WATER QUALITY MANAGEMENT
- Course
- CVLE622 - WATER QUALITY 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
The course would cover water quality management and many different types of methods for the assessment of surface water quality, analyzing the linkage between pollution sources and surface water quality, and the development of pollution control strategies. It explains current approaches to water quality protection and enhancement and reviews the role of engineered treatment processes in water quality management. Specific topics covered in the course include identification of sources and types of water pollution, statutory and regulatory approaches to water quality management, water quality standards and criteria, water supply and wastewater treatment processes and point and non-point source.
WATER QUALITY MANAGEMENT
Evaluation Tools (Active Term)
No evaluation items have been defined.
Course outcomes
- 01 Explain water quality standards and criteria
- 02 Identify the sources and types of water pollution
- 03 Analyzing the linkage between pollution sources and surface water quality
- 04 Water supply and wastewater treatment processes
Course Syllabus
| Week | Topic |
|---|---|
| Week 1 | Introduction: The water Cycle |
| Week 2 | Introduction: What is Groundwater |
| Week 3 | Saltwater intrusion |
| Week 4 | Saltwater intrusion |
| Week 5 | Governing Equations in an unconfined aquifer |
| Week 6 | Pollution and Water Quality: Pollution Sources |
| Week 7 | Pollution and Water Quality: Pollution Sources |
| Week 8 | Pollution and Water Quality: Types of Pollution |
| Week 9 | Wastewater treatment |
| Week 10 | Wastewater treatment |
| Week 11 | Research paper presentation |
| Week 12 | Research paper presentation |
| Week 13 | Research paper presentation |
| Week 14 | Research paper presentation |
| Week 15 | Research paper presentation |
Reference Books & Course Materials
- 01 Krenkel, P. (2012). Water quality management. Elsevier.
- 02 Bear, J., Cheng, A. H. D., Sorek, S., Ouazar, D., & Herrera, I. (Eds.). (1999). Seawater intrusion in coastal aquifers: concepts, methods and practices (Vol. 14). Springer Science & Business Media.
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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