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GEOINFORMATICS


Original Paper

UDC 622.1:550.34 © I.Yu. Stepanov, L.N. Burmin, Yu.A. Stepanov, 2023

ISSN 0041-5790 (Print) • ISSN 2412-8333 (Online) • Ugol’ – Russian Coal Journal, 2023, № 7, pp. 75-80

DOI: http://dx.doi.org/10.18796/0041-5790-2023-7-75-80

Title

A COMPONENT-BASED ARCHITECTURE OF A GIS STUDY INTO GEOMETRY OF A ROCK MASS USING SEISMIC DATA

Authors

Stepanov I.Yu.1, Burmin L.N.1, Stepanov Yu.A.1

1Kemerovo State University Kemerovo, 650000, Russian Federation

Authors information

Stepanov I.Yu., Assistant Lecturer, Department of Digital Technologies, Institute of Digitalization, e-mail: zextel1995@gmail.com

Burmin L.N., PhD (Engineering), Associate Professor Department of Digital Technologies, Institute of Digitalization, e-mail: lnburmin@mail.ru

Stepanov Yu.A., Doctor of Engineering Sciences, Head of the Department of Digital Technologies, Institute of Digitalization,e-mail: dambo290@yandex.ru

Abstract

This article presents a conceptual modular architecture of a geoinformation system (GIS) for studying coal seams for the presence of discontinuities using seismic exploration methods. The proposed architecture consists of six functional modules, including the data collection module, spatial-attribute data storage module, data processing module, intelligent data processing module, visualization module, and metadata management module. Each module performs specific tasks, enabling efficient processing and analysis of seismic data to identify and characterize discontinuities in coal seams. The proposed GIS architecture serves as a powerful tool for scientists and geologists, providing more accurate and reliable research outcomes.

Keywords

Geoinformation system, Discontinuities, Coal seams, Seismic exploration, Modular architecture, Data collection, Data processing, Intelligent data processing, Visualization, Metadata management.

References

1. Nazarova G.E., Radchenko L.K. Development of a geoinformation model of coal industry in the Kemerovo region. Interekspo GEO-Sibir?, 2019, (2). Available at: https://cyberleninka.ru/article/n/razrabotka-geoinformatsionnoy-modeli-ugolnoy-promyshlennosti-kemerovskoy-oblasti (accessed 15.06.2023). (In Russ.).

2. Stepanov Yu.A. Development of theoretical basis of geoinformation systems to forecast the state of the coal mass during mining operations: specialist field - 25.00.35 "Geoinformatics": abstract of thesis for Dr. eng. sci. diss., Yekaterinburg, 2016, 22 p. (In Russ.).

3. Adushkin V.V., Oparin V.N. Physics and geomechanics of formation and development of focal zones of rock fracture in natural and mining systems: current state, prospective directions of fundamental research and applied developments. Gornyj informatsionno-analiticheskij byulleten, 2015, (S56), pp. 24-44. (In Russ.).

4. Akhmedov T.R., Mammedov R.D., Mammedova A.M. On distortion of real geological structure representations in stacked seismic data in case of unconformity in occurrence of seismic complexes. Vektor GeoNauk, 2022, Vol. 5, (2), pp. 5-13. (In Russ.). DOI 10.24412/2619-0761-2022-2-5-13.

5. Goncharova N.V., Dvornikova A.N. Using the ARCGIS information database to justify the quality of coal products. Fundamentalnye I prikladnye voprosy gornykh nauk, 2016, Vol. 3, (1), pp. 40-45. (In Russ.).

6. Trinh Quang Trung Computational experiment technology in investigations of the coal industry development. Nauka I obrazovanie, 2011, (10), pp. 26. (In Russ.).

7. Grishchenkov N.N., Skazhenik V.B., Chernyshenko I.V. Spatial modelling of land surface displacements and deformations in underground coal mining. Problemy gornogo davleniya, 2022, (1-2), pp. 95-106. (In Russ.).

8. Kupriyanov A.O. Digital modelling in underground geodetic surveys. Obrazovatelnye resursy I tekhnologii, 2015, (4). Available at: https://cyberleninka.ru/article/n/tsifrovoe-modelirovanie-pri-podzemnyh-geodezicheskih-rabotah (accessed 15.06.2023). (In Russ.).

9. Abu-Abed F.N. Development of Three-Dimensional Models of Mining Industry Objects. E3S Web of Conferences: The Second Interregional Conference, Kemerovo, 21–23 september 2021. Vol. 278. Kemerovo: T.F. Gorbachev Kuzbass State Technical University, 2021. P. 01002. DOI 10.1051/e3sconf/202127801002.

10. Yakovlev A.M., Titov R.S., Kantemirov V.D. Practical application of geoinformation technologies for modelling of quality indicators of complex ores. Innovative geotechnologies in development of ore and nonmetallic deposits: collection of reports, Yekaterinburg, 04-05 April 2019, Yekaterinburg, Urals State Mining University, 2019, pp. 229-234. (In Russ.).

Acknowledgements

The research performed under Agreement No. 075-15-2022-1195 dated 30.09.2022, signed between the Ministry of Science and Higher Education of the Russian Federation and the Federal State Budgetary Educational Institution of Higher Education Kemerovo State University.

For citation

Stepanov I.Yu., Burmin L.N., Stepanov Yu.A. A component-based architecture of a GIS study into geometry of a rock mass using seismic data. Ugol’, 2023, (7), pp. 75-80. (In Russ.). DOI: 10.18796/0041-5790-2023-7-75-80.

Paper info

Received June 8, 2023

Reviewed June 14, 2023

Accepted June 26, 2023

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