金属矿山
金屬礦山
금속광산
METAL MINE
2015年
4期
157-161
,共5页
辛保泉%谭钦文%谢羽佳%王永强%万露
辛保泉%譚欽文%謝羽佳%王永彊%萬露
신보천%담흠문%사우가%왕영강%만로
露天矿山%边坡稳定性%岩性劣化%数值模拟%黏聚力%安全系数
露天礦山%邊坡穩定性%巖性劣化%數值模擬%黏聚力%安全繫數
로천광산%변파은정성%암성열화%수치모의%점취력%안전계수
Open-pit mine%Slope stability%Lithology deterioration%Numerical simulation%Cohesion%Safety factor
针对岩性条件劣化导致边坡稳定性下降的问题,以某露天矿山边坡为研究对象,运用SIR-20型地质雷达探测矿山滑坡体内部缺陷,并结合Slide软件模拟分析了不同岩性条件下边坡稳定性的变化规律。结果表明:软弱夹层、降雨入渗和爆破动荷载等内外因共同作用造成边坡岩性劣化,进而导致边坡后期出现滑移失稳;黏聚力c值降低是岩性劣化过程中的主要力学表现,安全系数与c值呈部分抛物线关系,且c值降为50 kPa是边坡特殊工况的失稳临界值。在综合分析矿山运行特征和岩性劣化条件基础上,提出通过减小上部第四系台阶坡面角和最终边坡角提高其永久稳定性的建议,安全系数经验证符合要求。研究结果可为矿山后期安全开采和边坡控制参数取值提供重要依据。
針對巖性條件劣化導緻邊坡穩定性下降的問題,以某露天礦山邊坡為研究對象,運用SIR-20型地質雷達探測礦山滑坡體內部缺陷,併結閤Slide軟件模擬分析瞭不同巖性條件下邊坡穩定性的變化規律。結果錶明:軟弱夾層、降雨入滲和爆破動荷載等內外因共同作用造成邊坡巖性劣化,進而導緻邊坡後期齣現滑移失穩;黏聚力c值降低是巖性劣化過程中的主要力學錶現,安全繫數與c值呈部分拋物線關繫,且c值降為50 kPa是邊坡特殊工況的失穩臨界值。在綜閤分析礦山運行特徵和巖性劣化條件基礎上,提齣通過減小上部第四繫檯階坡麵角和最終邊坡角提高其永久穩定性的建議,安全繫數經驗證符閤要求。研究結果可為礦山後期安全開採和邊坡控製參數取值提供重要依據。
침대암성조건열화도치변파은정성하강적문제,이모로천광산변파위연구대상,운용SIR-20형지질뢰체탐측광산활파체내부결함,병결합Slide연건모의분석료불동암성조건하변파은정성적변화규률。결과표명:연약협층、강우입삼화폭파동하재등내외인공동작용조성변파암성열화,진이도치변파후기출현활이실은;점취력c치강저시암성열화과정중적주요역학표현,안전계수여c치정부분포물선관계,차c치강위50 kPa시변파특수공황적실은림계치。재종합분석광산운행특정화암성열화조건기출상,제출통과감소상부제사계태계파면각화최종변파각제고기영구은정성적건의,안전계수경험증부합요구。연구결과가위광산후기안전개채화변파공제삼수취치제공중요의거。
In view of the fact that lithology deterioration condition leads to the decline of slope stability,and with a slope of open-pit mine as the research object, the internal defects of landslide were detected by SIR-20 geological radar, and the change law of slope stability under the condition of different lithology was analyzed with Slide software. Results showed that:slope lithology deterioration is caused by the interaction of weak interlayer, the rainfall infiltration and the blasting dynamic load,which lead to the slope sliding and instability in the late; c value reduction is the main mechanical performance in the process of lithology deterioration; Safety factor and c value showed as a partial parabola relationship,and the reduced c value 50 kPa is the critical value of slope instability under special working conditions. According to a comprehensive analysis of mine operating characteristics and the lithology deterioration condition,a proposal to improve its permanent stability by decreasing the upper quaternary bench slope angle and final slope angle is put forward. It is proven that the safety factor could meet the re-quirements. The results provide an important basis for safety mining and determining slope control parameters in the late.