Experimental and numerical settlement analysis of railway track over geogrid reinforced ballast

Mohammed Y. Fattah, Mahmood R. Mahmood, Mohammed F Aswad
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Abstract

PurposeThe main objective of the present research is to investigate the benefits of using geogrid reinforcement in minimizing the rate of deterioration of ballasted rail track geometry resting on soft clay and to explore the effect of load amplitude, load frequency, presence of geogrid layer in ballast layer and ballast layer thickness on the behavior of track system. These variables are studied both experimentally and numerically. This paper examines the effect of geogrid reinforced ballast laying on a layer of clayey soil as a subgrade layer, where a half full scale railway tests are conducted as well as a theoretical analysis is performed.Design/methodology/approachThe experimental tests work consists of laboratory model tests to investigate the reduction in the compressibility and stress distribution induced in soft clay under a ballast railway reinforced by geogrid reinforcement subjected to dynamic load. Experimental model based on an approximate half scale for general rail track engineering practice is adopted in this study which is used in Iraqi railways. The investigated parameters are load amplitude, load frequency and presence of geogrid reinforcement layer. A half full-scale railway was constructed for carrying out the tests, which consists of two rails 800 mm in length with three wooden sleepers (900 mm × 90 mm × 90 mm). The ballast was overlying 500 mm thick clay layer. The tests were carried out with and without geogrid reinforcement, the tests were carried out in a well tied steel box of 1.5 m length × 1 m width × 1 m height. A series of laboratory tests were conducted to investigate the response of the ballast and the clay layers where the ballast was reinforced by a geogrid. Settlement in ballast and clay, was measured in reinforced and unreinforced ballast cases. In addition to the laboratory tests, the application of numerical analysis was made by using the finite element program PLAXIS 3D 2013.FindingsIt was concluded that the settlement increased with increasing the simulated train load amplitude, there is a sharp increase in settlement up to the cycle 500 and after that, there is a gradual increase to level out between, 2,500 and 4,500 cycles depending on the load frequency. There is a little increase in the induced settlement when the load amplitude increased from 0.5 to 1 ton, but it is higher when the load amplitude increased to 2 ton, the increase in settlement depends on the geogrid existence and the other studied parameters. Both experimental and numerical results showed the same behavior. The effect of load frequency on the settlement ratio is almost constant after 500 cycles. In general, for reinforced cases, the effect of load frequency on the settlement ratio is very small ranging between 0.5 and 2% compared with the unreinforced case.Originality/valueIncreasing the ballast layer thickness from 20 cm to 30 cm leads to decrease the settlement by about 50%. This ascertains the efficiency of ballast in spreading the waves induced by the track.
土工格栅加固道碴上铁轨的实验和数值沉降分析
目的 本研究的主要目的是探究使用土工格栅加固软粘土上的有砟轨道几何形状的益处,以最大限度地降低其劣化率,并探讨荷载振幅、荷载频率、有砟层中是否存在土工格栅层以及有砟层厚度对轨道系统行为的影响。本文对这些变量进行了实验和数值研究。本文研究了土工格栅加固道碴铺设在粘性土层上作为路基层的影响,并进行了半全比例铁路试验和理论分析。 设计/方法/途径 实验测试工作包括实验室模型试验,以研究土工格栅加固道碴铁路在承受动荷载时,软粘土的压缩性降低和应力分布情况。本研究采用的实验模型基于伊拉克铁路使用的一般轨道工程实践的近似半比例。研究参数包括荷载振幅、荷载频率和土工格栅加固层的存在。为进行测试,建造了一条半全比例铁路,由两条长度为 800 毫米的钢轨和三根木枕木(900 毫米 × 90 毫米 × 90 毫米)组成。道碴上覆盖着 500 毫米厚的粘土层。试验在有土工格栅加固和没有土工格栅加固的情况下进行,试验在一个长 1.5 米×宽 1 米×高 1 米的绑扎良好的钢箱中进行。进行了一系列的实验室试验,以研究用土工格栅加固的道碴层和粘土层的反应。在加固和未加固压载的情况下,对压载和粘土的沉降进行了测量。除实验室测试外,还使用 PLAXIS 3D 2013 有限元程序进行了数值分析。研究结果表明,随着模拟火车载荷振幅的增大,沉降量也随之增大。当荷载振幅从 0.5 吨增加到 1 吨时,诱导沉降量略有增加,但当荷载振幅增加到 2 吨时,沉降量会增加,沉降量的增加取决于土工格栅的存在和其他研究参数。实验结果和数值结果显示了相同的行为。荷载频率对沉降比的影响在 500 次循环后几乎保持不变。一般来说,与未加固情况相比,加固情况下荷载频率对沉降比的影响非常小,在 0.5 至 2% 之间。这证明了无砟轨道在扩散轨道引起的波浪方面的效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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