Research Article

DETERMINATION BY NUMERICAL MODELING OF STRESS-STRAIN VARIATIONS RESULTING FROM GALLERY CROSS-SECTION CHANGES IN A LONGWALL TOP COAL CAVING PANEL

Volume: 12 Number: 1 March 1, 2024
EN

DETERMINATION BY NUMERICAL MODELING OF STRESS-STRAIN VARIATIONS RESULTING FROM GALLERY CROSS-SECTION CHANGES IN A LONGWALL TOP COAL CAVING PANEL

Abstract

As a major pillar of global energy production, coal mining requires continuous advancements in efficiency to contribute to the broader goal of energy sustainability, all the while the shift towards more sustainable energy sources is underway. Mechanized excavation systems employed in underground coal mines, particularly within the longwall mining method, enable high-tonnage coal production. The Longwall Top Coal Caving (LTCC) method, one of the longwall mining techniques, has been developed for the effective extraction of coal from thick coal seams. However, as mining operations delve deeper, various complex issues, such as gallery cross-sectional variation, emerge. Gallery cross-sectional variation can increase the risk of collapse by affecting the stress distribution in the rock mass, posing a threat to worker safety. This study centers on the numerical modeling and analysis of gallery cross-sectional variation in the Ömerler underground mine, operated by the Turkish Coal Enterprises (TKI), West Lignite Enterprise (GLI). To achieve this objective, an extensive database was established through field and laboratory rock mechanics studies. This database was then utilized in the Fast Lagrangian Analysis of Continua 3D (FLAC3D) (v6.0) program to simulate the cross-sectional variations of the A6 panel in the Ömerler underground mine. The numerical simulation results provide valuable insights into the secondary stress-deformation changes associated with gallery cross-sectional variation.

Keywords

Supporting Institution

TUBITAK (The Scientific and Technological Research Council of Turkey)

Project Number

116M698

Ethical Statement

The authors declare that the study complies with all applicable laws and regulations and meets ethical standards.

Thanks

This work was supported by the TUBITAK (The Scientific and Technological Research Council of Turkey) with a 1001 project (Project No: 116M698).The authors thanks to Turkish Coal Enterprises (TKI) and West Lignite Enterprise (GLI) staff for their help in field studies .

References

  1. G. Li, Z. Hu, P. Li, D. Yuan, Z. Feng, W. Wang and Y. Fu, “Innovation for sustainable mining: Integrated planning of underground coal mining and mine reclamation,” Journal of Cleaner Production, 351, 131522, 2022.
  2. Z. Hu, G. Li, J. Xia, Z. Feng, J. Han, Z. Chen, W. Wang and G. Li, “Coupling of underground coal mining and mine reclamation for farmland protection and sustainable mining,” Resources Policy, 84, 103756, 2023.
  3. International Energy Agency (IEA), World Energy Outlook. (2022). Accessed: July, 19, 2023. [Online]. Available: https://www.iea.org/reports/world-energy-outlook-2022.
  4. A. Çelik and Y. Özçelik, “Investigation of the effect of caving height on the efficiency of the longwall top coal caving production method applied in inclined and thick coal seams by physical modeling,” International Journal of Rock Mechanics and Mining Sciences, 162, 105304, 2023.
  5. M. Shabanimashcool, and C. C. Li, “Numerical modelling of longwall mining and stability analysis of the gates in a coal mine,”International Journal of Rock Mechanics and Mining Sciences, 51, 24-34, 2012.
  6. M. Mesutoğlu, and İ. Özkan, “Büyük Ölçekli Kömür Arınında Gerçekleştirilen Schmidt Sertlik İndeksi ve Nokta Yükleme Dayanımı Deney Sonuçlarının Değerlendirilmesi,” Konya Mühendislik Bilimleri Dergisi, v.7, n.4, pp. 681-695, 2019.
  7. L. Zhou, X. Li, Y. Peng, B. Xia, and B. Fang, “Material point method with a strain-softening model to simulate roof strata movement induced by progressive longwall mining,” International Journal of Rock Mechanics and Mining Sciences, 170, 105508, 2023.
  8. N.E. Yaşıtlı, and B. Unver, “3D numerical modeling of longwall mining with top-coal caving,” International Journal of Rock Mechanics and Mining Sciences, v.42, i.2, pp. 219-235, 2005.

Details

Primary Language

English

Subjects

Rock Mechanics and Fortification , Coal

Journal Section

Research Article

Publication Date

March 1, 2024

Submission Date

December 27, 2023

Acceptance Date

February 7, 2024

Published in Issue

Year 2024 Volume: 12 Number: 1

IEEE
[1]M. Mesutoğlu, İ. Özkan, and A. Rodrıguez Dono, “DETERMINATION BY NUMERICAL MODELING OF STRESS-STRAIN VARIATIONS RESULTING FROM GALLERY CROSS-SECTION CHANGES IN A LONGWALL TOP COAL CAVING PANEL”, KONJES, vol. 12, no. 1, pp. 231–250, Mar. 2024, doi: 10.36306/konjes.1410892.

Cited By