Course Details
Physical Geodesy
Academic Year 2022/23
DEB058 course is part of 4 study plans
DPC-GK Summer Semester 1st year
DKC-GK Summer Semester 1st year
DPA-GK Summer Semester 1st year
DKA-GK Summer Semester 1st year
Credits
7 credits
Language of instruction
Czech
Semester
Course Guarantor
Institute
Forms and criteria of assessment
Entry Knowledge
Student will study basic issues of physical geodesy, geopotential models and satellite methods for their creation.
Aims
Znalost fyzikálních základů geodézie. Přehled tradičních a současných metod fyzikální geodézie. Seznámení se současnými technikami určování fyzikálních parametrů Země.
Basic Literature
Recommended Reading
Burša, M.: Geopotenciál, teoretické základy a modely. Učebnice, díl I, Geografická služba AČR, 2004. (cs)
Burša, M., Vatrt, V., Vojtíšková, M.: Geopotenciál, díl II, Modely a jejich využití v praxi, Geografická služba AČR, 2012. (en)
Hofmann-Wellenhof, B., Moritz, H.: Physical geodesy. Springer, 2005. (en)
Pick, M.: Advanced Physical Geodesy and Gravimetry. Ministry of Defence CR, 2000. (en)
Syllabus
2. Field of centrifugal force of the rotating Earth. Field of tidal forces. Earth´s gravity field. Gravity potential level surfaces of gravity potential.
3. Theory of heights. Stokes´ parameters and their determination. Normal gravity and gravity force field of level spheroids.
4. Earth´s normal gravity field. Measurement of fundamental gravity field parameters.
5. Modern methods for determination of the Earth´s shape.
6. Tidal phenomena, local and regional geodynamics. Earth´s magnetic and thermal field.
7. Practical applications of physical geodesy methods.
Prerequisites
Corequisites
The student should have advanced knowledge of physics and mathematics.
Specification of controlled instruction, the form of instruction, and the form of compensation of the absences
Offered to foreign students
Course on BUT site
Lecture
13 weeks, 3 hours/week, elective
Syllabus
2. Field of centrifugal force of the rotating Earth. Field of tidal forces. Earth´s gravity field. Gravity potential level surfaces of gravity potential.
3. Theory of heights. Stokes´ parameters and their determination. Normal gravity and gravity force field of level spheroids.
4. Earth´s normal gravity field. Measurement of fundamental gravity field parameters.
5. Modern methods for determination of the Earth´s shape.
6. Tidal phenomena, local and regional geodynamics. Earth´s magnetic and thermal field.
7. Practical applications of physical geodesy methods.