Faculty Of Engıneerıng
Cıvıl Engıneerıng (Englısh)

Course Information

WATER STRUCTURES I
Code Semester Theoretical Practice National Credit ECTS Credit
Hour / Week
CVE315 Fall 3 0 3 3

Prerequisites and co-requisites NONE
Language of instruction Turkish
Type Required
Level of Course Bachelor's
Lecturer PROF.DR.MEHMET SALİH KIRKGÖZ
Mode of Delivery Face to Face
Suggested Subject NONE
Professional practise ( internship ) None
Objectives of the Course To provide students with the ability to define River Morphology, River improvement and help them gain the designing skills of the Structures for Flood Protection, Diversion Weirs and Energy Dissipation
Contents of the Course The following topics are covered in thi s course: River Morphology, Sediment Transport, River Improvement and Flood Protection Structures, Culverts and Bridges, Diversion Weirs, Energy Dissipation Structures

Learning Outcomes of Course

# Learning Outcomes
1 Defines River Morphology
2 Learns the concepts of Sediment Transposrt and calculates sediment discharge
3 Designs river improvement and flood protection structures
4 Learns and designs diversion weir planning

Course Syllabus

# Subjects Teaching Methods and Technics
1 History of Hydraulic Structures and Distribution of Water Resources on Earth Presentations and Numerical Examples
2 Basic Definitions related to Water Resources Presentations and Numerical Examples
3 River Morphology Presentations and Numerical Examples
4 Basic Definitions related to Sediment Transport Presentations and Numerical Examples
5 Initiation of Motion and Bedforms Presentations and Numerical Examples
6 Estimation and Measurement of Sediment Discharge Presentations and Numerical Examples
7 Planning River Improvement Structures Presentations and Numerical Examples
8 Mid-Term Exam
9 Designing River Improvement Structures Presentations and Numerical Examples
10 Flood Protection Structures Presentations and Numerical Examples
11 Culverts and Bridges Presentations and Numerical Examples
12 Diversion Weirs, Basic Definitions, Classifications and Planning Presentations and Numerical Examples
13 Design of Diversion Weirs Presentations and Numerical Examples
14 Energy Dissipation Structures Presentations and Numerical Examples
15 Applications Presentations and Numerical Examples
16 Final Exam

Course Syllabus

# Material / Resources Information About Resources Reference / Recommended Resources
1 Su Kaynakları Mühendisliği, Cevat Erkek, Necati Ağıalioğlu, Beta Basım Yay
2 Su Kaynakları Mühendisliği Uygulamaları, Cevat Erkek, Necati Ağıalioğlu, Beta Basım Yayın.

Method of Assessment

# Weight Work Type Work Title
1 40% Mid-Term Exam Mid-Term Exam
2 60% Final Exam Final Exam

Relationship between Learning Outcomes of Course and Program Outcomes

# Learning Outcomes Program Outcomes Method of Assessment
1 Defines River Morphology 1 1
2 Learns the concepts of Sediment Transposrt and calculates sediment discharge 1 1
3 Designs river improvement and flood protection structures 1 1
4 Learns and designs diversion weir planning 2 2
PS. The numbers, which are shown in the column Method of Assessment, presents the methods shown in the previous table, titled as Method of Assessment.

Work Load Details

# Type of Work Quantity Time (Hour) Work Load
1 Course Duration 14 3 42
2 Course Duration Except Class (Preliminary Study, Enhancement) 14 3 42
3 Presentation and Seminar Preparation 0 0 0
4 Web Research, Library and Archival Work 0 0 0
5 Document/Information Listing 0 0 0
6 Workshop 0 0 0
7 Preparation for Midterm Exam 1 4 4
8 Midterm Exam 1 4 4
9 Quiz 0 0 0
10 Homework 0 0 0
11 Midterm Project 0 0 0
12 Midterm Exercise 0 0 0
13 Final Project 1 4 4
14 Final Exercise 0 0 0
15 Preparation for Final Exam 0 0 0
16 Final Exam 0 0 0
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