Course Unit Code | 223-0085/01 |
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Number of ECTS Credits Allocated | 4 ECTS credits |
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Type of Course Unit * | Compulsory |
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Level of Course Unit * | First Cycle |
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Year of Study * | Fourth Year |
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Semester when the Course Unit is delivered | Winter Semester |
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Mode of Delivery | Face-to-face |
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Language of Instruction | Czech |
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Prerequisites and Co-Requisites | Course succeeds to compulsory courses of previous semester |
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Name of Lecturer(s) | Personal ID | Name |
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| DAN159 | doc. Ing. Jana Daňková, Ph.D. |
| MUR069 | Ing. Tereza Majstríková, Ph.D. |
Summary |
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Students are acquainted with basic requirements for construction and especially with defects and defects of buildings. Students are acquainted with the technological process of remediation, with special regard to the properties of remediation materials. Attention is paid to the rehabilitation of historical buildings and to the ecological and economic aspects of remediation technologies. |
Learning Outcomes of the Course Unit |
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Students are encouraged to understand the processes of degradation of materials and building structures. Learning outcomes of the course unit The aim of the subject is to acquire knowledge and skills in the field of remediation materials and their applications, and knowledge of technological processes.
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Course Contents |
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• Technical building investigation
• Evaluation of defects and failures
• Aspects for selection and design of remediation technology
• Materials and technologies for rehabilitation of concrete and reinforced concrete structures
• Materials and technologies for rehabilitation of masonry structures
• Materials and technologies for redevelopment of natural stone constructions
• Materials and technologies for the redevelopment of wooden structures
• Materials and technologies for the rehabilitation of metal structures
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Recommended or Required Reading |
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Required Reading: |
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[1] GULVANESSIAN, Haig; CALGARO, Jean-Armand; HOLICKÝ, Milan. Designer's guide to EN 1990: eurocode: basis of structural design. Thomas Telford, 2002.
[2] ISO 13822 Bases for design of structures-Assessment of existing structures. CEN Brussels, 2005. |
[1] ČSN EN 1990 Eurokód: Zásady navrhování stavebních konstrukcí. Praha: ČNI, 2015.
[2] ČSN ISO 13 822 (73 0038) Zásady navrhování konstrukcí. Hodnocení existujících konstrukcí. Praha: ČNI, 2005.
[3] DROCHYTKA, R. et al. Technické podmínky pro sanace betonových konstrukcí TPSSBK III. Brno: Sdružení pro sanace betonových konstrukcí, 2012, 265 s. ISBN 978-80-260-2210-7.
[4] Emmons, Peter H. and Brandon W. Emmons. Sanace a údržba betonu v ilustracích: Rozbor problematiky, strategie sanace, technologie. Brno: CERM, 1999.
[5] GULVANESSIAN, Haig; CALGARO, Jean-Armand; HOLICKÝ, Milan. Designer's guide to EN 1990: eurocode: basis of structural design. Thomas Telford, 2002. |
Recommended Reading: |
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[1] ANSARI, Farhad (ed.). Sensing issues in civil structural health monitoring. Dordrecht (The Netherlands): Springer, 2005.
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[1] Hošek, J. Stavební materiály pro rekonstrukce. Praha: ČVUT, 1996.
[2]Rovnaníková, P. Stavební chemie. Brno: CERM, 2005.
[3]Bažant, Z. a Klusáček, L. Statika při rekonstrukcích objektů. Brno: CERM, 2004.
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Planned learning activities and teaching methods |
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Lectures, Tutorials, Experimental work in labs, Terrain work, Other activities |
Assesment methods and criteria |
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Task Title | Task Type | Maximum Number of Points (Act. for Subtasks) | Minimum Number of Points for Task Passing |
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Credit and Examination | Credit and Examination | 100 (100) | 51 |
Credit | Credit | 35 | 18 |
Examination | Examination | 65 | 16 |