Critical Speed Analysis of Geogrid-Reinforced Rail Roadbed

지오그리드로 보강된 철도노반의 한계속도에 관한 연구

  • 신은철 (인천대학교 공과대학 토목환경시스템 공학과) ;
  • 이규진 (인천국제공항공사 기술 개발) ;
  • 오영인 (인천대학교 대학원 토목환경시스템 공학과)
  • Published : 2001.10.01

Abstract

This paper presents the critical speed analysis of geogrid-reinforced rail roadbeds on soft soil. A rail roadbed on soft ground must be designed to avoid intolerable stress in the underlying soil and to give sufficient support for the rail system. At high speeds, the deformation of rail systems will gain dynamic amplification, and reach excessive values as a certain speed, here termed critical speed is approached. The elastic Winkler foundation model was used to predict the critical speed of geogrid-reinforced rail roadbeds on soft soil and the model properties were determined by the in-situ cyclic plate load test. Based on the parametric study of elastic beam on Winkler foundation model, the critical speed increase with the increase of the flexural risidity of subgrade EI and the stiffness coefficient of Winkler foundation k. From the in-situ cyclic load tests and analysis of elastic beam on Winkler foundation model, the critical speed increase with increase in number of reinforced layer and non-dimensional value for depth of first geogrid layers and the thickness of reinforced rail roadbed u/d.

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