매설배관의 파손 확률 모델

Failure Probability Model of Buried Pipeline

  • 발행 : 2001.11.01

초록

A failure probability model based on Von-Mises failure criterion and the standard normal probability function is proposed. The effects of varying boundary conditions such as nearby cavity, backfill, load cycle and corrosion on failure probability of the buried pipes are systematically investigated. The location of cavity is found to affect failure probability of buried pipeline within a certain limit. It is noted that the flexibility of backfill plays a great role to change the failure probability of buried pipeline. Furthermore, the corrosion gives less effects than other boundary conditions such as cavity, load as cavity, load cycle, and backfill to the failure probability of buried pipeline.

키워드

참고문헌

  1. S.H. Kim, J.W. Kim, K.J. Kim, 'Three-Dimensional Dynamic Analysis of Underground Openings Subjected to Explosive Loadings,' Journal of the Computational Structural Engineering Institute of Korea, Vol. 100, No. 2, pp. 171-178, 1997
  2. S.C. Choi, 'Coating Flaw Prevention of Undergound Buried Pipeline,' Gas Safety Journal, Vol. 26, No. 5, pp. 25-33, 2000
  3. O.S. Lee, S.S. Choi, H.H. Ryu and S.K. Hong, 'Effects of Square Cavity on Buried Pipeline,' Proceedings of the KSME Materials and Fracture Division 98, No. 2, pp. 113-119, 1998
  4. O.S. Lee and H.J. Kim, 'Effects of Width of External Corrosion in Pipeline on Failure Prediction,' Proceedings of the KSME Materials and Fracture Division 99, No. 2, pp. 132-137, 1999
  5. Qian, J. and Fatemi, A., 'Mixed mode fatigue crack growth: A literature survey,' Eng. Frac. Mech., 55, pp. 969-990, 1996 https://doi.org/10.1016/S0013-7944(96)00071-9
  6. Gao, H., Brown, M. and Miller, K., 'Mixed mode fatigue threshold,' Fatigue and Fracture of Engineering Materials and Structures, 5, pp. 1-17, 1982 https://doi.org/10.1111/j.1460-2695.1982.tb01220.x
  7. 이억섭, 황인현, '파이브라인 건정성 평가,' 한국산업안전학회 2000년도 춘계학술논문발표회 논문집, pp. 25-30 (ERC), 2000
  8. 이억섭, 황인현, '축직각 표면타원균열이 존재하는 매설배관의 축방향응력에 대한 건전성평가,' 한국정밀공학회 2000년도 추계학술대회 논문집, pp. 417-420 (ERC), 2000
  9. J. Mohammdi, S. K. Saxena, Y. T. Wong, 'Modeling Failure Probability of Underground Pipes,' in Advances in Underground Pipeline Engineering, J. K. Jayepalan (Ed.), American Society of Civil Engineers Publication, Aug., 1985
  10. ANSI/ASME B31-1985, 'Manual for Determining the Remaining Strength of Corroded Pipeline,' - Supplement to ANSI/ASME B31G Code for Pressure Piping, The American Society of Mechanical Engineers, New York, 1985