Advance Search
Li Haodang Zhang Bin, . Analysis on powered support jammed mechanism of fully-mechanized coal mining face in shallow depth mine pass through over concentrated coal pillar[J]. COAL SCIENCE AND TECHNOLOGY, 2016, (9).
Citation: Li Haodang Zhang Bin, . Analysis on powered support jammed mechanism of fully-mechanized coal mining face in shallow depth mine pass through over concentrated coal pillar[J]. COAL SCIENCE AND TECHNOLOGY, 2016, (9).

Analysis on powered support jammed mechanism of fully-mechanized coal mining face in shallow depth mine pass through over concentrated coal pillar

More Information
  • Available Online: April 02, 2023
  • Published Date: September 24, 2016
  • According to the powered support jamned accident frequently occurred when the concentrated coa ilas were inthe goaof the room and pllar miningin the shall w depth and close distance seam in China western mining area, based on the fully mechanized coal mining face in Shigeal Mine of Shendong Mlining Area as the object.the theoreical analysi and the numeical sinulaton method were applied to analyze the powered suppor jammed mechanisom.The resuts showed that wih the suppor of the concenrated oom an illar mining type coal ilas the top seam roof were completed.Before the ruly-mechanized coal minin face was under the areaof the top seam concentrated coa illars and when the coal mining face was under the areaof the top seam concenrated coa oilla area.the rof pressuecf te fally-mechanized coal mining face was normal asically and was less affcted to the powered suppots. Nhen thefrlly-mechanized cal fce was pushed foward andpassed through certain ditance under the concentrated illa area,the goaf of the rll-mechanized mining face was under the concentrated coal ilar area and therof staus would be changed from the elastc -lastic status to the ful astic statu . with the subsidence of the under burden rock.the rock insteailily nd falre were occurred and the large area fallure and subsidence of the top roo strata were ocured. The basic roof could not fom a stable ariculted rock beanm'structure. when the basicro was broken and intability ransiently occured ,a super dynamic mine prssurefar higher than the working res itance of the powered suppot was fomed and jammed the 80 % of the powered supporis aplid in the ully mechanized coal mining face. Therefore,the top suspended and yet notalen basc roof withthe instaility and roof cutting could not form a stable structure and would be the root causes of the large area powered supports jammed 'transiently.
  • Related Articles

  • Cited by

    Periodical cited type(12)

    1. 刘昕. 云边协同控制技术在矿山领域的系统架构及关键技术研究. 煤矿机械. 2025(08)
    2. 刘宏滔, 吴禹同, 白尧, 刘成龙. 基于YOLO-V5算法的煤岩界线识别研究. 山西建筑. 2025(13)
    3. 赵书东, 元永国. 煤矿智能开采技术“双高”专业数字化建设. 湖北应急管理. 2025(12)
    4. 崔石磊, 何明伟, 陈建华, 仙文豪. 面向标准作业流程的煤矿机电设备故障知识图谱构建方法. 工矿自动化. 2025(S1)
    5. 张飞建. 麻地梁煤矿智能化开采技术. 当代化工研究. 2025(11)
    6. 张强, 刘伟, 王阳, 马寿祥, 苏金鹏, 张润鑫. 基于数字孪生的刮板输送机中部槽结构响应预测. 煤炭学报. 2025(06)
    7. 李梅,张鹏鹏,李元琛. AI赋能智能矿山:应用场景及未来展望. 煤炭经济研究. 2025(02): 161-169 .
    8. 王国法,任怀伟,富佳兴. 煤矿智能化建设高质量发展难题与路径. 煤炭科学技术. 2025(01): 1-18 . 本站查看
    9. 付翔,闫明. 煤炭开采技术的人工智能应用. 绿色矿山. 2025(01): 63-72 .
    10. 魏文艳. 煤矿智能化技术的现状与发展前景. 煤矿机械. 2025(05): 94-98 .
    11. 师晓妍. 选煤厂生产系统智能化改造研究. 机械管理开发. 2025(04): 170-172 .
    12. 雷志勇,马小龙,赵树军,张世明,燕斌. 露天矿连采装备智能化协同管控平台. 煤炭科学技术. 2025(04): 362-372 . 本站查看

    Other cited types(1)

Catalog

    Article views (983) PDF downloads (373) Cited by(13)
    Related

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return