541-0505/04 – Interpretation of Geophysical Data (IGFD)
Gurantor department | Department of Geological Engineering | Credits | 5 |
Subject guarantor | Ing. Aleš Poláček, CSc. | Subject version guarantor | Ing. Aleš Poláček, CSc. |
Study level | undergraduate or graduate | Requirement | Choice-compulsory |
Year | 2 | Semester | winter |
| | Study language | Czech |
Year of introduction | 2009/2010 | Year of cancellation | 2012/2013 |
Intended for the faculties | HGF | Intended for study types | Follow-up Master |
Subject aims expressed by acquired skills and competences
Manage the summary of the subject by annotation. Learn to applicate the complex of geophysical metods in geological practise.
Teaching methods
Lectures
Tutorials
Summary
The subject informs of ways of geophysical data collections processing, drift
correction and correction of measured fields time variations. There are given
utilization of statistical characterization of data, filter procedures for
restricting of subsurface heterogeinity effects and non special-interest
geophysical fields, approximation of profile anomaly curves. There are given
physical and mathematical models of anomaly bodies, interpretation processes
for anomaly bodies various shape, there are shown ways of results representing .
Compulsory literature:
Mareš, S. a kol. (1991): Úvod do užité geofyziky . SNTL/Praha,676 s.
Guberman., Š.A. (1987): Neformalnyj analiz dannych v geologii a geofizike.
Nědra, Moskva.
Karous., M. (1989): Geoelektrické metody průzkumu. SNTL/Alfa, Praha, 423 s.
Recommended literature:
Additional study materials
Way of continuous check of knowledge in the course of semester
E-learning
Other requirements
Prerequisities
Subject has no prerequisities.
Co-requisities
Subject has no co-requisities.
Subject syllabus:
1.Processing of geophysical data collections
2.Drift correction and correction of measurement fields time variation
3.Statistical characterization of data,
4.Filters procedures for restricting of subsurface heterogeneity effects and non special-interest geophysical fields.
5.Approximation of Anomaly curves
6.Physical and mathematical models of anomaly bodies.
7.Interpretation processes for simple anomaly bodies
8.Interpretation processes for complex anomaly bodies
9.Ways of geophysical results representation
Conditions for subject completion
Occurrence in study plans
Occurrence in special blocks
Assessment of instruction
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