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Performance Assessment of Geocell-Reinforced Subballast: Modeling and Design Implications

机译:Geocell加强子柱的性能评估:建模与设计意义

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This paper presents a study of the load-deformation behavior of geocell-stabilised subballast subjected to cyclic loads using a large-scale track process simulation apparatus and numerical modelling. The tests and numerical simulations were conducted to mimic the actual track conditions. Subjected to a given frequency and cyclic loads the predicted load-deformation behavior of the subballast with and without geocell inclusions match reasonably with those measured in the laboratory, and show that geocell could effectively decrease the lateral and axial deformations of the reinforced subballast. The results also provide an insight to design of rail tracks capturing the roles of geocell in decreasing lateral deformation of subballast. Additionally, the numerical modelling carried out in this study can be applied in the preliminary design of track substructure where a wide range of subballast aggregates and geocell mattresses with varying strengths and stiffness can be considered.
机译:本文介绍了使用大规模轨道处理仿真装置和数值模拟对循环负载进行循环负载进行的Geocell稳定的子柱的负荷变形行为的研究。进行测试和数值模拟以模拟实际轨道条件。经过给定的频率和循环负载,具有和没有Geocell夹杂物的子蜂窝的预测负载变形行为与实验室中测量的那些合理匹配,并且显示Geocell可以有效地降低增强子柱的横向和轴向变形。结果还提供了对轨道轨道设计的洞察,捕获Geocell的角色在降低子柱的横向变形中。另外,本研究中进行的数值建模可以应用于轨道子结构的初步设计,其中可以考虑具有不同强度和刚度的各种子柱聚集和Geocell床垫。

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