采矿与安全工程学报
採礦與安全工程學報
채광여안전공정학보
JOURNAL OF MINING AND SAFETY ENGINEERING
2013年
4期
512-517
,共6页
徐帅%安龙%冯夏庭%董金奎%李元辉
徐帥%安龍%馮夏庭%董金奎%李元輝
서수%안룡%풍하정%동금규%리원휘
无底柱分段崩落法%颗粒流方法%摩擦因数%急斜薄矿体
無底柱分段崩落法%顆粒流方法%摩抆因數%急斜薄礦體
무저주분단붕락법%과립류방법%마찰인수%급사박광체
sublevel caving method%particle flow method(PFM)%friction coefficient%steeply dipping thin orebody
基于内蒙古某金矿实际地质条件及矿岩物理性质,采用颗粒离散元法,对急斜薄矿脉崩落矿岩散体的流动规律进行数值模拟研究。研究结果表明,其颗粒的运动模型可分为倾斜边壁控制区、过渡区及自由下落区;其力的传递模型可分为均匀接触力区、卸压区及不稳定力拱区。在此基础上分析了矿岩摩擦角的变化对放矿过程的影响,尤其是对放矿过程中贫化三角矿体的大小及颗粒间接触力的影响。分析结果表明:1)上下盘围岩的摩擦角δ与矿石散体的摩擦角φ之比越大,贫化三角矿体积越大;2)颗粒间摩擦角越大,则颗粒间接触力越大,放矿过程中不稳定力拱的产生与崩塌越频繁,越容易产生稳定拱。最终,根据所得研究结果,提出了优化采场结构参数,降低矿石损失贫化的方法。
基于內矇古某金礦實際地質條件及礦巖物理性質,採用顆粒離散元法,對急斜薄礦脈崩落礦巖散體的流動規律進行數值模擬研究。研究結果錶明,其顆粒的運動模型可分為傾斜邊壁控製區、過渡區及自由下落區;其力的傳遞模型可分為均勻接觸力區、卸壓區及不穩定力拱區。在此基礎上分析瞭礦巖摩抆角的變化對放礦過程的影響,尤其是對放礦過程中貧化三角礦體的大小及顆粒間接觸力的影響。分析結果錶明:1)上下盤圍巖的摩抆角δ與礦石散體的摩抆角φ之比越大,貧化三角礦體積越大;2)顆粒間摩抆角越大,則顆粒間接觸力越大,放礦過程中不穩定力拱的產生與崩塌越頻繁,越容易產生穩定拱。最終,根據所得研究結果,提齣瞭優化採場結構參數,降低礦石損失貧化的方法。
기우내몽고모금광실제지질조건급광암물이성질,채용과립리산원법,대급사박광맥붕락광암산체적류동규률진행수치모의연구。연구결과표명,기과립적운동모형가분위경사변벽공제구、과도구급자유하락구;기력적전체모형가분위균균접촉력구、사압구급불은정력공구。재차기출상분석료광암마찰각적변화대방광과정적영향,우기시대방광과정중빈화삼각광체적대소급과립간접촉력적영향。분석결과표명:1)상하반위암적마찰각δ여광석산체적마찰각φ지비월대,빈화삼각광체적월대;2)과립간마찰각월대,칙과립간접촉력월대,방광과정중불은정력공적산생여붕탑월빈번,월용역산생은정공。최종,근거소득연구결과,제출료우화채장결구삼수,강저광석손실빈화적방법。
Based on the geological conditions and ore-rock physical properties of a gold mine in Inner Mongolia, the numerical simulation research of granule flowing laws of the steeply inclined and narrow veins is analyzed by using discrete element method of the particle flow. The results of the analysis show that the flow patterns of particle can be divided into side wall control zone, transition zone and free fall zone. The patterns of stress transmission can be divided into homogeneous stress zone, decompression and unstable arches. Based on what is mentioned above, the author analyzes the effect of the changes of ore friction angle on ore drawing process, especially the effect on the size of dilution triangle ore body and contact force between particles in ore drawing process. The results of the analysis are as follows: 1) The greater the ratio of the friction angle δ and the friction angle φ of ore is, the bigger the dilution triangle ore body will be; 2) The greater the friction angle of particles is, the more frequent the production and collapse of the unstable arches will be and the easier to produce stable arch. Based on the research results, a method of optimizing the mining structural parameters and reducing the ore loss and dilution is put forward.