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COURSE UNIT TITLECOURSE UNIT CODESEMESTERTHEORY + PRACTICE (Hour)ECTS
REINFORCED CONCRETE STRUCTURES CE382 Sixth Term (Spring) 3 + 0 5

TYPE OF COURSE UNITCompulsory Course
LEVEL OF COURSE UNITBachelor's Degree
YEAR OF STUDY3
SEMESTERSixth Term (Spring)
NUMBER OF ECTS CREDITS ALLOCATED5
NAME OF LECTURER(S)Professor Hakkı Polat Gülkan
LEARNING OUTCOMES OF THE COURSE UNIT At the end of this course, the students;
1) Describe the material behavior of concrete and steel under uniaxial and multiaxial states of stress;
2) State how the concept of structural safety is employed for the design of reinforced concrete members;
3) Design reinforced concrete members for uniaxial loading;
4) Design reinforced concrete members for pure bending;
5) Design reinforced concrete members for combined bending and axial load;
6) Design reinforced concrete members for shear.
MODE OF DELIVERYFace to face
PRE-REQUISITES OF THE COURSEYes(CE224)
RECOMMENDED OPTIONAL PROGRAMME COMPONENTNone
COURSE DEFINITIONMechanical behavior of concrete in uniaxial and multi-axial states of stress. Time dependent behavior of concrete. Mechanical behavior of reinforcing steel. Behavior and strength of uniaxially loaded members; confinement. Behavior and strength of members in pure bending. Behavior and strength of members under combined bending and axial load. Behavior and strength of members under combined shear and bending.
COURSE CONTENTS
WEEKTOPICS
1st Week Introduction
2nd Week Concept of structural safety, load and material factors
3rd Week Flexural behavior and nominal strength of beam sections
4th Week Flexural design of beam sections
5th Week Shear in beams
6th Week Development, anchorage and splicing of reinforcement
7th Week Serviceability
8th Week Midterm Examination
9th Week Continuous beams and one-way slabs
10th Week Columns: combined axial load and bending
11th Week Slender columns
12th Week Two-way slabs
13th Week Footings
14th Week Earthquake resistance
RECOMENDED OR REQUIRED READINGReference:
U. Ersoy, G. Özcebe: Reinforced Concrete, Evrim, 2001.
J.K. Wight, J.G.MacGregor: Reinforced Concrete: Mechanics and Design, Prentice Hall, 2009 (978-0- 13-2288141-6) ACI 318
S. Brzev and J. Pao: Reinforced Concrete Design: A Practical Approach, Pearson-Prentice Hall, 2006. (0-13-039125-5) CSA Standard A23.3-04
Celep, Z. [2011]: Betonarme Yapılar, Beta, ISBN: 978-975-95405-3-3 (in Turkish). TS500.
Ali Ruzi Özuygur (2020); ACI 318 - TS 500 Karşılaştırmalı Betonarme, Nobel Akademik Yayincilik.

Additional Resources:
TSE [2000] Requirements for Design and Construction of Reinforced Concrete Structures, TS 500, Turkish Standards Institute, Ankara, Turkey.
ACI 318-11: Building Code Requirements for Structural Concrete, ACI, 2011.
CEN Eurocode 2: Design of concrete structures - Part 1-1: General rules and rules for buildings CEN 2003.
TSE [1997] Design Loads for Buildings, TS 498, Turkish Standards Institute, Ankara, Turkey (in Turkish).
TSE [1997] Bases for Design of Structures; Actions due to the Self-Weight of Structures, Non-structural Elements and Stored Materials; Density, TS ISO 9194, Turkish Standards Institute, Ankara, Turkey (in Turkish).
PLANNED LEARNING ACTIVITIES AND TEACHING METHODSLecture,Questions/Answers,Problem Solving,Presentation
ASSESSMENT METHODS AND CRITERIA
 QuantityPercentage(%)
Mid-term250
Assignment410
Total(%)60
Contribution of In-term Studies to Overall Grade(%)60
Contribution of Final Examination to Overall Grade(%)40
Total(%)100
ECTS WORKLOAD
Activities Number Hours Workload
Midterm exam224
Preparation for Quiz000
Individual or group work000
Preparation for Final exam15050
Course hours14342
Preparation for Midterm exam22040
Laboratory (including preparation)000
Final exam122
Homework4312
Total Workload150
Total Workload / 305
ECTS Credits of the Course5
LANGUAGE OF INSTRUCTIONEnglish
WORK PLACEMENT(S)No
  

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