logo
calendar5 Avgust 2026
view24
Main language:Uzbek

A METHODOLOGICAL APPROACH TO STUDYING NEOTECTONIC STRUCTURE AND MOVEMENT OF REGIONS BASED ON A HIERARCHICAL TECTODYNAMIC MODEL

Field of Science:GeologyMetals and Alloys
pdf

10-article. A METHODOLO....pdf

PDF

ARTICLE ANNOTATION

quote
This study is devoted to the investigation of the formation and development patterns of neotectonic processes in the Central Eurasian region. A comprehensive analysis of deformation processes was carried out based on the integration of geodynamic, geodetic, and tectonophysical data. Using GPS observations, surface velocity fields were determined, and deformation rates along with their gradients were evaluated. The study applies a hierarchical tectodynamic model, allowing neotectonic processes to be analyzed as a unified system at global, regional, and local scales. The results indicate that deformation is not limited to plate boundaries but also extends into their interiors, with particularly high intensity observed in the Himalaya–Tibet and Zagros regions. Seismic data analysis revealed a strong correlation between earthquake distribution and deformation zones. The findings contribute significantly to the advancement of geodynamic modeling and provide a systematic framework for studying neotectonic processes.

AUTHORS

Science ID: FQD-0226-0038

Tags

# model# kuchlanish# deformatsiya# neotektonika# geodinamika# gps# maydoni# ierarxik

SIMILAR ARTICLES

OTHER ARTICLES IN THIS JOURNAL

Rate Article

0
0 ratings
5
4
3
2
1

References

[1] Bird, P. (2003). An updated digital model of plate boundaries. Geochemistry, Geophysics, Geosystems, 4(3), 1027–1050. https://doi.org/10.1029/2001GC000252

[2] Bürgmann, R., & Dresen, G. (2008). Rheology of the lower crust and upper mantle: Evidence from rock mechanics, geodesy, and field observations. Annual Review of Earth and Planetary Sciences, 36, 531–567. https://doi.org/10.1146/annurev.earth.36.031207.124326

[3] Fodor, L., Csontos, L., Bada, G., Györfi, I., & Benkovics, L. (1999). Tertiary tectonic evolution of the Pannonian Basin system and neighbouring orogens: A new synthesis of palaeostress data. Geological Society, London, Special Publications, 156(1), 295–334. https://doi.org/10.1144/GSL.SP.1999.156.01.15

[4] Heidbach, O., Rajabi, M., Cui, X., Fuchs, K., Müller, B., Reinecker, J., Reiter, K., Tingay, M., Wenzel, F., Xie, F., & Ziegler, M.-O. (2018). The World Stress Map database release 2016: Crustal stress pattern across scales. Tectonophysics, 744, 484–498. https://doi.org/10.1016/j.tecto.2018.07.007

[5] Jiménez-Munt, I., Fernàndez, M., Saura, E., Vergés, J., & García-Castellanos, D. (2012). 3D lithospheric structure and regional/residual Bouguer anomalies in the Arabia–Eurasia collision zone. Tectonophysics, 560–561, 1–17. https://doi.org/10.1016/j.tecto.2012.06.018

[6] Tunini, L., Jiménez-Munt, I., Fernández, M., Vergés, J., Villaseñor, A., & Meléndez, A. (2016). Geodynamic modeling of the Gibraltar Arc system: Implications for the orogenic evolution. Tectonophysics, 663, 36–53. https://doi.org/10.1016/j.tecto.2015.08.003

[7] Reilinger, R., McClusky, S., Vernant, P., Lawrence, S., Ergintav, S., Cakmak, R., Özener, H., Kadirov, F., Guliev, I., Stepanyan, R., Nadariya, M., Hahubia, G., Mahmoud, S., Sakr, K., ArRajehi, A., Paradissis, D., Al-Aydrus, A., Prilepin, M., Guseva, T., & Karam, G. (2006). GPS constraints on continental deformation in the Africa–Arabia–Eurasia continental collision zone and implications for the dynamics of plate interactions. Journal of Geophysical Research: Solid Earth, 111(B5), B05411. https://doi.org/10.1029/2005JB004051

[8] Bettinelli, P., Avouac, J.-P., Flouzat, M., Jouanne, F., Bollinger, L., Willis, P., & Chitrakar, G. R. (2006). Plate motion of India and interseismic strain in the Nepal Himalaya from GPS and DORIS measurements. Journal of Geodesy, 80(8–11), 567–589. https://doi.org/10.1007/s00190-006-0030-3

[9] Abdurahmonov, A. A., & Rasulov, B. B. (2010). O‘zbekiston hududining neotektonik rivojlanishi va seysmik faolligi. Fan.

[10] Turcotte, D. L., & Schubert, G. (2014). Geodynamics (3rd ed.). Cambridge University Press. https://doi.org/10.1017/CBO9780511843877