Eskisehir Technical University Info Package Eskisehir Technical University Info Package
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About the Program Educational Objectives Key Learning Outcomes Course Structure Diagram with Credits Field Qualifications Matrix of Course& Program Qualifications Matrix of Program Outcomes&Field Qualifications
  • Faculty of Architecture and Design
  • Department of Interior Design
  • Course Structure Diagram with Credits
  • Construction I
  • Description
  • Description
  • Learning Outcomes
  • Course's Contribution to Prog.
  • Learning Outcomes & Program Qualifications
  • ECTS Credit Load

Course Introduction Information

Code - Course Title İÇT217 - Construction I
Course Type Required Courses
Language of Instruction Türkçe
Laboratory + Practice 2+0
ECTS 2.0
Course Instructor(s) ÖĞRETİM GÖREVLİSİ BİROL AKÇORAL
Mode of Delivery The mode of delivery of this course is face to face
Prerequisites There is no prerequisite or co-requisite for this course.
Courses Recomended There is no recommended optional programme component for this course.
Required or Recommended Resources *Atımtay, E., (1989), Yapı Sistemleri I, Ankara: ---- .*Ayaydın, Y., (1987), Taşıyıcı Duvar Perdeli Prefabrike Yapılar, İstanbul: Yılmaz Ofset Matbaası.*Ayaydın, Y., (1989), Büyük Açıklıklı Prefabrike Betonarme Yapılar. İstanbul: Kurtiş Matbaası.*Ayaydın, Y., (1992), Betonarme Çok Katlı Prefabrike İskelet Sistemler, Sistemlerin Tanıtımı, İstanbul: Kurtiş Matbaası.*Ayaydın, Y., Koman, İ., (2004), Mimarlar için 12 Soruda Beton Prefabrikasyon, İstanbul: Birmat Matbaası.*Barry, R., (2000), The Construction of Buildings - IV Volumes. London.*Bayülgen, C., (1993), Çağdaş Strüktür Sistemleri, İstanbul: YTÜ.*Beton Prefabrikasyon Dergisi. Ankara: Türkiye Prefabrik Birliği Yayını (aylık dergi)*Betonwerk+BFT Fertigteil-Technik - Concrete Precasting Plant (aylık dergi).*Brandt, J,. Heene, V., (1988), Fassaden, Konstruktion und Gestaltung mit Betonfertigteilen. Dusseldorf: Beton Verlag GmbH.*Ching,D.K., Onouye, B.S., Zuberbuhler, D., (2017), Çizimlerle Taşıyıcı Sistemler “Şemalar, Sistemler ve Tasarım”. İstanbul: Matsis Matbaa Sistemleri, YEM Yayın.*Erman, E., (2002), Deprem Bilgisi ve Depreme Güvenli Mimari Tasarım. Ankara: ODTÜ.*Foster, J.S., Harington,R., (2000), Structure and Fabric. London: Mitchell's Building Series, Batsford.*Foster, M., (1983), The Principles of Architecture: Style, Structure and Design, Oxford: Phaidon Press Limited.*Gerçek, C., (1979), Yapıda Taşıyıcı Sistemler. Ankara: Yaprak Kitabevi.*Gönençen, K., (2003), Mimari Proje Tasarımında Depreme Karşı Yapı Davranışın Düzenlenmesi. Ankara: Teknik Yayınevi.*Koncz, T., (1979), Prefabrikasyona Giriş "Endüstrileşmiş Yapı Üretimi ". Önsöz: Arıoğlu, E., Anadol, K., Çeviri: Aka Baldaş, İstanbul: Yapı Merkezi Yayınları.*Koncz, T., (1975), Fertigteilbau I, II, III. Wiesbaden: Bauverlag GmbH.*Macdonald, A., (1994), Structure and Architecture. London: Butterworth Architecture.*Macdonald, A., (1998), Structural Design for Architecture. London: Butterworth Architecture.*Mainstone, R.J., (1998), Developments in Structurel Form. London: Architectural Press.*Meistermann, A., (2012), Adım Adım / Taşıyıcı Sistemler, İstanbul: Mas Matbaacılık, YEM Yayın.*Meyer-Bohe, W., (1972), Beton-Fertigteilbau, Elemente des Bauens, Verlagsanstalt Alexander Koch GmbH.*Morris, A.E.J., (1980), Precast Concrete in Architecture, Part 1, 2. London: George Godwing Ltd.*Roth, L. M., (2006), Mimarlığın Öyküsü. (sf: 42-73). İstanbul: Kabalcı Yayınevi.*Salvadori M.; Heller R., (1982), Mimarlıkta Taşıyıcı Sistem, İstanbul: İTÜ*Sey, Y., ve diğ., (198?), Çağdaş Yapım Sistemleri (Ders notları). İstanbul: İTÜ Kitap Yayınları No. 13.*Tuna, M.E., (2000), Depreme Dayanıklı Yapı Tasarımı. Ankara: Ajans Türk.*Türkçü, Ç., (2004), Yapım “İlkeler-Malzemeler-Yöntemler-Çözümler”. İstanbul: Birsen Yayınevi.*Türkiye Bina Deprem Yönetmeliği, (2018), Afet ve Acil Durum Yönetimi Başkanlığı, (18.03.2018)
Recommended Reading List -
Assessment methods and criteria 1 Midterm Exam, 1 Final Exam, Practices.
Work Placement N/A
Sustainability Development Goals Quality Education , Clean Water and Sanitation , Accessible and Clean Energy , Industry, Innovation and Infrastructure , Reducing Inequalities , Sustainable Cities and Communities

Content

Weeks Topics
Week - 1 EN: Introduction to general meaning of construction.
Week - 2 EN: Principles of constructional design.
Week - 3 EN: Foundations; The relationship between building and soil, types of foundations.
Week - 4 EN: Walls; Functions and requirements of walls, constructions of walls.
Week - 5 EN: Floors; Functional requirements, types of floors.
Week - 6 EN: Roofs; Functional requirements, types of roofs.
Week - 7 EN: Solitions of pitched roofs, flat roofs, roof coverings.
Week - 8 EN: Stairs; general introductions, functional requirements, constructional requirements.
Week - 9 EN: Constructions of stairs, balancing of stairs.
Week - 10 EN: Constructions of stairs, balancing of stairs.
Week - 11 EN: Solution of stairs. (Application)
Week - 12 EN: Balancing of stairs. (Application)
Week - 13 EN: Elevators, Escalators.
Week - 14 EN: Fireplaces and flues.

Learning Activities and Teaching Methods

  • Teaching Methods
  • Lecture
  • Discussion
  • Question & Answer
  • Drill - Practise
  • Competences
  • Rational
  • Questoning
  • Creative
  • Problem solving

Assessment Methods

Assessment Method and Passing Requirements
Quamtity Percentage (%)
1.Midterm Exam 1 25
Final Exam 1 50
Practice 1 25
Toplam (%) 100
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