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GEOPHYSICS AND SEISMOLOGY LAB. Course Sheet Academic Year of enrolment:
Disciplinary Sector:
Geophysics of Solid Earth
Professor and Collaborators:
Hours of classroom activity:
Objectives
Contents 1) Analysis of active and passive, natural and anthropic, seismic signals;
2) Seismological data processing for the calculation of earthquake locations, focal mechanisms and magnitude;
3) Definition and characterization of the crustal structure: tomographic methods;
4) Statistical analysis on seismic catalogs;
5) Calculation of the deformation fields;
6) Calculation of stress fields.
Extended Syllabus 1 CFU Historical development of global seismology; seismic networks; seismic waveform: basic knowledge and processing, seismic waves vs primary source type (seismic signals: noise, earthquakes, blast, .)
1 CFU Source location (theoretical aspect, standard and new location algorithms, estimation of seismic location parameters), Energy Release (magnitude and seismic moment)
1 CFU Seismic source mechanism (Focal mechanism Solutions using polarity of P-wave fast motion, S-wave to P-wave amplitude ratios, using waveform inversion - i.e. NEIC fast moment tensors, Harvard CMT solutions, EMSC rapid source parameter determinations)
1 CFU Historical seismicity (Major historical events in the world, characterization of historical events, Macroseismic scales, macroseismic fields, “location” of historical events, completeness assessment of a catalogue), overview of empirical relations empirical relationships between magnitude/intensity, strong motion parameters and intensity: an open discussion
1 CFU Instrumental catalogues, catalog artifacts and quality control, seismicity characterization (background seismicity, swarms, seismic sequences), spatio-temporal analysis, seismicity rates, Estimation of Gutenberg-Richter seismicity parameters, Stochastic simulation of earthquake catalogs.
1 CFU Seismic deformation from earthquake and GPS, overview of Stress inversion methods from earthquake focal mechanism solutions, Coulomb stress calculation
Recommended Bibliography - Zollo A., Emolo, A., (2011), Terremoti e onde. Metodi e pratica della sismologia moderna, Liguori editore;
- Lay Thorne, Wallace Terry C., (1995), Modern Global Seismology, Accademic Press
- Udias Agustin, (2000), Principles of Seismology, Cambridge University Press
- Scherbaum, Frank (2001), Of Poles and Zeros Fundamentals of Digital Seismology, Springer
Lecture notes on digital seismic signal analysis
Teaching Methods -Theoretical lectures
-Theoretical exercises
- Practical exercises with geophysical instrumentation
It will be possible to follow interuniversity thematic seminars
Attendance is recommended
Evaluation methods Verification of learning:
Verification of learning can take place at different times:
1) with partial exams carried out during the course;
2) with general exam, ORAL, at the end of the course
Contacts/More Information Students,
1) will be able to use the "Seismology and Geophysics Laboratory for seismotectonics and the territory", at Ud’A;
2) can carry out traineeships at Italian geophysical institutes or in other universities belonging to CRUST (Interuniversity Center for 3D seismotectonics with territorial applications);
3) can carry out interdisciplinary thesis of seismology and seismotectonics also in the CRUST area
4) will be able to use two hours per week, in addition to the expected number of hours, to receive further clarifications on more complex topics.