CPM02-Construction Methods

Course Information
TitleΚατασκευαστικές Μέθοδοι / CPM02-Construction Methods
CodeΔΚΕ02
FacultyEngineering
SchoolCivil Engineering
Cycle / Level2nd / Postgraduate
Teaching PeriodWinter/Spring
CommonNo
StatusActive
Course ID600028886

Programme of Study: DIACΗEIRISĪ KATASKEUĪS ERGŌN

Registered students: 14
OrientationAttendance TypeSemesterYearECTS
KORMOSCompulsory Course116

Class Information
Academic Year2025 – 2026
Class PeriodWinter
Faculty Instructors
Class ID
600283198
Course Type 2021
Specialization / Direction
Mode of Delivery
  • Face to face
Digital Course Content
Language of Instruction
  • Greek (Instruction, Examination)
Learning Outcomes
After completing the courses and successfully passing their examination, students will be able to understand the concepts and principles of the constructability of projects and the methods of rapid construction and parallel construction through examples of good practices. They will be able to understand the basic concepts of lean construction in the context of continuous improvement. They will be able to understand the mechanisms and the transfer of lean construction principles to the design, study and construction of a technical project. They will be able to apply multi-criteria analysis techniques to evaluate alternative technical solutions. They will be able to understand the concept of Construction Value Management through field practices. They will be able to understand the different construction methods and the necessary equipment through examples of good practices and failures in bridges, tunnels, road projects and infrastructure projects in general.
General Competences
  • Apply knowledge in practice
  • Retrieve, analyse and synthesise data and information, with the use of necessary technologies
  • Adapt to new situations
  • Make decisions
  • Work autonomously
  • Work in teams
  • Work in an international context
  • Work in an interdisciplinary team
  • Generate new research ideas
  • Design and manage projects
  • Appreciate diversity and multiculturality
  • Respect natural environment
  • Demonstrate social, professional and ethical commitment and sensitivity to gender issues
  • Be critical and self-critical
Educational Material Types
  • Notes
  • Slide presentations
  • Book
Use of Information and Communication Technologies
Use of ICT
  • Use of ICT in Course Teaching
  • Use of ICT in Laboratory Teaching
  • Use of ICT in Communication with Students
  • Use of ICT in Student Assessment
Course Organization
ActivitiesWorkloadECTSIndividualTeamworkErasmus
Lectures39
Reading Assigment101
Field trips and participation in conferences / seminars / activities8
Written assigments28
Total176
Student Assessment
Student Assessment methods
  • Written Exam with Multiple Choice Questions (Formative, Summative)
  • Written Exam with Short Answer Questions (Formative, Summative)
  • Written Exam with Extended Answer Questions (Formative, Summative)
  • Written Assignment (Formative, Summative)
  • Oral Exams (Formative, Summative)
  • Performance / Staging (Formative, Summative)
  • Written Exam with Problem Solving (Formative, Summative)
Bibliography
Course Bibliography (Eudoxus)
1. ΔΟΜΙΚΕΣ ΜΗΧΑΝΕΣ, ΛΕΙΤΟΥΡΓΙΚΗ ΑΝΑΛΥΣΗ ΚΑΙ ΚΟΣΤΟΛΟΓΗΣΗ ΕΡΓΩΝ ΠΟΛΙΤΙΚΟΥ ΜΗΧΑΝΙΚΟΥ, ΚΛΑΙΡΗ ΠΕΤΡΟΥΤΣΑΤΟΥ, ΜΑΡΙΝΑ ΜΑΡΙΝΕΛΛΗ, 2Η ΕΚΔΟΣΗ, ΕΚΔΟΣΕΙΣ ΚΡΙΤΙΚΗ, 2018
