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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
水流作用下裂隙内沉积颗粒起动临界流速研究
  • Title

    Study on the threshold velocity of sedimentary particle incipientmotion in fracture under the action of water flow

  • 作者

    胡东亮问小江郑玲娜刘应科方飞飞王凤超

  • Author

    HU Dongliang;WEN Xiaojiang;ZHENG Lingna;LIU Yingke;FANG Feifei;WANG Fengchao

  • 单位

    贵州盘江精煤股份有限公司中国矿业大学安全工程学院中国矿业大学低碳能源与动力工程学院

  • Organization
    Guizhou Panjiang Clean Coal Co., Ltd.
    School of Safety Engineering, China University of Mining and Technology
    School of Low-carbon Energy and Power Engineering, China University of Mining and Technology
  • 摘要
    为了优化阻塞裂隙的水力冲刷工艺参数,采用物理试验和理论分析相结合的方法,建立了水流作用下颗粒起动有效作用流速数学模型,研究了水流作用下裂隙内不同形状颗粒的起动方式和颗粒起动临界流速随颗粒粒径、流体密度和裂隙高度的变化特性。结果表明:近圆颗粒和椭球颗粒主要以滚动方式起动,扁平颗粒以滑动方式起动;颗粒起动临界流速随颗粒粒径的增大呈现对数增大的变化规律,随流体密度的增大呈减小的变化规律;进一步地,由于颗粒起动有效作用流速与裂隙高度的增大呈负相关的变化规律,因此颗粒起动临界流速随裂隙高度的增大而增大。为提升阻塞裂隙的水力冲刷效果,应采用的方法是增加流体介质的密度,促使裂隙内更多的沉积颗粒发生起动。此外,当水力冲刷工艺运用至裂隙发育的地带时,应该适当提高水力冲刷工艺的注水量,提高堵塞裂隙的水力冲刷工艺效果。
  • Abstract
    In order to optimize the hydraulic scouring process parameters of blocked fracture, a mathe-matical model of particle incipient motion effective velocity under the action of water flow was estab-lished, and the incipient motion of particles with different shapes in the fracture under the action of wa-ter flow and the variation of the particle incipient motion threshold velocity with particle size and fluiddensity as well as fracture height were studied by physical experiment method and theoretical analysismethod. The results show that the near-circular and ellipsoidal particles get into motion mainly by roll-ing, and the flat particles get into motion by sliding. The threshold velocity of particle incipient motionshows a logarithmic increase with the increase of particle size and exhibit the decrease trend with theincrease of fluid density. Furthermore, due to the negative correlation between the particle incipient mo-tion effective velocity and the fracture height, the threshold velocity of particle incipient motion increa-ses with the increase of fracture height. To enhance the hydraulic erosion effect of blocking fractures,the method for increasing the fluid density should be adopted to promote the more particles to get intothe incipient motion. In addition, when hydraulic erosion technology is applied for the blocking fracturewith the developed fractures, the water injection volume should be appropriately increased to improvethe effectiveness of hydraulic erosion technology.
  • 关键词

    瓦斯抽采裂隙通畅性颗粒起动起动方式临界流速

  • KeyWords

    gas extraction; fracture patency; particle incipient motion; incipient behavior; threshold ve-locity

  • 基金项目(Foundation)
    国家自然科学基金项目(51774277,52104150);江苏省自然科学青年基金项目(BK20200657)
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