Skip to main content

Course Description

CourseCodeSemesterT+P (Hour)CreditECTS
FIRE SAFETY in BUILDING DESIGN-Fall Semester2+023
Course Program
Prerequisites Courses
Recommended Elective Courses
Language of CourseTurkish
Course LevelFirst Cycle (Bachelor's Degree)
Course TypeElective
Course CoordinatorAssist.Prof. Mustafa ERDEM
Name of Lecturer(s)Assoc.Prof. Nuri SERTESER
Assistant(s)
AimTo draw attention to the issues related to fire safety in architectural design, to learn the parameters related to fire safety, which architect will be effective in design, to give information about the legal aspects of the fire safety.
Course ContentThis course contains; Ignition and Combustion, Nature of Fire, Fire Development Stages
,Fire Propagation, Fire Spread Between Buildings,Fire Spread inside the Building, Smoke and Toxic Gases,Compartmantation, Determination of Escape Routes,Fire Precautions in Building Elements,Structural Fire Protection, Smoke Ventilation,Burning Properties of Building Materials,MIDTERM,Architectural Design Issues in National Fire Regulations, Case Studies,Architectural Design Issues in National Fire Regulations, Case Studies,Architectural Design Issues in National Fire Regulations, Case Studies,Architectural Design Issues in National Fire Regulations, Case Studies,Architectural Design Issues in National Fire Regulations, Case Studies,Evaluation and analysis.
Dersin Öğrenme KazanımlarıTeaching MethodsAssessment Methods
Understanding the nature of the fire and it’s effects on the buildings Understanding the form of fire propagation and its consequences Learning the precautions against fire in architectural Project16, 9A, E
Teaching Methods:16: Question - Answer Technique, 9: Lecture Method
Assessment Methods:A: Traditional Written Exam, E: Homework

Course Outline

OrderSubjectsPreliminary Work
1Ignition and Combustion, Nature of Fire, Fire Development Stages
2Fire Propagation, Fire Spread Between Buildings
3Fire Spread inside the Building, Smoke and Toxic Gases
4Compartmantation, Determination of Escape Routes
5Fire Precautions in Building Elements
6Structural Fire Protection, Smoke Ventilation
7Burning Properties of Building Materials
8MIDTERM
9Architectural Design Issues in National Fire Regulations, Case Studies
10Architectural Design Issues in National Fire Regulations, Case Studies
11Architectural Design Issues in National Fire Regulations, Case Studies
12Architectural Design Issues in National Fire Regulations, Case Studies
13Architectural Design Issues in National Fire Regulations, Case Studies
14Evaluation and analysis
Resources
Fergusaon, L.H., Janicak, C.A.(2015), Fundamentals of Fire Protection for the Safety Professional, London: Bernan Press. Brannigan, F. L.& Corbett, G.P. (2008). Brannigan's Building Construction for the Fire Service, NFPA, Burlington, MA : Jones & Bartlett Learning, LLC. Robertson, J. C. (2010). Introduction to Fire Prevention, Upper Saddle River, New Jersey: Prentice Hall Health. Quintiere, J. G. (2006). Fundamentals of Fire Phenomena, Chichester : John Wiley. Lataille, J. (2003). Fire Protection Engineering in Building Design, Amsterdam : Butterworth-Heinemann. Patterson, J. (1993). Simplified Design for Building Fire Safety, New York : Wiley. Türkiye Yangından Korunma Yönetmeliği 2015, TÜYAK.

