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主办单位:煤炭科学研究总院有限公司、中国煤炭学会学术期刊工作委员会
煤矿冲击地压区域应力控制技术
  • Title

    Technology of mine pressure bump regional stress control

  • 作者

    欧阳振华

  • Author

    Ouyang Zhenhua

  • 单位

    煤炭科学技术研究院有限公司煤炭资源高效开采与洁净利用国家重点实验室

  • Organization
    China Coal Research Insttute Company Limited State Key Laboratory of Coal Mining and Clean Utilization
  • 摘要
    为了从根本上降低可能诱发冲击地压的应力集中程度,有效遏制我国煤矿冲击地压事故的发生,在采用相似模拟和数值模拟研究应力对诱发煤矿冲击地压的影响基础上,提出了防治煤矿冲击地压的区域应力控制技术,介绍了这项技术中地应力测量、三维地质力学建模、三维地应力场反演和冲击地压区域防范四大步骤的实施方法,并在双鸭山矿区某冲击地压矿井开展了基于区域应力控制的冲击地压灾害防治实践。应用结果表明,在应用矿井实施区域应力控制的冲击地压防治,通过优化采区布置使应力降低了25.8%,通过模拟分析煤矿井下动态采掘过程中的应力分布状态,圈定了冲击危险区域,为后期冲击地压灾害防治奠定了很好的基础。
  • Abstract
    in orderto bascally reduce the stress concentration possible to cause the mine pressure bump and to fcively contain the mine pressure bump accdent ocured in China,based on the sinilarsimulation and unmerical simuiation were applied to study the stress afifected to cause the mine pressure bump a regional stress conirol technology to prevent the mine pressure bunp was provided.T'he paper introduced the implementation method of the geostress measurement.3D geologicamechanics modeling inversion of 3D geostress feld and theregional prevention of the mine pressure bump appied in the 'technology.T he technology was appied to themine pressure bunp in Shuangyasan Mining Area based on the practices on the mine pressure bump disaster revention and control with the regional tress contro.The appication resuls showed that with the mine pressure bump prevention and conrol with the regional stress conirol conducted n the mine,with the optimized layoutof the mining blocks,the stress was reduced by 25.8% wWih the sinulation analysis on the stress distriution status in the dynanic mining and heading procss in the underground mine,the mine pressure bump danger area was marked and could set up a good base to prevent and control the late mine pressure bump disaster
  • 关键词

    冲击地压区域应力控制地应力测试三维地应力场反演冲击危险性评价

  • KeyWords

    mine pressure bump;regional stress control; geostress measurement:. inversion of 3D geostress field;impat of risk assessment

  • 基金项目(Foundation)
    国家自然科学基金资助项目(51574150);中国煤炭科工集团有限公司科技创新基金重点资助项目(2013ZD002-04);
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