Estimation of Reinforced Roadbed Thickness based on Experimental Equation

노반재료의 소성침하 예측식을 이용한 강화노반 두께 산정

  • 신은철 (인천대학교 토목환경시스템공학과) ;
  • 양희생 (인천대학교 토목환경시스템공학과) ;
  • 최찬용 (한국철도기술연구원 궤도토목연구본부)
  • Published : 2008.06.12

Abstract

Design of the reinforced roadbed thickness is concerned with safe operation of trains at specified levels of speed, axle load and tonnage. There are two methods for evaluating it. One is using an experimental equation and the other is using elastic theory with considering axle load, material properties of subsoils and allowable elastic settlement. Multi-layered theory is used to determine reinforced roadbed thickness by RTRI. Although their reinforced roadbed thickness is designed with an objective of achieving a minimum standard 2.5mm of settlement on the subgrade surface, it is hardly applied to real design. Li(1994) has suggested the experimental model which design approach is to limit plastic strain and deformations for the design period. It is worth due to adopting soil equivalent number of repeated load application. Moreover, it has been a more advanced method than existing design methods because including resilient modulus of subsoil beneath track, soil deviator stress caused by train axle loads and MGT. In this paper, it is analyzed under domestic track conditions to estimate the reinforced roadbed thickness with different soil types.

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