Course Contribution to Program Qualifications

Course Contribution to Program Qualifications
NoProgram QualificationContribution Level
12345
1
DESIGN (Knowledge-Theoretical, Factual): During planning, implementation, management and supervision processes; Knowledge of creative problem defining and solving
2
DESIGN (Skill-Cognitive, Applied): Design-oriented research fiction, execution and evaluation of results and design process planning, management, application skills
3
DESIGN (Competencies-Ability to Work Independently and Take Responsibility): Ability to work within a team, to emphasize interdisciplinary interaction and apply technology-based business association methods
X
4
DESIGN (Competencies-Learning Competence): To evaluate critically the knowledge and skills gained in the field, to plan and to develop constantly professional knowledge, skills and approaches
5
DESIGN (Competencies-Communication and Social Competence): Transferring design solutions as oral, written and visual (2D and 3D) presentations on national and international platforms
6
DESIGN (Competencies-Field Specific Competence): Contributing to the design of industrial products to improve the quality of life of the society.
7
HISTORY, CULTURE, ART (Knowledge-Theoretical, Factual): To make connections between the information obtained by the analytical approach and the information on historical and cultural development and current situation in Turkey and in the world, and to expand the boundaries of vocational education proficiency to develop new ideas
8
HISTORY, CULTURE, ART (Skill-Cognitive, Applied): Ability to solve the design related problems encountered in concept development, by using the knowledge gained in the field of history, culture and art
9
HISTORY, CULTURE, ART (Competencies - Independent Work and Ability to Take Responsibility): To be able to do interdisciplinary work by using the knowledge gained in the field of history, culture and art
10
HISTORY, CULTURE, ART (Competences-Learning Competence): Ability to develop the knowledge gained in the field in the direction needed, using the research methods
11
HISTORY, CULTURE, ART (Competencies-Communication and Social Competence): Awareness of social and cultural phenomena and continuous change and arranging plans, strategies, projects, collaborations and activities for the social environment with social responsibility consciousness.
12
MATERIALS AND TECHNOLOGY (Knowledge-Theoretical, Factual): To gain knowledge concerning technology, material, product and production methods - that is to be used in the solution of the problem related to the field.
X
13
MATERIALS AND TECHNOLOGY (Skill-Cognitive, Applied): Knowing materials, technology and production methods and developing designs compatible with these methods, proposing new technologies and production methods, developing creative design solutions by interpreting and using technology.
X
14
MATERIALS AND TECHNOLOGY (Competencies - Independent Work and Ability to Take Responsibility): To be able to work together with stakeholders working on different areas and needs in construction and production technologies
X
15
MATERIALS AND TECHNOLOGY (Competencies-Learning Competence): Understand the compatibility and flexibility between the technological tools that meet the requirements according to the needs
X
16
MATERIALS AND TECHNOLOGY (Competencies-Communication and Social Competence): Ability to use appropriate communication techniques and technologies
X
17
MATERIALS AND TECHNOLOGY (Competencies-Field Specific Competencies): Producing and applying knowledge to serve sustainable production and life
X
18
MATERIALS AND TECHNOLOGY (Competencies-Filed specific competencies): To be able to develop creative design solutions by mastering technological development, interpreting the developments and pioneering such developments.
X
19
PROFESSIONAL PRACTICE, PROJECT MANAGEMENT AND LEGAL RESPONSIBILITIES (Knowledge-Theoretical, Factual): -Ethics ​​related to the field, -project management issues, -legal rights and responsibilities, -To gain knowledge about legal responsibilities and regulations affecting design works
20
PROFESSIONAL PRACTICE, PROJECT MANAGEMENT AND LEGAL RESPONSIBILITIES (Skill-Cognitive, Applied): Ability to recognize and apply the techniques used and legal responsibilities in planning, design, construction and operation phases of project management.
21
PROFESSIONAL PRACTICE, PROJECT MANAGEMENT AND LEGAL RESPONSIBILITIES (Competences - Capability to Work Independently and Take Responsibility): To adapt to the different working environments and forms required by the profession and to contribute to the development of these environments
22
PROFESSIONAL PRACTICE, PROJECT MANAGEMENT AND LEGAL RESPONSIBILITIES (Capabilities-Learning Capability): Monitoring and learning the legal, administrative and procedural requirements of design and construction projects throughout professional life, developing new strategic approaches in solving complex problems, taking responsibility
23
PROFESSIONAL PRACTICE, PROJECT MANAGEMENT AND LEGAL RESPONSIBILITIES (Competencies-Communication and Social Competence): Being able to lead the process -deploying the necessary communication skills and tools- during planning, designing, construction and operation stages, and demonstrating leadership in providing the solution in the work environment.
24
PROFESSIONAL PRACTICE, PROJECT MANAGEMENT AND LEGAL RESPONSIBILITIES (Competencies-Field Specific Competence): To be able to transfer knowledge to the level of expertise, to use theoretical and practical knowledge on the field of Professional Practice, Project Management and Legal responsibilities, knowledge of interdisciplinary interaction
25
ENVIRONMENT, STRUCTURE AND HUMAN HEALTH (Knowledge-Theoretic, Factual): Methods and techniques that will be used in the solution of the problems related to the field – to gain knowledge to apply the techniques in the context of environmental health, -building health, -human health
X
26
ENVIRONMENT, STRUCTURE, HUMAN HEALTH (Skill-Cognitive, Applied): Understanding the relationships between environment, structure and human health and creating solutions to related design problems.
X
27
ENVIRONMENT, STRUCTURE, HUMAN HEALTH (Competences - Capability to Work Independently and Take Responsibility): Taking competence and responsibility in the fields of urban / space / product planning, design, implementation and supervision of environment, strcuture and human health
X
28
ENVIRONMENT, STRUCTURE, HUMAN HEALTH (Capabilities-Learning Capability): Competence in researching theoretical and applied information systems on environment, structure and human health
X
29
ENVIRONMENT, STRUCTURE, HUMAN HEALTH (Competencies-Communication and Social Competence): Be able to communicate with all areas of expertise in environment, structure and human health
X

