Course detail

Physical modelling

FAST-CR53Acad. year: 2024/2025

Modelling - purpose, types, general law of model similitude, dimensional analysis, criterion of modell similitude, modell scale selection.
Physical modells - hydraulic, aerodynamic, analogue and mathematical, their advantages, combinations, usefulness.
Quantities measurement, elaboration of the measurements.
Site measurements and reconnaissance for the modelling.
Recount of modell values to the real values and via versa.
The course is continually upgraded and used in the context of lifelong education and training ERASMUS+.

Language of instruction

Czech

Number of ECTS credits

5

Mode of study

Not applicable.

Entry knowledge

Physics, mathematics, concrete structures, earth mechanics, hydraulics.
Basic knowledge, including statistics. Basic knowledge including laws, fluid flow, fluid.

Rules for evaluation and completion of the course

Extent and forms are specified by guarantor’s regulation updated for every academic year.

Aims

Methodology and solution of hydrodynamic phenomenons including their modelling
1. Skilled summary about the problems of water resources management and data relationship to environment.
2. Claiming the knowledge for municipal government and skilled departments of MPO, MZE, MŽP.

Study aids

Not applicable.

Prerequisites and corequisites

Not applicable.

Basic literature

Doležalík V.: Podobnost a modelování v chemické technologii. SNTL Praha, 1959.
Čábelka j., Novák P.: Hydrotechnický výzkum 1. SNTL-SVTL, 1964.
Hálek V.: Hydrotechnický výzkum 3. SNTL Praha, 1965.
Kratochvil S.: Hydrotechnický výzkum 2. SNTL Praha, 1965.
Kolář V. a kol.: Hydraulika. SNTL Praha, 1966.
Kolář V., Patočka C., Bém J.: Hydraulika. SNTL-ALFA, 1983.
Čábelka J.a Gabriel P.: Matematické a fyzikální modelování v hydrotechnice. Academia Praha, 1987.

Recommended literature

Not applicable.

Type of course unit

 

Lecture

26 hod., optionally

Teacher / Lecturer

Syllabus

1.- 2. Bases and theory of modelling. 3.- 4. Hydraulic modells - scale, material, measuring devices. 5. Analogue modells and aerodynamic modells. 6.- 7. Measuring and processing of results. 8.- 9. Measurement in site, measuring devices. 10. Results elaboration, recount modell values to the real values. 11.-13. Possibility of excursions or other individual events (measurement technology, workplace AV CR, etc.) during the semester. The course is continually upgraded and used in the context of lifelong education and training ERASMUS+.

Field training

48 hod., compulsory

Teacher / Lecturer

Syllabus

8.-9. Field measurement, measurement technology. Can be followed on: 11.-13. Possibility of excursions or other individual events (measurement technology, workplace AV CZ, etc.) during the semester. The course is continually upgraded and used in the context of lifelong education and training ERASMUS+.

Exercise

26 hod., compulsory

Teacher / Lecturer

Syllabus

1.-2. Training on OSH and PPO. Practice Newtons theory of modelling. 3.-4. Application of modelling water modells - scale (laboratory parameters), material, measurement technology. 5. Examples of the analog modells and aerodynamic modells. 6.-7. Measurements in LVV Instituts and processing results. 8.-9. Practical field measurement, measurement technology, results processing. 10. Treatment protocols and results, the conversion modell and reality. 11.-13. Possibility of excursions or other individual events (measurement technology, workplace AV CZ, etc.) during the semester.