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金属矿山 ›› 2010, Vol. 39 ›› Issue (4): 24-27+49.

• 采矿工程 • 上一篇    下一篇

金山店铁矿崩落法过渡分段放矿指标优化研究

陈清运 1,杨从兵 2,左宇军 3,王水平 4 ,张电吉 1   

  1. 1.武汉工程大学;2.武钢矿业公司程潮铁矿;3.大连大学;4.武钢矿业公司金山店铁矿
  • 出版日期:2010-04-15 发布日期:2010-11-09

Research on Ore Drawing Indexes Optimization in Transition Sublevel of  Sublevel Caving for Jinshandian Iron Ore

 CHEN  Qing-Yun1, YANG  Cong-Bing2, ZUO  Yu-Jun3, WANG  Shui-Ping4, ZHANG  Dian-Ji1   

  1. 1.Wuhan Institute of Technology;2.Chengchao Iron Mine,WISCO;3.Dalian University;4.Jinshandian Iron Mine,WISCO
  • Online:2010-04-15 Published:2010-11-09

摘要: 采用无底柱分段崩落法回采的矿山,在向大结构参数的转变过程中,正常布置的大结构参数不适用于过渡分段的放矿。根据金山店铁矿开采技术条件,采用图解法、物理模拟和现场放矿试验等研究方法,得到初始过渡分段合理的采场结构参数是14 m×16 m×3.4 m;在过渡分段的放矿中,通过采取截止品位的放矿制度、增加放矿步距、加强地测工作、提高爆破质量等技术措施,过渡分段回收率可以达到77.97%,过渡分段完成生产指标是可行的。

关键词: 无底柱分段崩落法, 过渡分段, 放矿变异系数, 回收率, 贫化率

Abstract: For those mines adopting the sublevel caving method,the large structure parameters of the natural lay are not suitable for the ore drawing in transition sublevel process. According to the technical conditions of mining in Jinshandian iron mine,some methods including graphic representation,physical simulation and the experiment of spot ore drawing are carried out,and the reasonable stope structural parameters in primary transition sublevel which we have got are 14m×16m×3.4m. In ore-drawing sublevel,serial methods including the ore drawing system of cut-off grade,increasing the drawing pace,strengthening those geological and metrical works,improving the quality of blasting,etc. are adopted. Hence,the recovery rate can reach 77.97%,and it is feasible to complete the product indexes in transition sublevel.

Key words: Sublevel caving, Transition sublevel, Coefficient of ore drawing variation, Recovery rate, Dilution ratio