DOI QR코드

DOI QR Code

The Impact of Armor Block Failure on Wave Pressure Acting on a Vertical Wall at the Front of a Caisson

피복 케이슨의 소파블록 이탈이 직립벽에 작용하는 파압에 미치는 영향

  • Taegun Park (Department of Ocean Civil Engineering, Gyeongsang National University) ;
  • Yeon-Myeong Jung (Institute of Marine Industry, Gyeongsang National University) ;
  • Jeongheum Lee (Institute of Marine Industry, Gyeongsang National University) ;
  • Jaeheon Jeong (Department of Ocean Civil Engineering, Gyeongsang National University) ;
  • Dong-Soo Hur (Department of Ocean Civil Engineering, Gyeongsang National University)
  • 박태건 (경상국립대학교 해양토목공학과 수공학) ;
  • 정연명 (경상국립대학교 해양산업연구소) ;
  • 이정흠 (경상국립대학교 해양산업연구소) ;
  • 정재헌 (경상국립대학교 해양토목공학과 수공학) ;
  • 허동수 (경상국립대학교 해양토목공학과)
  • Received : 2024.06.28
  • Accepted : 2024.07.30
  • Published : 2024.08.31

Abstract

This study examines the effects of wave pressure on a vertical wall due to armor block failure at the front of a caisson, using a 2-D hydraulic model to simulate three types of armor block cross-sections. Additionally, the hydraulic characteristics of two cross-sections that replicated the armor blocks' failure, based on complete cross-sections, were compared. Moreover, quantitative analysis indicated that in the cross-section where the displacement of the armor block was recreated, wave run-up( ) increased by an average of 73%, the sum of dimensionless wave pressures increased by 28%, and converted wave force rose by 33%. These findings underscore the need for countermeasures in the event of armor block failure.

본 연구에서는 3가지 형태의 소파블록 단면에 대한 수리모형 실험을 통해 피복 케이슨 전면에 소파블록의 이탈로 인한 수직벽에 작용하는 파압에 미치는 영향에 초점을 둔다. 또한 소파블록의 완전 소파단면을 기준으로 소파블록 이탈을 재현한 2조건 단면에 대해 수리학적 특성을 비교하였다. 그리고 정량적인 분석을 통해 소파블록의 이탈 재현 단면에서 처오름은 평균 73% 상승하며 무차원된 파압의 합은 평균 28% 상승하며, 변환 파력은 33% 상승하였다. 이상의 분석을 토대로 소파블록의 이탈이 발생할 경우 이에 대한 대책이 필요하다고 본다.

Keywords

Acknowledgement

이 논문은 2023년 해양수산부 재원으로 해양수산과학기술진흥원의 지원을 받아 수행된 연구임(RS-2023-00256687, 순환적응형 연안침식 관리기술 개발).

References

  1. Goda, Y.(1974), "New Wave Pressure Formulae for Composite Breakwaters", In Proceedings of the 14th International Conference on Coastal Engineering, 24-28 June, pp. 1702-1720.
  2. Kang, Y. G.(2019), "Connotative sense of design standard and our future tasks.2" Korea Ports and harbours, Vol 149, pp. 63-72.
  3. Lee, G. S., Oh, S. H. and Yoon, S. B.(2019), "Evaluation of Empirical Porous-Media Parameters for Numerical Simulation of Wave Pressure on Caisson Breakwater Armored with Tetrapods", Journal of Korean Society of Coastal and Ocean Engineers, Vol. 31, No, 6, pp. 344-350.
  4. Lee, J. I. and Bae, I. R.(2015), "Empirical Formula for Wave Runup of Rubble-Mound Structure Covered by Tetrapods 1:1.5 Slope Condition", Journal of the Korean Society of Civil Engineers, Vol. 35, No. 4, pp. 845-852.
  5. Oh, S. H. and Lee, J. S.(2020), "Experimental investigation of horizontal wave pressure on the caisson protected by armor blocks on the rubble-mounted core", Journal of Marine Science and Engineering, Vol. 8, No, 9, p. 691.
  6. Paolo, M.(2013), "Experimental investigation on caisson breakwater sliding", Padua University, Graduate school of civil engineering, Ph.M Dissertation.
  7. Kubota, S., Yamaoto, M., Matsumoto, A.,Hanzawa, M., Araki, S. and Deguchi, I.(2010), "Effects of Deformation of Wave-Dissipating Works on Wave Forces Acting on Caisson Breakwaters", Japan Scociety of Civil Engineers, Ser. B2, pp. 866-870.
  8. Ota, T., Kim, S. Y. and Nakahara, S.(2020), "Increase of acting wave force due to deformation of wave dissipating works and accident al waves and its countermeasure", Japan Scociety of Civil Engineers, Vol. 76, No. 2, pp. 793-798.
  9. Takahashi, S., Ohki, Y., Shimosako, K., lsayama, S. and Ishinuki, K.(2000), "Seawall Failures by Typhoon 9918 and Their Reproduction in Wave Flume Experiments", The Port and Harbour Research Institute, Ministry of Transport, Japan, Vol. 973, pp. 3-50.
  10. Tanimoto, K., Moto, K., Ishizuka, S. and Goda, Y.(1976), "An investigation on design wave force formulae of composite-type breakwaters", In Proceedings of the 23rd Japanese Conference on Coastal Engineering, pp. 11-16.