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Penetration test in coarse granular material using Contact Dynamics Method

机译:接触动力学法在粗粒材料中的渗透试验

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摘要

Field tests are widely used for soil characterization in geotechnical applications in spite of implementation difficulties. The light penetrometer is a well-known testing tool for fine soils, but the physical interpretation of the output data in the case of coarse granular materials is far less evident. Indeed, the data are considerably more sensitive in this case to various parameters such as fabric structure, particle shapes or the applied impact energy. In order to achieve a better understanding of the penetration process into a coarse granular material, a numerical study was performed by means of contact dynamics simulations. The penetration of a moving tip in a sample composed of irregular grain shapes was studied and the influence of the driving velocity and input energy on the penetration strength was analyzed. The results show that the latter grows with both the penetration rate and energy, despite the strong fluctuations occur due to a jamming-unjamming process in which the contact network connectivity evolves intermittently in correlation with the penetration strength. This analysis suggests that the time-averaged data provided by a penetrometer is reliable information from which the bulk strength properties of coarse granular materials can be evaluated.
机译:尽管实施困难,但现场测试仍广泛用于岩土工程中的土壤表征。光渗透仪是用于细土的众所周知的测试工具,但是对于粗粒状材料,输出数据的物理解释远不那么明显。实际上,在这种情况下,数据对各种参数(例如织物结构,颗粒形状或施加的冲击能量)更加敏感。为了更好地理解渗透到粗颗粒材料中的过程,通过接触动力学模拟进行了数值研究。研究了运动尖端在由不规则晶粒形状组成的样品中的穿透力,并分析了驱动速度和输入能量对穿透力的影响。结果表明,尽管由于干扰网络的连接性与穿透强度相关的间歇性变化而产生的干扰干扰,但后者却随着穿透率和能量的增长而增长。该分析表明,由渗度计提供的时间平均数据是可靠的信息,从中可以评估粗颗粒材料的体积强度特性。

著录项

  • 来源
    《Computers and Geotechnics》 |2014年第1期|248-253|共6页
  • 作者单位

    Innovation and Research Department of SNCF, 40 avenue des Terroirs de France, 75611 Paris Cedex 12, France LMCC, University of Montpetlier 2, CC048 Place Eugene Bataillon, 34095 Montpellier, France;

    Blaise Pascal University, Institute Pascal - CNRS, UMR 6602, F-63171 Aubiere, France;

    Innovation and Research Department of SNCF, 40 avenue des Terroirs de France, 75611 Paris Cedex 12, France;

    LMCC, University of Montpetlier 2, CC048 Place Eugene Bataillon, 34095 Montpellier, France;

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

    Coarse granular material; Penetration test; Contact Dynamics Method;

    机译:粗粒状物料;渗透测试;接触动力学方法;

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