Accesso libero

Space Geodesy Data Implementation for Earth System Geodynamics Monitoring: A Case Study of the Aegean Microplate

, , ,  e   
17 dic 2024
INFORMAZIONI SU QUESTO ARTICOLO

Cita
Scarica la copertina

GRAFAREND, E., et al.: Geodesy – The Challenge of 3rd Millennium. Springer, Verlag, 2002 474 p. ISBN 9783540431602.Search in Google Scholar

FLECHTNER, F. M., et al.: Advanced Technologies in Earth Sciences - System Earth via Geodetic-Geophysical Space Techniques, Springer, Berlin, Heidelberg, 2010, ISSN 2190-1643. https://doi.org/10.1007/978-3-642-10228-8.Search in Google Scholar

KOZIAR, J.: Expanding Earth and Space Geodesy, Conference: The Earth Expansion Evidence: A Challenge for Geology, Geophysics and Astronomy, 2018, ISBN: 978-83-950414-0-2.Search in Google Scholar

FIGURSKI, M., et al.: Satellite Geodesy. In book: Space Research in Poland. Report to COSPAR, 1st ed, 2020.Search in Google Scholar

KRISTIAWAN et.al: Damage State of Non-Engineered Residential Buildings Owing to Earthquakes: A Case Study in Pacitan Regency, Indonesia. Civil and Environmental Engineering. 2024, 20, 426 – 439. 10.2478/cee-2024-0033Search in Google Scholar

BLEWITT G.: GPS and Space-Based Geodetic Methods. In: Gerald Schubert (editor-inchief) Treatise on Geophysics, 2015, 2nd edition, Vol 3. Oxford: Elsevier; 2015. p. 307-338.Search in Google Scholar

PLAG, H. P.: The Global Geodetic Observing System (GGOS): Detecting the Fingerprints of Global Change in Geodetic Quantities. Advances in Earth Observation of Global Change, 2010. 10.1007/978-90-481-9085-0_10.Search in Google Scholar

BEUTLER, G., et al.: Earth Gravity Field from Space — From Sensors to Earth Sciences, 2003. 10.1007/978-94-017-1333-7Search in Google Scholar

SEEBER, G.: Satellite Geodesy, De Gruyter, Berlin, 2003. https://doi.org/10.1515/9783110200089Search in Google Scholar

TURCOTTE, D. – SCHUBERT, G.: Geodynamics. Cambridge University Press, Cambridge, 2002.Search in Google Scholar

MONTAG, H. – REIGBER, C.: Geodesy and Physics of the Earth, Springer, Berlin. Springer, 1992.Search in Google Scholar

DOSKICH, S.: Deformations of the land crust of the Carpathian region according to the data of GNSS observation. Geodesy, Cartography, and Aerial Photography, 2021, 93(1), 35–41. https://doi.org/10.23939/istcgcap2021.93.035.Search in Google Scholar

BURLIBAYEVA, S., et al.: Role and importance of geodetic surveys in geodynamics. Environmental Management. 2021, 58. 4-10. 10.26577/JGEM.2020.v58.i3.01.Search in Google Scholar

PATRIZIO, C. R. – THOMPSON, D. W. J.: Understanding the Role of Ocean Dynamics in Midlatitude Sea Surface Temperature Variability Using a Simple Stochastic Climate Model. J. Climate, 2022, 35, 3313–3333, https://doi.org/10.1175/JCLI-D-21-0184.1Search in Google Scholar

MURTY, A.S.N.: Ocean Dynamics: Theory and exercises (with solutions), NIPA, 2023, ISBN 9789395319720.Search in Google Scholar

HAYDEN, A. M. – DOW, CH.: Examining the effect of ice dynamic changes on subglacial hydrology through modelling of a synthetic Antarctic glacier. Journal of Glaciology. 2023, 1-14. 10.1017/jog.2023.65Search in Google Scholar

POLO, M. J., et al.: Snow Dynamics, Hydrology, and Erosion. 2022, 10.1007/978-3-030-94219-9_10Search in Google Scholar

LLUBES, M., et al.: Local hydrology, the Global Geodynamics Project and CHAMP/GRACE perspective: some case studies, Journal of Geodynamics. 2004, 38. pp. 355 – 374. doi:10.1016/j.jog.2004.07.015Open DOISearch in Google Scholar

ELRAHMAN, S. – ATAALMANAN, I.: Determination of the Hydrological and Morphometric Characteristics Using GIS. Civil and Environmental Engineering. 2023, 19. 10.2478/cee-2023-0004Search in Google Scholar

GONG, Z. et al.: The effect of altimetry data in estimating the elastic thickness of the lithosphere in the western Pacific Ocean. Geodesy and geodynamics. 2021, 12. 315-322. https://doi.org/10.1016/j.geog.2021.07.001.Search in Google Scholar

