Ballast bed resistance characteristics based on discrete-element modeling

Author:

Zeng Zhiping123,Song Shanyi12ORCID,Wang Weidong123,Yan Haijian4,Wang Guoshu4,Xiao Bin4

Affiliation:

1. School of Civil Engineering, Central South University, Changsha, China

2. Key Laboratory of Engineering Structure of Heavy Haul Railway, Ministry of Education, Central South University, Changsha, China

3. Joint International Research Laboratory of Traffic Safety on Track Key Technology, Changsha, China

4. Fifth Engineering Company, China Railway fourteenth Bureau Group, Jining, China

Abstract

In this study, in situ experiments were conducted to study the changing characteristics of the lateral and longitudinal resistance of a ballast bed, and a three-dimensional model for the ballast bed and sleeper was constructed based on the discrete-element method. The effects of the lateral and longitudinal resistance of the ballast bed, such as gravel ballast grading, sleeper depth, the angle of the shoulder slope, and ballast bed shoulder width, among others, were studied. The results suggest that (1) the lateral and longitudinal resistance of the ballast bed increases with the widening of ballast grading, and within the size distribution limits, the resistance of the ballast bed satisfies the specification; (2) the lateral and longitudinal resistance of ballast bed increases with an increase in the sleeper depth and the resistance of ballast bed satisfies the specifications for sleeper depth greater than 150 mm; (3) the lateral resistance of the ballast bed increases with a decrease in the angle of the shoulder slope, whereas the longitudinal resistance remains unchanged and the resistance of the ballast bed satisfies the specifications for slope gradient of 1:1.75 or less; and finally, (4) the lateral resistance of the ballast bed increases with the widening of the ballast bed shoulder, whereas the longitudinal resistance remains unchanged, and the resistance of ballast bed satisfies the specifications when the shoulder width is greater than 400 mm.

Funder

the Graduate Innovation Project of Central South University

the Science and Technology Foundation of China Railway 14th Bureau Corporation Limited

the High-speed Railway Joint Fund of National Natural Science Foundation of China

the Science and Technology Research and Development Project of Nanchang Railway Bureau in China

Publisher

SAGE Publications

Subject

Mechanical Engineering

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