Assessment Methods

Contribution LevelAbsolute Evaluation
Rate of Midterm Exam to Success 40
Rate of Final Exam to Success 60
Total 100
ECTS / Workload Table
ActivitiesNumber ofDuration(Hour)Total Workload(Hour)
Course Hours14228
Guided Problem Solving188
Resolution of Homework Problems and Submission as a Report000
Term Project11010
Presentation of Project / Seminar2816
Quiz000
Midterm Exam12020
General Exam12020
Performance Task, Maintenance Plan11010
Total Workload(Hour)112
Dersin AKTS Kredisi = Toplam İş Yükü (Saat)/30*=(112/30)4
ECTS of the course: 30 hours of work is counted as 1 ECTS credit.

Detail Informations of the Course

Course Description

CourseCodeSemesterT+P (Hour)CreditECTS
FIRE SAFETY in BUILDING DESIGN-Fall Semester2+023
Course Program
Prerequisites Courses
Recommended Elective Courses
Language of CourseTurkish
Course LevelFirst Cycle (Bachelor's Degree)
Course TypeElective
Course CoordinatorAssist.Prof. Mustafa ERDEM
Name of Lecturer(s)Assoc.Prof. Nuri SERTESER
Assistant(s)
AimTo draw attention to the issues related to fire safety in architectural design, to learn the parameters related to fire safety, which architect will be effective in design, to give information about the legal aspects of the fire safety.
Course ContentThis course contains; Ignition and Combustion, Nature of Fire, Fire Development Stages
,Fire Propagation, Fire Spread Between Buildings,Fire Spread inside the Building, Smoke and Toxic Gases,Compartmantation, Determination of Escape Routes,Fire Precautions in Building Elements,Structural Fire Protection, Smoke Ventilation,Burning Properties of Building Materials,MIDTERM,Architectural Design Issues in National Fire Regulations, Case Studies,Architectural Design Issues in National Fire Regulations, Case Studies,Architectural Design Issues in National Fire Regulations, Case Studies,Architectural Design Issues in National Fire Regulations, Case Studies,Architectural Design Issues in National Fire Regulations, Case Studies,Evaluation and analysis.
Dersin Öğrenme KazanımlarıTeaching MethodsAssessment Methods
Understanding the nature of the fire and it’s effects on the buildings Understanding the form of fire propagation and its consequences Learning the precautions against fire in architectural Project16, 9A, E
Teaching Methods:16: Question - Answer Technique, 9: Lecture Method
Assessment Methods:A: Traditional Written Exam, E: Homework