MURSAN, M. et al.: Vertical Land Motion Detection Using Satellite Altimetry Data at the Hadera Tide Gauge Station. EGU General Assembly. 2024. 10.13140/RG.2.2.14395.02084.Search in Google Scholar

KLOS, A. et al.: Introducing the Idea of Classifying Sets of Permanent GNSS Stations as Benchmarks for Hydrogeodesy. Journal of Geophysical Research: Solid Earth. 2023, 128. 10.1029/2023JB026988Search in Google Scholar

WHITE, A. et al.: A Review of GNSS/GPS in Hydrogeodesy: Hydrologic Loading Applications and Their Implications for Water Resource Research. Water Resources Research. 2022, 58. 10.1029/2022WR032078Search in Google Scholar

BLETERY, Q. et. al: A detailed source model for the Mw9.0 Tohoku-Oki earthquake reconciling Geodesy, Seismology and tsunami records. Journal of Geophysical Research: Solid Earth. 2014, 119.Search in Google Scholar

GORDON, R. – STEIN, S.: Global tectonics and space geodesy. Science. 1992. 10.1126/science.256.5055.333Search in Google Scholar

BURGMANN, R. – THATCHER, W.: Space geodesy: A revolution in crustal deformation measurements of tectonic processes. Geological Society of America Special Papers. 2013. 500, 397-430. 10.1130/2013.2500(12)Search in Google Scholar

DOGLIONI, C. – RIGUZZI, F.: The space geodesy revolution for plate tectonics and earthquake studies. Rend. Fis. Acc. Lincei. 2018, 29, 29-34. https://doi.org/10.1007/s12210-017-0639-6Search in Google Scholar

BOCK, Y. - WDOWINSKI S.: GNSS Geodesy in Geophysics, Natural Hazards, Climate, and the Environment. Position, Navigation, and Timing Technologies in the 21st Century. s.l. : Wiley, 2020.Search in Google Scholar

ANGERMANN D., et al.: Mission Earth - Geodynamics and Climate Change Observed Through Satellite Geodesy. Berlin: Springer, 2022.Search in Google Scholar

International Terrestrial Reference Frame – ITRF. Available online [02/2024] https://itrf.ign.fr/en/solutions/ITRF2020Search in Google Scholar

WIDNALL, S.: Vectors, Matrices and Coordinate Transformations. Dynamics. 2009.Search in Google Scholar

BULLOCK R.: How map projections transform velocity vectors. Lecture notes.Search in Google Scholar

Orientation angles. Available online [20/06/2024] Orientation Angles (kwon3d.com)Search in Google Scholar

ZHIPING, L., et al.: Geodesy - Introduction to Geodetic Datum and Geodetic Systems. Springer Berlin, Heidelberg, 2014. ISBN 978-3-642-41244-8. https://doi.org/10.1007/978-3-642-41245-5Search in Google Scholar

HOOIJIBERG, M.: Practical Geodesy. Springer Berlin, 2012.Search in Google Scholar

BOBACH, T.: Natural neighbor interpolation – Critical assessment and new contributions. Lecture notes.Search in Google Scholar

LUCAS, G.: A fast and accurate algorithm for natural neighbor interpolation. The Tinfour open-source software library. 2021.Search in Google Scholar

Mathworks – Matlab Simulink for Geoscience Tollbox.Search in Google Scholar

BRDIČKA, M., et al.: Mechanika kontinua. Praha : academia, 2005. Isbn 80-200-1344-x.Search in Google Scholar

NOVOTNÝ, O.: Mechanika kontinua. Praha: Matematicko-fyzikální fakulta University Karlovy v Praze, 1976.Search in Google Scholar

KOSTELECKY, J.: Technická zpráva 1199/2013: Určování tenzorů deformací globálních a regionálních geodetických sítí. VUGTK. 2013.Search in Google Scholar

DERCOURT, J., et al.: Atlas Tethys Palaeoenvironmental Maps. s.l. : Gauthier-Villars, 1993.Search in Google Scholar

MCCLUSKY, S.: Global Positioning System constraints on plate kinematics and dynamics in the eastern Mediterranean and Caucasus. Journal of Geophysics, 105, 2000.Search in Google Scholar

REILINGER, R.: GPS constraints on continental deformation in the Africa-Arabia-Eurasia continental collision zone and implications for the dynamics of plate interactions. Journal of Geophysics, 2006.Search in Google Scholar

KASSARAS, I., et al: Deep structure of the Hellenic lithosphere from teleseismic. Geophysical Journal International, 2020.Search in Google Scholar

Treatise on Geomorphology. 2nd edition. Ed.: John F. Shroder. 2022. Academic Press. Elsevier. ISBN 978-0-12-818235-2.Search in Google Scholar