首页> 外文期刊>Environmental earth sciences >Bauxite orebody demarcating and virtual mining for mining optimization within an underground bauxite seam, Southwest China
【24h】

Bauxite orebody demarcating and virtual mining for mining optimization within an underground bauxite seam, Southwest China

机译:西南铝土矿层中的铝土矿体标定和虚拟采矿,以优化采矿

获取原文
获取原文并翻译 | 示例
           

摘要

Bauxite grade is an important property determining the ore reserve, mining value and mining technology parameters within an underground bauxite seam, which is a prominent difference between bauxite and coal mines. An orebody demarcating approach was proposed to determine the top and bottom boundaries of bauxite orebody, which consists of the following steps: one-dimensional inverse distance weighted interpolation for grade distribution along each sampling trench or borehole, delimiting for orebody boundary according to the industrial constraints of bauxite grade, and two-dimensional biharmonic spline interpolation for boundary surfaces. Then, the 88,983 m(3) bauxite orebody having an average thickness of 1.4565 m was demarcated in the 1102 longwall panel. The application of the fully mechanized longwall mining in the bauxite seam in Wachangping bauxite mine has been inferred to be feasible from the following comprehensive considerations: occurrence properties of orebody, geomechanical parameters of ore-rock, geological and hydrogeological conditions and overburden stability. In addition, the optimal cutting height on each longwall slice ranging from 0.9773 to 2.4276 m was determined by the proposed virtual mining procedure. The designed 1.2138-m-diameter cutting drum can satisfy the industrial requirements for the low-waste and high-recovery mining of underground bauxite, in which the average ore loss rate and roof waste mixing rate are merely 0.2367 and 5.1355%, respectively.
机译:铝土矿品位是决定地下铝土矿层内矿石储量,采矿价值和采矿技术参数的重要属性,铝土矿与煤矿之间的显着区别。提出了一种矿体标定方法,用于确定铝土矿矿体的上下边界,包括以下步骤:一维反距离加权插值法,用于沿每个采样沟槽或钻孔进行品位分布,根据工业约束确定矿体边界铝土矿等级和边界表面的二维双谐波样条插值。然后,将平均厚度为1.4565 m的88,983 m(3)铝土矿矿体在1102长壁面板中划定。从以下综合考虑,推断在瓦场坪铝土矿的铝土矿层中进行综采长壁开采是可行的:矿体的赋存特性,矿岩的岩石力学参数,地质和水文地质条件以及上覆岩层的稳定性。此外,通过拟议的虚拟开采程序确定了每个长壁切片的最佳切割高度,范围为0.9773至2.4276 m。设计的直径为1.2138米的转鼓可以满足地下铝土矿低浪费和高回收率采矿的工业要求,其平均矿石损失率和屋顶废物混合率分别仅为0.2367和5.1355%。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号