Faculty Of Fıne Arts, Desıgn And Archıtecture
Archıtecture

Course Information

REINFORCED CONCRETE STRUCTURES
Code Semester Theoretical Practice National Credit ECTS Credit
Hour / Week
ARC236 Spring 2 0 2 2

Prerequisites and co-requisites
Language of instruction Turkish
Type Required
Level of Course Bachelor's
Lecturer Öğr. Gör . Servet Süha SARIAKÇALI
Mode of Delivery Face to Face
Suggested Subject
Professional practise ( internship ) None
Objectives of the Course Learning engineering design principles on Reinforced Concrete Structure Design in architecture. To provide the minimum conditions in the structure to be designed by learning the regulations and standards in operation on this subject. Mastering the knowledge, skills and techniques that will provide engineering precursors to secure, economical structures. Knowing the materials that make up reinforced concrete, getting information about the quality of concrete and its contents.
Contents of the Course Types of reinforced concrete flooring, load transfer to beams, bearing conditions, deflection conditions Girder-free flooring design conditions, rules of precoading heading and non-heading zones Usage areas of cassette tiles, pre-size and account rules Beams, pre-size, section definition with table, beam regulation rules, reinforcement Regulation Conditions Use of axles, floor, beam, column brands in formwork plan Reinforced concrete Ultimate Design assumptions . Column and reinforced concrete walls definitions, rectangular, circular and multi-edged columns and R/C walls prefacing. Arrangement of reinforcement in Column and R/C walls elements, making elevations, definition of stirrupts tightening zones Design of stairs and equipment layout Definition of basics; Shallow Foundations * Under-The-Wall Foundations * Singular (Simple) Foundations * Continuous Foundations * Continuous Foundations In One Direction * Continuous In Two Directions Foundations (Grid Foundations) * Radial General Foundations Deep Foundations * Piled Foundation * Caisson Basic * Pit Foundation Joints designations in buildings Joints and reasons for making joints Principles Of Earthquake Resistant Building Design Earthquake, earthquake experienced results Causes Of Damage To Buildings In Earthquakes Corrosion Problem In Reinforced Concrete Structures at risk of being damaged or destroyed in earthquakes Purpose Of Earthquake Resistant Building Design Architecture and earthquake resistant design Building Plan types and examination Irregularity In The Plan Torsion Damage Weak Column-Strong Beam Problem Soft Story behavior and related damages Discontinuity Of Vertical Elements Of The Bearing System Vertical discontinuities and short column mechanism Carrier System Regulation Principles Arrangement Of Curtains R/C walls and frame systems Proper pitch and core arrangement Arrangement Of Core R/C walls Curvature Surface Systems Benefits and objectionable aspects of shells Curvature Surface Systems Definition of domes and forces distributions Curvature Surface Systems and applications made in the world Hyperboloid shells and examples made in the world

Learning Outcomes of Course

# Learning Outcomes
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8

Course Syllabus

# Subjects Teaching Methods and Technics
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16 Final Exam

Course Syllabus

# Material / Resources Information About Resources Reference / Recommended Resources
1

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
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8
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 2 28
2 Course Duration Except Class (Preliminary Study, Enhancement) 14 2 28
3 Presentation and Seminar Preparation 0 0 0
4 Web Research, Library and Archival Work 1 10 10
5 Document/Information Listing 0 0 0
6 Workshop 0 0 0
7 Preparation for Midterm Exam 1 6 6
8 Midterm Exam 1 1 1
9 Quiz 0 0 0
10 Homework 1 8 8
11 Midterm Project 0 0 0
12 Midterm Exercise 0 0 0
13 Final Project 0 0 0
14 Final Exercise 0 0 0
15 Preparation for Final Exam 1 8 8
16 Final Exam 1 1 1
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