Course Outline

OrderSubjectsPreliminary Work
1Ignition and Combustion, Nature of Fire, Fire Development Stages
2Fire Propagation, Fire Spread Between Buildings
3Fire Spread inside the Building, Smoke and Toxic Gases
4Compartmantation, Determination of Escape Routes
5Fire Precautions in Building Elements
6Structural Fire Protection, Smoke Ventilation
7Burning Properties of Building Materials
8MIDTERM
9Architectural Design Issues in National Fire Regulations, Case Studies
10Architectural Design Issues in National Fire Regulations, Case Studies
11Architectural Design Issues in National Fire Regulations, Case Studies
12Architectural Design Issues in National Fire Regulations, Case Studies
13Architectural Design Issues in National Fire Regulations, Case Studies
14Evaluation and analysis
Resources
Fergusaon, L.H., Janicak, C.A.(2015), Fundamentals of Fire Protection for the Safety Professional, London: Bernan Press. Brannigan, F. L.& Corbett, G.P. (2008). Brannigan's Building Construction for the Fire Service, NFPA, Burlington, MA : Jones & Bartlett Learning, LLC. Robertson, J. C. (2010). Introduction to Fire Prevention, Upper Saddle River, New Jersey: Prentice Hall Health. Quintiere, J. G. (2006). Fundamentals of Fire Phenomena, Chichester : John Wiley. Lataille, J. (2003). Fire Protection Engineering in Building Design, Amsterdam : Butterworth-Heinemann. Patterson, J. (1993). Simplified Design for Building Fire Safety, New York : Wiley. Türkiye Yangından Korunma Yönetmeliği 2015, TÜYAK.

