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Experimental Study of Seepage Properties of Broken Sandstone Under Different Porosities

机译:不同孔隙度的破碎砂岩渗流特性试验研究

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摘要

In coal mining the water flow in broken rock is a very common phenomenon. Study of seepage properties of broken rock is one of the basic subjects required in order to understand the stability of rock surrounding roadways, preventing disasters such as water inrush and gas outbursts and developing underground resources. So far, quantitative studies on the nonlinear seepage properties of broken sandstone under different porosities are not extensive in the research literature. In this article, by means of an electro-hydraulic servo-controlled test system (MTS815.02) and a patent seepage device, the seepage properties under different conditions of porosity were tested on broken sandstone of five different grain sizes. Based on the loading method of controlling the axial compression displacement and steady permeating method, we obtained curves of the relation of pore pressure with time, as well as the relation curves between the pore pressure gradient for steady seepage and velocity. Furthermore, we calculated the permeability k and non-Darcy coefficient β corresponding to different porosities by fitting these curves with the binomial expression. This study indicates that: (1) the seepage properties of broken sandstone are closely related to grain size, load levels, and porosity structure; (2) the permeability k decreases, while the coefficient β increases with a decrease in porosity φ, but both the k - φ and the β - φ curves show some local fluctuations; (3) the permeability k of the broken sandstone has a magnitude of 10~(-14)-10~(-12) m~2, while the coefficient β ranges from 10~(10) to 10~(12) m~(-1). The results obtained provide some information for further study of the nonlinear seepage behavior of broken rock theoretically.
机译:在煤矿开采中,破碎岩石中的水流是非常普遍的现象。研究破碎岩石的渗透特性是了解巷道周围岩石的稳定性,防止诸如注水和瓦斯突出等灾害以及开发地下资源所需的基本主题之一。迄今为止,在不同孔隙度下破碎砂岩的非线性渗流特性的定量研究在研究文献中还不广泛。在本文中,借助电液伺服控制测试系统(MTS815.02)和专利的防渗装置,对五种不同粒度的破碎砂岩在不同孔隙率条件下的渗流性能进行了测试。基于控制轴向压缩位移的加载方法和稳态渗透方法,我们得到了孔隙压力与时间的关系曲线,以及稳态渗透率和速度的孔隙压力梯度之间的关系曲线。此外,通过将这些曲线与二项式拟合,我们计算了对应于不同孔隙率的渗透率k和非达西系数β。研究表明:(1)破碎砂岩的渗透特性与粒径,载荷水平和孔隙结构密切相关; (2)渗透率k减小,而系数β随孔隙度φ的减小而增大,但k-φ和β-φ曲线均出现局部波动; (3)破碎砂岩的渗透率k的大小为10〜(-14)-10〜(-12)m〜2,系数β的范围为10〜(10)至10〜(12)m〜 (-1)。所得结果为理论研究破碎岩的非线性渗流特性提供了一些信息。

著录项

  • 来源
    《Transport in Porous Media》 |2011年第3期|p.805-814|共10页
  • 作者单位

    State Key Laboratory for Geomechanics and Deep Underground Engineering, China University of Mining and Technology, Xuzhou 221008, Jiangsu,China;

    School of Mechanical and Electrical Engineering, Xuzhou Normal University, Xuzhou 221116, Jiangsu,China;

    State Key Laboratory for Geomechanics and Deep Underground Engineering, China University of Mining and Technology, Xuzhou 221008, Jiangsu,China;

    State Key Laboratory for Geomechanics and Deep Underground Engineering, China University of Mining and Technology, Xuzhou 221008, Jiangsu,China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Broken sandstone; Steady seepage; Permeability; Non-Darcy coefficient β; Experimental study;

    机译:破碎的砂岩;稳定的渗流;渗透率;非达西系数β;实验研究;

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