VŠTE:N_GZP Geotechnics - Course Information
N_GZP Geotechnics, basing and subterranean engineering
Institute of Technology and Business in České Budějovicesummer 2024
- Extent and Intensity
- 2/1/0. 5 credit(s). Type of Completion: zk (examination).
- Teacher(s)
- prof. Ing. Radimír Novotný, DrSc. (seminar tutor)
doc. RNDr. Ivo Opršal, Ph.D. (seminar tutor)
Ing. Tomáš Navara (assistant) - Guaranteed by
- prof. Ing. Radimír Novotný, DrSc.
Department of Civil Engineering – Faculty of Technology – Rector – Institute of Technology and Business in České Budějovice
Supplier department: Department of Civil Engineering – Faculty of Technology – Rector – Institute of Technology and Business in České Budějovice - Timetable of Seminar Groups
- N_GZP/P01: Mon 11:25–12:55 D416, R. Novotný
N_GZP/S01: Wed 6. 3. 8:00–9:30 D215, 9:40–11:10 D215, 11:25–12:55 D215, 13:05–13:50 D215, Wed 20. 3. 8:00–9:30 D215, 9:40–11:10 D215, 11:25–12:55 D215, I. Opršal - Prerequisites (in Czech)
- FORMA(P)
- Course Enrolment Limitations
- The course is offered to students of any study field.
- Course objectives supported by learning outcomes
- Geotechnics, foundation and underground engineering is to provide students with basic knowledge about the physical properties of soils as a three-phase discrete environment, especially their bearing capacity and compressibility. It is to inform about the possibilities and ways in which to safely establish buildings.
- Learning outcomes
- Students gained basic knowledge of physical properties of soil as three-phase discrete environment, especially their bearing capacity and compressibility. They are informed about the possibilities and ways to securely build the building objects.
- Syllabus
- 1. Genesis of soils, the mineralogical composition and physical structure. Particle size classification of soils, line, texture, triangular diagram 2. Water in soils and their properties also affect the behavior of soils. Some physical properties of the soil (soil consistency, density, bulk density, bulk density, porosity and void ratio). SUMMARY cohesive soils. Capillarity in soils. 3. Mechanical stress in soils. Tensions efficient, complete and neutral. Consolidation of soils. Compressibility of soil. 4. Criteria for breach of soils, especially Mohr-Coulomb criterion for a breach of the shear. 5. Link between shear stress in discrete environments, and pore pressure, dilation and kontraktance. Pore pressure as one of the starting points to the emergence of the current pressure. Flowing sands. 6th Stress in soils under biaxial stress state. 7. Any other business models and ideas about the ultimate foundation soil; the principle of ultimate load. 8. Side pressures loose materials (especially earth), according to Rankin. Terzaghi-ho respectively. Mueller-Breslau-UV attempt. Active pressure and passive resistance of soil. 9th Static pressure earth. "Resilient" pressures earth. Ensuring excavations. 10. Principles investigation of slope stability. (Felleniova, Petterssonova and Bishop method in outline). 11. Allocation kinds of bases on local, line and area. Piles, micro piles, wells. Milan wall. 12. Approximate solution footing and grates. 13th Approximate solution baseboards and the principle of dealing pilot "propped against" and "floating".
- Literature
- required literature
- RACLAVSKÝ, Jaroslav. Slovník pojmů ve výstavbě: doporučený standard - metodická řada DOS M 01.01.BVT : bezvýkopové technologie. Praha: Informační centrum České komory autorizovaných inženýrů a techniků činných ve výstavbě, 2004, 127 s. ISBN 80-867-6924-0
- MASOPUST, Jan. Navrhování základových a pažicích konstrukcí: příručka k ČSN EN 1997. 1. vyd. Praha: Pro Českou komoru autorizovaných inženýrů a techniků činných ve výstavbě vydalo Informační centrum ČKAIT, 2012, 208 s. ISBN 978-80-87438-31-2.
- recommended literature
- BAŽANT, Zdeněk P. Metody zakládání staveb. 2., přeprac. vyd. Praha: Academia, 1972, 649 pp. info
- MYSLIVEC, Alois, Ján JESENÁK and Jaroslav EICHLER. Mechanika zemin. 1. vyd. Praha: SNTL, 1970, 387 pp. info
- ZÁRUBA, Quido and Vojtěch MENCL. Sesuvy a zabezpečování svahů. 1. vyd. Praha: Academia, 1969, 221 pp. info
- Forms of Teaching
- Lecture
Seminar - Teaching Methods
- Frontal Teaching
Group Teaching - Cooperation
Critical Thinking
Individual Work– Individual or Individualized Activity
- Student Workload
Activities Number of Hours of Study Workload Daily Study Combined Study Preparation for Lectures 13 Preparation for Seminars, Exercises, Tutorial 13 Preparation for the Final Test 52 Seminar work 13 Attendance on Lectures 26 Attendance on Seminars/Exercises/Tutorial/Excursion 13 Total: 130 0 - Assessment Methods and Assesment Rate
- Exam – written 70 %
Seminary Work 30 % - Exam conditions
- Successful graduates of the course have to get totally at least 70 points: A 100 – 90, B 89,99 – 84, C 83,99 – 77, D 76,99 – 73, E 72,99 – 70, FX 69,99 – 30, F 29,99 - 0.
- Language of instruction
- Czech
- Teacher's information
- Attendance in lessons is defined in a separate internal standard of ITB (Evidence of attendance of students at ITB). It is compulsory, except of the lectures, for full-time students to attend 70 % lesson of the subjet in a semester.
- Enrolment Statistics (recent)
- Permalink: https://is.vstecb.cz/course/vste/summer2024/N_GZP