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A study of the behaviour of fresh and coal fouled ballast reinforced by geogrid using the discrete element method

机译:离散元法研究土工格栅加筋的新鲜煤coal石压载性能

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Geogrids are widely used in ballasted rail tracks for reinforcement and stabilisation. During train operation, ballast becomes contaminated or fouled due to infiltration of fines from the surface, mud pumping from the subgrade, and degradation, which decreases the performance of the geogrids. This paper presents the results of a laboratory and numerical simulation to study the effect that coal fines have on the interface between ballast and geogrid. The stress-strain behaviour of fresh and fouled ballast reinforced by geogrid was investigated via a series of large scale direct shear tests in the laboratory and numerical simulations using the Discrete Element Method (DEM). The geogrid was modelled by bonding a large number of small spheres together to form the desired geometry and apertures. Irregular particle shapes were simulated in DEM by connecting many spheres together in appropriate sizes and positions. Fouled ballast was modelled by adding a predetermined amount of miniature spheres into the voids of the fresh ballast. The DEM results were then compared qualitatively with the laboratory data, and the effects of fines on the resulting shear stress-strain of ballast and the contact forces developed in the geogrids are discussed.
机译:土工格栅广泛用于压载铁路中,以进行加固和稳定。在列车运行过程中,由于表面上的细粒渗透,路基泵入的泥浆和降解等原因,压载物被污染或结垢,这降低了土工格栅的性能。本文介绍了实验室和数值模拟的结果,以研究煤粉对压载物与土工格栅之间的界面的影响。在实验室中,通过一系列大规模直接剪切试验,并使用离散元方法(DEM)进行了数值模拟,研究了土工格栅加固的新鲜和结垢道ast的应力-应变行为。通过将大量小球粘合在一起以形成所需的几何形状和孔径来对土工格栅进行建模。通过将许多球以适当的大小和位置连接在一起,在DEM中模拟了不规则的粒子形状。通过将预定量的微型球添加到新鲜压载物的空隙中来模拟结垢的压载物。然后将DEM结果与实验室数据进行定性比较,并讨论了细料对所得压载物的剪切应力-应变和土工格栅中产生的接触力的影响。

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