The Study of Parameters of Quarry Faces in Muruntau and Myutenbai Open Pits in Case of Applying Major Blasts

B. R. Raimzhanov, A. R. Khasanov, R. Vakhitov
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引用次数: 1

Abstract

The paper presents process layouts for excavation of zones near pit envelope based on the analysis of findings of the ore loss study in case of open-pit mining, as well as the results of field measurements in the quarry faces in Muruntau and Myutenbai open pits. In the course of the field measurements, parameters of the quarry faces at Muruntau and Myutenbai open pits were determined under the following working conditions of an excavator: at full bench with shotpile height of 19–21 m; at full bench with shotpile height of 12–14 m at excavation of the “blast cap”; at heading face and taking ramp material. In all the above-listed quarry faces, the slope angles and the ore mass shotpile height when excavating were measured. Besides, the used excavator type (dragline or hydraulic) was taken into account. For each face, 2–3 measurements were performed, and the average slope angle at the ore mass excavation was determined for each type of excavator. At the next stage of the field measurements, the bench height in the rock mass and the shotpile parameters were measured before and after blasting operations under the following arrangements for preparing the rock mass for excavation: a) under normal conditions, when the ore mass blasting is performed for the selected face or relieving wall of the required thickness; b) in compression with a “blast cap” formation; c) in the marginal parts of the bench. Based on the results of the actual bench height and the blasted rock shotpile parameter field measurements, the following conclusions were drawn: a) the actual slope angles of the quarry faces were 49° when excavating the “blast cap” using dragline excavators, and 53° when excavating the ore mass at full bench regardless of the excavator type used; the slope angles of 49° for the dragline excavator and 53° for the hydraulic excavators were taken for further calculations; b) the width of the marginal (near-envelope) zone, where losses and dilution of balance ore are generated, increased from 7 to 13.0 m (at 49°) and from 7 to 11.3 m (at 53°); as a result, the areas of loss and dilution triangles have increased; c) when blasting in compression conditions, in the upper part of the shotpile, intense mixing of the involved rock and all ore grades occurs, therefore, when excavating the “blast cap”, bulk ore mass mining is only possible. The lower part of the blasted bench preserves the geological structure of the rock mass to a greater degree and can be selectively excavated with separation of the ore mass by grade; d) when blasting the rock mass, to maintain the required pulse direction and the blasting sequence, barren boreholes are included in the breaking outline, which increase the balance ore dilution, and structural dilution arises, which should be taken into account when drawing up the "Methods for determining, limitation and accounting for ore losses and dilution in the course of the Muruntau and Myutenbai (the fifth stage) open-pit mining"; e) when compiling the "Methods ...", the option of dividing a bench of 15 m high into two sub-benches of 7.5 m should be considered.
穆龙头、妙腾白露天矿大爆破条件下采场工作面参数研究
本文在分析露天开采失矿研究结果的基础上,结合Muruntau和Myutenbai露天采石场采石场的现场测量结果,提出了基坑围护线附近区域开挖的工艺布置。在现场测量过程中,确定了Muruntau和Myutenbai露天采石场采石场面的参数,挖掘机工作条件为:全台阶,喷桩高度19-21 m;“风帽”开挖时全台阶喷桩高度为12 ~ 14 m;在掘进面取坡道材料。在上述采石场的所有工作面,均测量了开挖时的边坡角度和矿体喷桩高度。此外,还考虑了使用的挖掘机类型(拖拽式或液压式)。对于每个工作面,进行2-3次测量,确定每种型号挖掘机在矿体开挖时的平均坡度角。在下一阶段的现场测量中,在准备开挖岩体的以下安排下,在爆破作业前后测量岩体中的台阶高度和喷桩参数:a)在正常情况下,对选定的工作面或卸压壁进行所需厚度的岩体爆破;B)在压缩中形成“风帽”;C)在长凳的边缘部分。根据实际台阶高度和爆破喷岩桩参数的现场测量结果,得出以下结论:a)无论使用何种型号的挖掘机,在挖掘“爆破帽”时,采石场的实际坡角为49°,在全台阶时挖掘矿体时为53°;采用拖铲挖掘机的坡度为49°,液压挖掘机的坡度为53°进行进一步计算;B)产生平衡矿损失和贫化的边缘(近包络层)带的宽度从7米(49°)增加到13.0米(53°),从7米增加到11.3米(53°);因此,损失和稀释三角形的面积增加了;C)在压缩条件下爆破时,在喷桩上部,所涉及的岩石和所有矿石等级发生强烈混合,因此,在挖掘“爆破帽”时,只能进行大块矿石的开采。爆破台阶下部更大程度上保留了岩体的地质构造,可按品位分选进行选择性开挖;d)在对岩体进行爆破时,为保持所需的脉冲方向和爆破顺序,在爆破轮廓中加入了裸眼钻孔,增加了平衡贫化,产生了结构性贫化,在制定“慕仑头、苗顿白(第五阶段)露天采矿过程中矿石损失贫化的确定、限制和核算方法”时应考虑到这一点;e)在编制“方法…”时,应考虑将15米高的工作台分成两个7.5米高的子工作台的选择。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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