Longwall top coal caving design for thick coal seam in very poor strength surrounding strata

Author:

Jangara H.,Ozturk C. AtillaORCID

Abstract

AbstractAlpu lignite field is an important coal deposit with nearly 2 billion tons of coal resources located in the middle of Turkey. The mine deposit consists of three main seams. The thickness of two of them vary from 4 to 30 m. The surrounding rock mass is very poor in terms of strength. The high clay content and weak rock mass make mechanized mining difficult. In this research, applicability of the longwall top coal caving method was investigated. The very weak strength behavior of the coal and the surrounding strata increases the importance of research in the mine site in terms of ground control. The aim is to design the mechanized longwall mine based on ground control principles. First of all, classification of the roof, coal, inter-burden, and floor strata were classified based on geotechnical aspects. Then, cavability index, shield, and floor bearing capacity were investigated. Different methods were applied to understand the limitations of a mechanized system that is very critical due to the very low strength strata. According to the main results, roof strata was classified as immediately caving while mining height was calculated as 5–6 m. Finally, the relations among geotechnical characterizations of roof and floor strata, cutting and caving heights, and required shield capacity were presented based on analytical and numerical applications. The proposed approach can be used as a ground control method for the applicability as well as the limitations of mechanized longwall mining design in weak strata conditions.

Publisher

Springer Science and Business Media LLC

Subject

Energy Engineering and Power Technology,Geotechnical Engineering and Engineering Geology

Reference35 articles.

1. Aghababaei S, Jalalifar H, Saeedi G (2019) Prediction of face advance rate and determination of the operation efficiency in retreat longwall mining panel using rock engineering system. Int J Coal Sci Technol 6(3):419–429

2. Alehossein H, Poulsen BA (2010) Stress analysis of longwall top coal caving. Int J Rock Mech Min Sci 47(1):30–41

3. ASTM D4644–16 (2016) Standard Test Method for Slake Durability of Shales and Other Similar Weak Rocks. ASTM International, West Conshohocken

4. Asutay HJ, Küçükayman A, Gözler Z (1989) The stratigraphy, tectonic setting of Dagkuplu (northern Eskişehir) mélange and petrography of cumulates. Maden Tetkik ve Arama Genel Müdürlügü Bulletin 109:1–6

5. Banerjee G, Ghosh N, Kumbhakar D, Yadava KP (2015) A method for simulation of longwall goaf. In: 49th US Rock mechanics/geomechanics symposium, San Francisco.

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