Advance Search
Issue 1
Jan.  2016
Turn off MathJax
Article Contents
Zhang Zhongguo. Development tendency and key technology of mine seam gateway rapid driving system[J]. COAL SCIENCE AND TECHNOLOGY, 2016, (1).
Citation: Zhang Zhongguo. Development tendency and key technology of mine seam gateway rapid driving system[J]. COAL SCIENCE AND TECHNOLOGY, 2016, (1).

Development tendency and key technology of mine seam gateway rapid driving system

More Information
  • Available Online: April 02, 2023
  • Published Date: January 24, 2016
  • According to the mining and driving mechanized percentage imbalance contradiction occurred in the coamine,the paper studied the seam gateway rapid driving fech nology and made. Based on the a alysis of the driving management equipment research and developmentraid driving and other development.the paper dscussed the containt relationship between the driving and support as well s the work machinery and auillay machinery,studied the layout and mechanization of theboft support machine and toos,parialsupport of the gateway drving face mechanization of the a urllary operation.comined design ofthe powe control and other key echnology and stated no lateral mobility of the gateway driving machine.the reducion on support opeation of dnving face,mateial ransportation coniuous and othrbasic features of the rapid driving technology .Meanwile,the paper inroduced single funcion drving elf 且lking type drnving /biling f ranspoteaiondivs g, aoling transportation integration,and driving and auiliary machinery overall lanning development tendenc With the sustanable imnprovemen ofthe frs set atched eouipment behind the rapid driving in Shendong.the month advanced rate was a successtul breakthough from 1505 m to 3 0 m an the pracices showed thatfrom thedesgn.operation and management of the rapid drving of the mechanized drving sysem ,the equioment and 'echnolog forward to the development of the drving support,tansportation and auxiliary integration was correct.
  • Cited by

    Periodical cited type(17)

    1. 马小辉,李文福,刘咸富,王向阳,何伟,王岩,白晓敏,刘万成. 井工式液态CO_2相变致裂煤层关键参数及应用效果研究. 煤炭技术. 2025(03): 198-202 .
    2. 陈祖国,高园园,冯明强,李洋,黄霓. CO_2气爆煤岩体预制楔形裂纹扩展模拟研究. 煤炭技术. 2025(06): 167-171 .
    3. 彭鑫. CO_2致裂技术在贵州大运煤矿、宏发煤矿低渗煤层瓦斯治理应用研究. 山西煤炭. 2024(01): 71-80 .
    4. 杨希培,杨百舸,徐锋懿. CO_2气相压裂煤层瓦斯参数测试及数值模拟分析. 现代矿业. 2024(06): 31-35+66 .
    5. 秦雷,王伟凯,林海飞,周斌,王瑞哲,罗荣卫,李树刚. 低温循环冻融过程不同煤阶煤体传热-变形特征分析. 中国矿业大学学报. 2024(04): 737-750 .
    6. 李国彬,沈永星,冯增朝. 水/CO_2对平直节理砂岩剪切力学特性的影响. 太原理工大学学报. 2024(06): 981-988 .
    7. 张天军,朱诗鹏,庞明坤,武晋宇,刘荣涛,韩明睿,潘红宇. CO_2致裂钻孔瓦斯径向non-Darcy渗流影响因素研究. 煤炭学报. 2024(S2): 946-957 .
    8. 徐东方,尉瑞,周风媛,张孝强. 低瓦斯高强度开采综放工作面静态爆破强化瓦斯抽采技术研究. 工业安全与环保. 2023(03): 69-72 .
    9. 宋建民,邹永洺. 基于EGF增渗材料的煤层酸化增透技术研究. 煤矿安全. 2023(05): 161-168 .
    10. 周西华,周露函,姜延航,白刚,刘天祥,王学鹏. 多因素对液态CO_2冻融致裂煤体的影响试验研究. 中国安全科学学报. 2023(07): 58-67 .
    11. 张树丰. 回采面CO_2致裂增透与煤体注碱同步治理硫化氢技术研究. 煤. 2023(10): 1-3+65 .
    12. 杨鹏,薛傲,王杰,潘辉,陈嘉慧,任旭朗,程志恒,陈亮. 吉宁矿CO_2气相压裂条件下抽采半径时变规律. 华北科技学院学报. 2023(05): 43-54 .
    13. 毕慧杰,邓志刚,李少刚,莫云龙,苏振国. 深孔爆破在小煤柱巷道顶板控制中的应用. 煤炭科学技术. 2022(03): 85-91 . 本站查看
    14. 杨海斌,汪旭光,王尹军,张建如. 液态CO_2相变爆炸激发药剂的爆炸性与安全性. 工程爆破. 2022(03): 97-102 .
    15. 杨海斌,汪旭光,王尹军,郭宝江,张风军,李继红. 液态CO_2相变爆炸激发药剂安全性的试验研究. 火炸药学报. 2022(04): 590-596 .
    16. 阎俞佐,康健婷,郑亚炜,晏嘉欣,张连昆. 温度冲击作用对无烟煤甲烷吸附-解吸特性影响的试验研究. 煤炭科学技术. 2022(09): 93-103 . 本站查看
    17. 黄志增,高晓进,袁伟茗,孙晓冬. 深孔预裂爆破沿空留巷技术及顶板应力分布规律. 煤炭科学技术. 2022(S2): 88-96 . 本站查看

    Other cited types(4)

Catalog

    Article views (598) PDF downloads (834) Cited by(21)
    Related

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return