Faculty of Engineering and Natural Sciences · Architecture · Undergraduate
Course Objective
This class aims to teach the fundamental architectural principles and methods for developing economical, sustainable, user centered, and context sensitive solutions in the design of post-disaster temporary shelters.
Course Content
Examination of the Design, Installation, and Accessibility Processes of Different Types of Post-Disaster Shelter Units
Required Resources
Course Notes and Explanatory Lecture Presentations
Recommended Resources
Davis, I. (2014). Shelter After Disaster (Second Edition). Oxford: Oxford Brookes University.
Explanations
- Midterm Examination: The date, time, and venue of the midterm examination will be announced by the Dean’s Office.
- Practical Exercises: Practical exercises will be carried out in accordance with the topics covered during the course. Submission deadlines for each exercise will be announced separately.
- Quizzes: Quizzes will be announced one week in advance, and the announcement will specify the course content to be covered.
- Final Submission: The final submission will consist of six practical applications completed throughout the semester. These applications must be integrated into the student's architectural design project developed within the concurrent Architectural Design Studio. For each application topic, students are required to prepare one A3 or B2 presentation board that explains both the theoretical framework of the application and its implementation within the architectural project. Final submissions must be submitted both digitally and in printed format.
- Final Assessment Policy: As the final assessment is based on a comprehensive project submission rather than a written examination, there is no make-up (resit) examination for this course.
Rules
Attendance: According to the University Regulations, students who fail to attend at least 70% of the total course hours will receive a grade of DZ (Absent) and will automatically fail the course.
Late Arrival: Students are expected not only to attend class but also to arrive on time. Please note that three late arrivals are considered equivalent to one full absence. A late arrival is defined as entering the classroom after attendance has been taken by the instructor and more than 10 minutes after the scheduled start of the class.
Seeking Assistance: Students are encouraged to ask questions during class or office hours and to seek assistance whenever necessary. Obtaining timely support is an important part of the learning process and is strongly recommended.
Academic Integrity: All coursework submitted for assessment must represent your own original work and effort. Acts of academic misconduct, including plagiarism and cheating, are subject to the University's Academic Integrity and Disciplinary Regulations and may result in disciplinary action and the corresponding sanctions.
Assessment Policy: The assessment methods and grading criteria specified in this syllabus are final. No additional assignments, examinations, or make-up assessments will be offered for the purpose of improving course grades.
Course Learning Outcomes
- Afet sonrası barınma modellerini ve süreçlerini kavrar
- Afet sonrası barınma bağlamında sürdürülebilir ve dirençli barınma yaklaşımlarını kavrar
- Afet sonrası barınma politikaları ve yönetişim modellerini öğrenir
- Afet sonrası barınma için yenilikçi tasarımlar geliştirebilir
Core Area Distribution
Teaching Methods
Assessment & Evaluation
ECTS / Workload
| Activity | Quantity | Duration (h) | Total Workload |
|---|---|---|---|
| Course Duration (Including Exam Week) | 15 | 2 | 30 |
| Out of Class Study Period | 14 | 2 | 28 |
| Midterm | 0 | 0 | 0 |
| Quiz | 0 | 0 | 0 |
| Assignment | 1 | 6 | 6 |
| Practice | 0 | 0 | 0 |
| Final | 1 | 6 | 6 |
Course Schedule
| Week | Subject | Preparation |
|---|---|---|
| 1 | Introduction to the course content. Introduction to physical environmental control and its relationship with building physics; the significance of environmental control and energy consumption in buildings. Climatic elements and solar radiation. | Downloading the Course Syllabus from the Campus Information System |
| 2 | Post-Disaster Shelter: Conceptual and Academic Framework | Review of the Lecture Presentations |
| 3 | Phases of Post-Disaster Shelter: Emergency, Temporary, Transitional, and Permanent Shelter | Review of the Lecture Presentations |
| 4 | Post-Disaster Resilient Urbanization and Sustainability | Review of the Lecture Presentations |
| 5 | Spatial Justice, Social Inequalities, and Post-Disaster Spatial Segregation in Post-Disaster Shelter | Review of the Lecture Presentations |
| 6 | Cultural and Social Factors in Post-Disaster Shelter: Local Architecture and Cultural Continuity | Review of the Lecture Presentations |
| 7 | Ecological and Climate-Responsive Shelter Models (I) | Review of the Lecture Presentations |
| 8 | Ara Sınav | Ara Sınav |
| 9 | Ecological and Climate-Responsive Shelter Models (II) | Review of the Lecture Presentations |
| 10 | Emerging Technologies and Alternative Design Strategies | Review of the Lecture Presentations |
| 11 | Biomimetic and Nature-Based Solutions in Post-Disaster Housing Design | Review of the Lecture Presentations |
| 12 | Post-Disaster Housing Using Local Materials and Traditional Construction Techniques | Review of the Lecture Presentations |
| 13 | Emerging Technologies and Alternative Design Strategies | Review of the Lecture Presentations |
| 14 | Post-Disaster Shelter Planning Using Artificial Intelligence and Big Data | Review of the Lecture Presentations |
| 15 | Presentations on Post-Disaster Shelter Examples Based on Adaptive and Bioclimatic Design | Review of the Lecture Presentations |
| 16 | Final Sınavı | Final Sınavı |


