciplinary or interdisciplinary contexts.
- 5. Plans, executes, and completes original research in accordance with principles of scientific ethics and integrity.
- 6. Designs and develops innovative systems, processes, or methodologies in the field of civil engineering.
- 7. Evaluates scientific, technological, social, and environmental developments in the field and proposes sustainable engineering solutions.
- 8. Effectively uses and develops advanced computational, modeling, and simulation techniques in civil engineering applications.
- 9. Critically reviews national and international scientific literature in the field and produces original scholarly publications.
- 10. Communicates scientific research and its results effectively through written, oral, and visual means in national and international contexts.
- 11. Demonstrates leadership in interdisciplinary research environments, initiates new collaborations, and manages research teams.
- 12. Utilizes knowledge and expertise for the benefit of society, evaluates the ethical, social, and environmental impacts of engineering practices, and makes responsible decisions.
Po-Lo Matrix
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