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The Blocking Mechanism of the Vertical Feeding System of Roadside Support Body Material for Backfilling Gob-Side Entry Retaining

机译:路边支撑体材料垂直进料系统的阻塞机构回填GOB侧进入保持

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摘要

Reliable operation of the feeding system plays a crucial role in ensuring the safe and efficient production of the working face of backfilling gob-side entry retaining (GER). In the process of vertical feeding of the roadside support body material, the problem of blocking of the feeding shaft has occurred to the test mine, which seriously affects the production safety in mines. In this paper, based on the theoretical analysis, a fluid-solid coupling numerical model was established. The change rules of the speed of sacked gangue, pressure of air below it, and speed vector distribution with different vent diameters were obtained. The blocking mechanism of the feeding system was revealed. The results show that if the exhaust vent of the stock bin was shut, the speed of gangue in the mine increased and then decreased and finally blocked in the feeding shaft. If the exhaust vent of the stock bin was opened for pressure discharge, with the increase of diameter of the exhaust vent, the maximum speed and ending speed of sacked gangue increased, pressure differential reduced, and speed vector was uniformly distributed. The energy criterion of blocking of the feeding shaft was further obtained. Based on the engineering conditions of the test mine, when the feeding shaft is blocked, the critical value of diameter of the exhaust vent is 30mm. The research results provide basis for the design of key parameters of the vertical feeding system, ensuring the safe and efficient production of gob-backfilled GER working face.
机译:饲养系统的可靠操作在确保回填GOB侧进入保持(GER)的工作面的安全有效地生产方面起着至关重要的作用。在路边支撑体材料的垂直进给过程中,对饲料轴的阻挡问题发生在测试矿井中,这严重影响了矿山的生产安全性。本文基于理论分析,建立了一种流体固耦合数值模型。获得了袋装速度,下面的空气压力和不同通气直径的速度矢量分布的变化规则。揭示了馈电系统的阻挡机构。结果表明,如果储存箱的排气通风口关闭,则矿井中煤矸石的速度增加,然后降低,最后在饲料轴上堵塞。如果储存箱的排气通风口打开压力放电,随着排气通风口直径的增加,袋装膨胀的最大速度和结束速度增加,压差减小,速度载体均匀分布。进一步获得封闭轴的阻塞的能量标准。基于试验矿的工程条件,当送料轴被阻挡时,排气口的直径临界值为30mm。研究结果为垂直进料系统的关键参数设计提供了基础,确保了加强加固的GER工作面的安全有效地生产。

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  • 来源
    《Advances in civil engineering》 |2019年第3期|6060197.1-6060197.13|共13页
  • 作者单位

    China Univ Min & Technol State Key Lab Geomech & Deep Underground Engn Sch Mech & Civil Engn Xuzhou 221116 Jiangsu Peoples R China;

    China Univ Min & Technol State Key Lab Geomech & Deep Underground Engn Sch Mech & Civil Engn Xuzhou 221116 Jiangsu Peoples R China;

    Anhui Univ Sci & Technol Sch Min & Safety Engn Huainan 232001 Anhui Peoples R China;

    Colorado Sch Mines Dept Mech Engn Golden CO 80401 USA;

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