인도네시아 Pasir 탄전에서의 노천채탄장 사면의 안정성 해석

A series of studies such as geological logging data analysis, detailed geological survey, rock mass evaluation, in-situ and laboratory tests, rock strength and mechanical properties of the rock were concerned. The stability of the slope were carried out inorder to design the pit slope and individual...

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Veröffentlicht in:터널과 지하공간: 한국암반공학회지 2000, Vol.10 (3), p.430-440
Hauptverfasser: 장소걸(So-Keul Chung), 선우춘(Choon Sunwoo), 한공창(Kong-Chang Han), 신희순(Hee-Soon Shin), 박연준(Yeon-Jun Park)
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Sprache:kor
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Zusammenfassung:A series of studies such as geological logging data analysis, detailed geological survey, rock mass evaluation, in-situ and laboratory tests, rock strength and mechanical properties of the rock were concerned. The stability of the slope were carried out inorder to design the pit slope and individual benches using the stereographic projection analysis and numerical methods in Roto Pit of Pasir coal field. The bedding plane was one of the major discontinuities in the Roto Pit and the dip of which is about 60$^{\circ}$ in the northern part and 83$^{\circ}$ in the southern part. The dip of bedding becomes steeper from north to south. The plane and toppling failures are presented in many slopes. In laboratory test the average uniaxial compressive strength of mudstone was 9MPa and that of weak sandstone was 10MPa. In-situ test showed that the rocks of Roto north mining area are mostly weak enough to be classified in grade from R2(weak) to R3(medium strong weak) and the coal is classified in grades from R1(Very weak) to R2(Weak). The detailed stability analysis were carried out on 4 areas of Roto north (east, west, south and north), and 2 areas of Roto south(east and west). In this paper, the minimum factor of safety was set to 1.2 which is a general criterion for open pit mines. Using the stereographic projection analysis and the limit equilibrium method, slope angles were calculated as 30∼36$^{\circ}$ for a factor of safety greater than 1.2. Then these results were re-evaluated by numerical analysis using FLAC. The final slope angles were determined by rational described above. A final slope of 34 degrees can guarantee the stability for the eastern part of the Roto north area, 33 degrees for the western part, 35 degrees for the northern part and 35 degrees for the southern part. For the Roto south area, 36 degrees was suggested for both sides of the pit. Once the pit slope is designed based on the stability analysis and the safety measures, the stability of slope should be checked periodically during the mining operations. Because the slope face will be exposed long time to the rain fall, a study such aspreventive measures against weathering and erosion is highly recommended to be implemented. 본 논문에서는 인도네시아 Kalimantan섬에 위치하는 Pasir 탄전의 노천채탄장을 대상으로 기존 지질자료의 분석 및 지질조사, 암반평가, 현지 및 실험실 시험을 통하여 관련 암석들에 대한 물성시험의 수행과 평사투영법과 수치해석에 의한 안정성해석 둥을 근거로 채광장내의 전체사면 특히 Roto 북부 및 남부구역의 사면을 적절하게 설계할 수 있는 방안을 제시하고자 하였다. Roto 지역의 주요 불연속면들은 주로 층리로 구성되어 있으며, 층리의 경사는 북쪽의 약 60$^{\circ}$
ISSN:1225-1275
2287-1748