Course Contribution to Program Qualifications

Course Contribution to Program Qualifications
NoProgram QualificationContribution Level
12345
1
DESIGN (Knowledge-Theoretical, Factual): During planning, implementation, management and supervision processes; Knowledge of creative problem defining and solving
2
DESIGN (Skill-Cognitive, Applied): Design-oriented research fiction, execution and evaluation of results and design process planning, management, application skills
3
DESIGN (Competencies-Ability to Work Independently and Take Responsibility): Ability to work within a team, to emphasize interdisciplinary interaction and apply technology-based business association methods
X
4
DESIGN (Competencies-Learning Competence): To evaluate critically the knowledge and skills gained in the field, to plan and to develop constantly professional knowledge, skills and approaches
5
DESIGN (Competencies-Communication and Social Competence): Transferring design solutions as oral, written and visual (2D and 3D) presentations on national and international platforms
6
DESIGN (Competencies-Field Specific Competence): Contributing to the design of industrial products to improve the quality of life of the society.
7
HISTORY, CULTURE, ART (Knowledge-Theoretical, Factual): To make connections between the information obtained by the analytical approach and the information on historical and cultural development and current situation in Turkey and in the world, and to expand the boundaries of vocational education proficiency to develop new ideas
8
HISTORY, CULTURE, ART (Skill-Cognitive, Applied): Ability to solve the design related problems encountered in concept development, by using the knowledge gained in the field of history, culture and art
9
HISTORY, CULTURE, ART (Competencies - Independent Work and Ability to Take Responsibility): To be able to do interdisciplinary work by using the knowledge gained in the field of history, culture and art
10
HISTORY, CULTURE, ART (Competences-Learning Competence): Ability to develop the knowledge gained in the field in the direction needed, using the research methods
11
HISTORY, CULTURE, ART (Competencies-Communication and Social Competence): Awareness of social and cultural phenomena and continuous change and arranging plans, strategies, projects, collaborations and activities for the social environment with social responsibility consciousness.
12
MATERIALS AND TECHNOLOGY (Knowledge-Theoretical, Factual): To gain knowledge concerning technology, material, product and production methods - that is to be used in the solution of the problem related to the field.
X
13
MATERIALS AND TECHNOLOGY (Skill-Cognitive, Applied): Knowing materials, technology and production methods and developing designs compatible with these methods, proposing new technologies and production methods, developing creative design solutions by interpreting and using technology.
X
14
MATERIALS AND TECHNOLOGY (Competencies - Independent Work and Ability to Take Responsibility): To be able to work together with stakeholders working on different areas and needs in construction and production technologies
X
15
MATERIALS AND TECHNOLOGY (Competencies-Learning Competence): Understand the compatibility and flexibility between the technological tools that meet the requirements according to the needs
X
16
MATERIALS AND TECHNOLOGY (Competencies-Communication and Social Competence): Ability to use appropriate communication techniques and technologies
X
17
MATERIALS AND TECHNOLOGY (Competencies-Field Specific Competencies): Producing and applying knowledge to serve sustainable production and life
X
18
MATERIALS AND TECHNOLOGY (Competencies-Filed specific competencies): To be able to develop creative design solutions by mastering technological development, interpreting the developments and pioneering such developments.
X
19
PROFESSIONAL PRACTICE, PROJECT MANAGEMENT AND LEGAL RESPONSIBILITIES (Knowledge-Theoretical, Factual): -Ethics ​​related to the field, -project management issues, -legal rights and responsibilities, -To gain knowledge about legal responsibilities and regulations affecting design works
20
PROFESSIONAL PRACTICE, PROJECT MANAGEMENT AND LEGAL RESPONSIBILITIES (Skill-Cognitive, Applied): Ability to recognize and apply the techniques used and legal responsibilities in planning, design, construction and operation phases of project management.
21
PROFESSIONAL PRACTICE, PROJECT MANAGEMENT AND LEGAL RESPONSIBILITIES (Competences - Capability to Work Independently and Take Responsibility): To adapt to the different working environments and forms required by the profession and to contribute to the development of these environments
22
PROFESSIONAL PRACTICE, PROJECT MANAGEMENT AND LEGAL RESPONSIBILITIES (Capabilities-Learning Capability): Monitoring and learning the legal, administrative and procedural requirements of design and construction projects throughout professional life, developing new strategic approaches in solving complex problems, taking responsibility
23
PROFESSIONAL PRACTICE, PROJECT MANAGEMENT AND LEGAL RESPONSIBILITIES (Competencies-Communication and Social Competence): Being able to lead the process -deploying the necessary communication skills and tools- during planning, designing, construction and operation stages, and demonstrating leadership in providing the solution in the work environment.
24
PROFESSIONAL PRACTICE, PROJECT MANAGEMENT AND LEGAL RESPONSIBILITIES (Competencies-Field Specific Competence): To be able to transfer knowledge to the level of expertise, to use theoretical and practical knowledge on the field of Professional Practice, Project Management and Legal responsibilities, knowledge of interdisciplinary interaction
25
ENVIRONMENT, STRUCTURE AND HUMAN HEALTH (Knowledge-Theoretic, Factual): Methods and techniques that will be used in the solution of the problems related to the field – to gain knowledge to apply the techniques in the context of environmental health, -building health, -human health
X
26
ENVIRONMENT, STRUCTURE, HUMAN HEALTH (Skill-Cognitive, Applied): Understanding the relationships between environment, structure and human health and creating solutions to related design problems.
X
27
ENVIRONMENT, STRUCTURE, HUMAN HEALTH (Competences - Capability to Work Independently and Take Responsibility): Taking competence and responsibility in the fields of urban / space / product planning, design, implementation and supervision of environment, strcuture and human health
X
28
ENVIRONMENT, STRUCTURE, HUMAN HEALTH (Capabilities-Learning Capability): Competence in researching theoretical and applied information systems on environment, structure and human health
X
29
ENVIRONMENT, STRUCTURE, HUMAN HEALTH (Competencies-Communication and Social Competence): Be able to communicate with all areas of expertise in environment, structure and human health
X

Assessment Methods

Contribution LevelAbsolute Evaluation
Rate of Midterm Exam to Success 40
Rate of Final Exam to Success 60
Total 100

Numerical Data

Student Success

Ekleme Tarihi: 30/03/2023 - 15:57Son Güncelleme Tarihi: 30/03/2023 - 16:24