Additional bibliography for study
1. ΔΟΜΙΚΕΣ ΜΗΧΑΝΕΣ ΚΑΙ ΚΑΤΑΣΚΕΥΑΣΤΙΚΕΣ ΜΕΘΟΔΟΙ, Σ. ΛΑΜΠΡΟΠΟΥΛΟΣ, Μ. ΜΑΡΙΝΕΛΛΗ, Κ. ΠΕΤΡΟΥΤΣΑΤΟΥ, ΑΥΤΟΕΚΔΟΣΗ, 2014 2. CONSTRUCTION PLANNING, EQUIPMENT, AND METHODS, R.L. PEURIFOY, C.J. SCHEXNAYDER, A. SHAPIRA, R.L. SCHMITT, McGRAW - HILL INTERNATIONAL EDITION, 2011 3. CONSTRUCTION METHODS AND MANAGEMENT, S.W. NUNNALLY, 8TH EDITION, PEARSON NEW INTERNATIONAL EDITION, 2014 4. Hrissanthou, V. (2015). River Hydraulics and Hydraulic Structures [Undergraduate textbook]. Kallipos, Open Academic Editions. ISBN 978-960-603-466-4. https://dx.doi.org/10.57713/kallipos-493 5. CIRIA. (2007). “Design of river and canal structures.” In The Rock Manual: The use of rock in hydraulic engineering (2nd edition), CIRIA (C683), Chapter 8. CIRIA, London. ISBN 978-0-86017-683-1. 6. Chen, S.-H. (2015). Hydraulic Structures. Springer, Singapore. ISBN 978-981-287-964-6. https://doi.org/10.1007/978-981-287-964- 7. Phillips, M. (2020). Hydraulic Structures – Learning from Recent (Partial) Failures. In Proceedings of the International Symposium on Hydraulic Structures (ISHS 2020), Brisbane, Australia, 6–8 May 2020. University of Queensland. https://espace.library.uq.edu.au/view/UQ:734966/M_Phillips_ishs2020_Final.pdf 8. Hrissanthou, V. (2015). River Hydraulics and Hydraulic Structures [Undergraduate textbook]. Kallipos, Open Academic Editions. ISBN 978-960-603-466-4. https://dx.doi.org/10.57713/kallipos-493 9. CIRIA. (2007). “Design of river and canal structures.” In The Rock Manual: The use of rock in hydraulic engineering (2nd edition), CIRIA (C683), Chapter 8. CIRIA, London. ISBN 978-0-86017-683-1. 10. Chen, S.-H. (2015). Hydraulic Structures. Springer, Singapore. ISBN 978-981-287-964-6. https://doi.org/10.1007/978-981-287-964-6 11. Phillips, M. (2020). Hydraulic Structures – Learning from Recent (Partial) Failures. In Proceedings of the International Symposium on Hydraulic Structures (ISHS 2020), Brisbane, Australia, 6–8 May 2020. University of Queensland. https://espace.library.uq.edu.au/view/UQ:734966/M_Phillips_ishs2020_Final.pdf 12. Cruz J. and Atcheson M. (2016). Floating Offshore Wind Energy: The Next Generation of Wind Energy. Springer Cham; https://doi.org/10.1007/978-3-319-29398-1 (e-book) 13. Castro-Santos L. and Diaz-Casas V. (2016). Floating Offshore Wind Farms. Springer Cham; https://doi.org/10.1007/978-3-319-27972-5 (e-book) 14. Michael Z. Hauschild, Ralph K. Rosenbaum, Stig Irving Olsen (2018). Life Cycle Assessment: Theory and Practice. Springer Cham; https://doi.org/10.1007/978-3-319-56475-3 (e-book) 15. Carbon Trust (2024). Offshore wind industry product carbon footprinting guidance. Available online https://www.carbontrust.com/en-eu/our-work-and-impact/guides-reports-and-tools/standardising-offshore-wind-carbon-footprinting 16. Jiang Z. (2021). Installation of Offshore Wind Turbines: A Technical Review. Renewable and Sustainable Energy Reviews, Article 110685; https://doi.org/10.1016/j.rser.2020.110576 17. Hu M., Shi J., Yang S., Chen M., Tang Y. and Liu S. (2024). Current Status and Future Trends in Installation, Operation and Maintenance of Offshore Floating Wind Turbines. Journal of Marine Science and Engineering. 12(12): 2155; https://doi.org/10.3390/jmse12122155 . 18. Tsinker G.P. Port Engineering_ Planning, Construction, Maintenance, and Security (2004, Wiley)
Last Update
10-09-2025