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Characterization of Clean and Fouled Rail Track Ballast Subsurface Using Seismic Surface Survey Method: Model and Field Studies

机译:地震表面调查方法表征清洁和污染的铁路道Ball道次表面:模型和田间研究

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摘要

The efficiency of track foundation material gradually decreases due to insufficient lateral confinement, ballast fouling, and loss of shear strength of the subsurface soil under cyclic loading. This paper presents characterization of rail track subsurface to identify ballast fouling and subsurface layers shear wave velocity using seismic survey. Seismic surface wave method of multi-channel analysis of surface wave (MASW) has been carried out in the model track and field track for finding out shear wave velocity of the clean and fouled ballast and track subsurface. The shear wave velocity (SWV) of fouled ballast increases with increase in fouling percentage, and reaches a maximum value and then decreases. This character is similar to typical compaction curve of soil, which is used to define optimum and critical fouling percentage (OFP and CFP). Critical fouling percentage of 15 % is noticed for Coal fouled ballast and 25 % is noticed for clayey sand fouled ballast. Coal fouled ballast reaches the OFP and CFP before clayey sand fouled ballast. Fouling of ballast reduces voids in ballast and there by decreases the drainage. Combined plot of permeability and SWV with percentage of fouling shows that after critical fouling point drainage condition of fouled ballast goes below acceptable limit. Shear wave velocities are measured in the selected location in the Wollongong field track by carrying out similar seismic survey. In-situ samples were collected and degrees of fouling were measured. Field SWV values are more than that of the model track SWV values for the same degree of fouling, which might be due to sleeper's confinement. This article also highlights the ballast gradation widely followed in different countries and presents the comparison of Indian ballast gradation with international gradation standards. Indian ballast contains a coarser particle size when compared to other countries. The upper limit of Indian gradation curve matches with lower limit of ballast gradation curves of America and Australia. The ballast gradation followed by Indian railways is poorly graded and more favorable for the drainage conditions. Indian ballast engineering needs extensive research to improve presents track conditions.
机译:轨道基础材料的效率由于侧向约束不足,压载物结垢以及循环荷载下地下土壤抗剪强度的损失而逐渐降低。本文介绍了铁轨地下的特征,以使用地震勘测来识别压载物结垢和地下层的剪切波速度。在模型田径场中已经进行了多面波地震分析的地表波方法(MASW),以求出清洁和污染的压载物和轨道地下的剪切波速度。结垢的镇流器的剪切波速度(SWV)随结垢百分比的增加而增加,并达到最大值,然后降低。此特性类似于典型的土壤压实曲线,用于定义最佳和临界结垢百分比(OFP和CFP)。煤结垢的压载物的临界结垢百分比为15%,黏土砂结垢的压载物的临界结垢百分比为25%。煤结垢的压载物先到达OFP和CFP,然后才是黏土砂结垢的压载物。压载物的结垢减少了压载物中的空隙,并由此减少了排水。渗透率和SWV与结垢百分比的组合图表明,在关键结垢点之后,结垢的压载物的排水条件低于可接受的极限。通过执行类似的地震勘测,在卧龙岗田径的选定位置测量剪切波速度。收集原位样品并测量结垢程度。对于相同的结垢程度,现场SWV值大于模型轨道SWV值,这可能是由于轨枕的限制所致。本文还重点介绍了不同国家广泛遵循的镇流器等级,并介绍了印度镇流器等级与国际等级标准的比较。与其他国家相比,印度压载颗粒的粒径更大。印度等级曲线的上限与美国和澳大利亚的压载等级曲线的下限相匹配。印度铁路所采用的压载物等级不佳,对排水条件更有利。印度压载工程需要广泛的研究,以改善目前的跟踪条件。

著录项

  • 来源
    《Journal of testing and evaluation》 |2011年第5期|p.831|共1页
  • 作者单位

    Department of Civil Engineering, Indian Institute of Science, Bangalore 560012, India. (Corresponding author);

    Professor of Civil Engineering, Faculty of Engineering, University of Wollongong, Wollongong, NSW 2522, Australia;

    Department of Civil Engineering, Indian Institute of Science, Bangalore 560012, India;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Railway track; ballast; gradation; fouling; shear wave velocity;

    机译:铁路轨道;道ast;等级;污垢;剪切波速;

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