双轴土工格栅对颗粒土铁路路基道砟界面的影响

A. Bhardwaj, S. Mittal
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引用次数: 1

摘要

土体加固技术的发展已经对大多数土木工程领域,特别是交通运输领域产生了影响。土工格栅在公路上使用频繁,但在铁路上也有应用。土工格栅可能产生的主要影响是通过减少材料和作为适当的增强材料来提供所需的刚度。本研究尝试利用土工格栅对铁路路堤进行经济改造。双轴土工格栅用于替代铁路路堤中的铺装层(厚度达100厘米),满足路堤的应变模量要求,根据DIN 18134使用板承试验计算。试验是在金属试验室内复制的路基上进行的,路基为颗粒土,在压载物下方放置土工格栅。利用Midas GTS NX软件建立了三维数值模型,验证了实验研究的正确性。试验分析表明,土路堤二次模量提高了31.47%。为了实施本研究,采用了印度铁路的一个设计路段。在土工格栅的帮助下,路堤高度降低了50%,从而降低了总成本。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Influence of Biaxial Geogrid at the Ballast Interface for Granular Earth Railway Embankment
The development of reinforcements for soil has made an impact in most of the civil engineering sectors especially transportation. The use of geogrids is frequent in roadways but they are also finding use in railways. The major impact that geogrids could have is providing desired stiffness to a section by reducing material and serving as a proper reinforcement material. In the current study, an attempt has been made to redesign the railway embankment economically with the help of geogrids. Biaxial geogrid is used to substitute the blanket layer (thickness up to 100 cm) in the railway embankment by fulfilling the strain modulus requirement of the embankment, calculated using a plate bearing test as per DIN 18134. The experiment is performed on the embankment replicated in a metallic test chamber with granular soil as subgrade and geogrid is placed beneath the ballast. The experimental study is validated by a 3-D numerical model using Midas GTS NX software. The experimental analysis shows an improvement of 31.47% in the second modulus of the earth embankment. For the implementation of this study, a design section of Indian railways is adopted. With the help of geogrid, a reduction of 50% is observed in the embankment height, thereby reducing the overall costs.
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