A Compaction Control Procedure of Railway Trackbed Fills Using Elastic Waves

탄성파를 이용한 철도노반의 다짐관리 방안

  • Park, Chul-Soo (Railroad Structure Research Department, Korea Railroad Research Institute) ;
  • Park, In-Beom (Dept. of Civil Eng., Kyunghee University) ;
  • Oh, Sang-Hoon (Dept. of Civil Eng., Kyunghee University) ;
  • Kim, Hak-Sung (Dept. of Civil Eng., Kyunghee University) ;
  • Mok, Young-Jin (College of Architecture and Civil Engineering, Kyunghee University)
  • 박철수 (한국철도기술연구원 철도구조연구실) ;
  • 박인범 (경희대학교 토목공학과) ;
  • 오상훈 (경희대학교 토목공학과) ;
  • 김학성 (경희대학교 토목공학과) ;
  • 목영진 (경희대학교 토목건축대학)
  • Published : 2008.10.10

Abstract

The quality of track-bed fills of railways has been controlled by field measurements of density (${\gamma}_d$) and the results of plate-load tests. The control measures are compatible with the design procedures whose design parameter is $k_{30}$ for both ordinary-speed railways and high-speed railways. However, one of fatal flaws of the design procedures is that there are no simple laboratory measurement procedures for the design parameters ($k_{30}$ or, $E_{v2}$ and $E_{v2}/E_{v1}$) in design stage. A new quality control procedure, in parallel with the advent of the new design procedure, is being proposed. This procedure is based upon P-wave velocity involving consistently the evaluation of design parameters in design stage and the field measurements during construction. The key concept of the procedure is that the target value for field compaction control is the P-wave velocity determined at OMC using modified compaction test, and direct-arrival method is used for the field measurements during construction. The procedure was verified at a test site and the p-wave velocity turned out to be an excellent control measure. The specifications for the control also include field compaction water content of $OMC{\pm}2%$ as well as the p-wave velocity.

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