DOI QR코드

DOI QR Code

Study on the possible application of Vibrated and Rolled reinforced concrete pipe to vertical.crossing water distribution system

진동 및 전압 철근 콘크리트관의 종.횡단배수관 적용성 검토에 관한 연구

  • Published : 2006.06.01

Abstract

In case of carrying out vortical crossing water distribution system in expressways or general roads construction, VR(Vibrated and Rolled reinforced concrete) pipes are restricted because of their specification of reinforced spun concrete pipe or on-site made pipe. Therefore, in order to apply VR pipes to those constructions, through the structural behavior experiments of the pipes, VR pipes are compared and verified with reinforced spun concrete pipe and the results are obtained as the following. From the experiments and analyses of Pipe Stiffness(PS) of the pipes, cracking loading is approved to satisfy the KS regulations. Through a direct load test, the cracking loading strength and the maximum load test of VR pipe is larger compared with reinforced spun concrete pipe. Particularly, even if side weld is thin, there is no little change in the cracking strength of VR pipe. The results of the direct load test analysis show that the structural behavior of VR pipe is equivalent or higher compared with reinforced spun concrete pipe in performance and VR pipe could be used as the water distribution pipe for roads. In this study, through pipe stiffness, direct load test and load teat on earth, reinforced spun concrete pipe and VR pipe are compared. And as a result, the structural behavior of VR pipe is comprehensively excellent. From the structural behavior tests, VR pipe's section shows more thickness and has uniform characteristics so that VR pipe is considered more favorable than reinforced spun concrete pipe.

Keywords

References

  1. ASTM C 497M, Standard Test Method for Concrete-Pipe, Manhole Sections, or Tile, ASTM, 1995
  2. KS F 4402, "진동전압 철근 콘크리트관", 한국표준협회, 2001
  3. KS F 4403, "원심력 철근 콘크리트관", 한국표준협회, 1997
  4. 이명규, "프리캐스트 맨홀의 재료학적 및 역학적 검토를 통한 제 조공정의 개선", 중소기업컨소시엄 기술개발보고서, 전주대학교, 1998.7
  5. 최신콘크리트 공학, 한국콘크리트학회, 1992
  6. 콘크리트 표준시방서, 건설교통부, 1999
  7. 콘크리트 구조 설계기준, 건설교통부, 1999
  8. 하수도용 철근콘크리트관, 일본하수도협회, 1987