DOI QR코드

DOI QR Code

유조선의 구획배치 자동화 알고리즘 개발

Development of Automated Algorithm for Compartment Arrangement of Oil Tanker

  • 송하철 (국립목포대학교 조선공학과) ;
  • 나승수 (국립목포대학교 조선공학과) ;
  • 조두연 (국립목포대학교 조선공학과) ;
  • 심천식 (국립목포대학교 조선공학과) ;
  • 이강현 (국립목포대학교 대학원 선박해양공학과) ;
  • 정솔 (국립목포대학교 대학원 선박해양공학과) ;
  • 허주호 (STX조선해양 기술연구소) ;
  • 정태석 (STX조선해양 기술연구소) ;
  • 이철호 (STX조선해양 기술연구소) ;
  • 조영천 (STX조선해양 기술연구소) ;
  • 김동춘 (STX조선해양 기술연구소)
  • Song, Ha-Cheol (Dep. of Naval Architecture, Mokpo National University) ;
  • Na, Seung-Su (Dep. of Naval Architecture, Mokpo National University) ;
  • Jo, Du-Yeon (Dep. of Naval Architecture, Mokpo National University) ;
  • Shim, Cheon-Sik (Dep. of Naval Architecture, Mokpo National University) ;
  • Lee, Gang-Hyeon (Graduate School, Dep. of Naval Architecture and Marine Engineering, Mokpo National University) ;
  • Jeong, Sol (Graduate School, Dep. of Naval Architecture and Marine Engineering, Mokpo National University) ;
  • Heo, Joo-Ho (Technical Institute, STX Offshore & Shipbuilding Co., Ltd.) ;
  • Jeong, Tae-Seok (Technical Institute, STX Offshore & Shipbuilding Co., Ltd.) ;
  • Lee, Chul-Ho (Technical Institute, STX Offshore & Shipbuilding Co., Ltd.) ;
  • Jo, Young-Chun (Technical Institute, STX Offshore & Shipbuilding Co., Ltd.) ;
  • Kim, Dong-Chun (Technical Institute, STX Offshore & Shipbuilding Co., Ltd.)
  • 투고 : 2013.01.31
  • 심사 : 2013.02.20
  • 발행 : 2013.02.20

초록

Nowadays, optimum structural design techniques based on CSR have been developed and applied to the preliminary design stage focused on minimum weight and minimum construction cost of ship structure. Optimum structural design algorithm developed before could minimize weight and cost on fixed compartment arrangement. However, to develop more efficient design technique, a designer needs to combine optimized compartment arrangement with optimized ship structural design because compartment arrangement has a large effect on structural design according to the change of still water bending moment as a consequence of compartment arrangement change. In this study, automated algorithm for compartment arrangement of an oil tanker is developed to apply preliminary structural design. The usefulness of developed algorithm is verified with Aframax oil tanker constructed by STX shipbuilding Co.Ltd..

키워드

참고문헌

  1. Byun, Y.C. Lee, K.Y. & Lee, K.H., 1997. A study on the expert system to support compartment arrangement in preliminary ship design. Proceedings of the Annual Autumn Meeting, SNAK, Seoul, 13-14 November 1997, pp.79-82.
  2. Cohen, J.L., 1978. Multi-objective Programming and Planning. Dover Pubns: America.
  3. Hajela, P. & Shin, C.J., 1990. Multi-objective Optimum Design in Mixed Interger and Discrete Design Variable Problems. AlAA Journal, 28(4), pp.670-675.
  4. Han, S.N. & Lee, K.Y., 2000. A study on the optimum compartment layout design for the naval ship. Proceedings of the Annual Autumn Meeting, SNAK, Ulsan, 9-10 November 2000, pp.74-79.
  5. Han, S.N. Lee, K.Y. & Roh, M.I., 2001. A Study on the Optimal Facility Layout Design Using an Improved Genetic Algorithm. International Journal of CAD/CAM, 6(3), pp.174-183.
  6. Jang, C.D. Jung, J.J. & Shin, C.H., 1997. Minimum weight design of mid-ship section of double hull oil tanker by hybrid evolution strategies. Proceedings of Asian Technical Exchange and Advisory Meeting on Marine Structures.
  7. Jang, C.D. & Na, S.S., 1987. On the minimum structural weight design of oil tankers by generalized slop deflection method. Proceedings of 3rd International Symposium on Practical Design & Mobil Units, Norway.
  8. Jang, C.D. & Na, S.S., 1996. Minimum Weight Design of Transverse Frames of Oil Tankers by Generalized Slope Deflection Method. Transactions of the Society of Naval Architects of Korea, 33(3), pp.103-111.
  9. Jo, Y.C., 2010. Optimum structural design system for double hull oil tanker based on elementary plate panel considering common structural rules. Ph.D. Seoul National University.
  10. Kim, K.H., 1994. Optimum structural design by using multi-objective function method with genetic algorithm. Ph.D. Seoul National University.
  11. Knowles, J.D., 1999. The Pareto Archived Evolution Strategy: A New Baseline Algorithm for Pareto Multi-objective Optimization. IEEE.
  12. Korean Register of Shipping, 2009. Common Structural Rules for Double Hull Oil Tankers (Part 12).
  13. Koski, J. & Silvennoinen, R., 1982. Pareto Optima of Iso-static Trusses. Computer Methods in Applied Mechanics and Engineering, 31(3), pp.265-279. https://doi.org/10.1016/0045-7825(82)90008-1
  14. Lee, K.H. & Lee, K.Y., 1996. Knowledge-based approach to a compartment division design of double hull tanker. Proceedings of the Annual Spring Meeting, pp.29-32.
  15. Na, S.S., 2005. Development of a Multi-objective Function Method Based on Pareto Optimal Point. Journal of the Society of Naval Architects of Korea, 42(2), pp.175-182. https://doi.org/10.3744/SNAK.2005.42.2.175
  16. Na, S.S. Min, K.S. Urm, H.S. & Shin, D.H., 1985. Minimum Weight Design of Transverse Strength Member by using Finite Element Method. Journal of the Society of Naval Architects of Korea, 22(3), pp.27-37.
  17. Shin, S.H. Song, H.C. & Jang, C.D., 2006. Optimum Structural Design of Tankers Using Multi-objective Optimization Technique. Ships and Offshore Structures, 1(3), pp.213-219. https://doi.org/10.1533/saos.2006.0103
  18. Song, H.C. Na, S.S. & Jo, D.Y., 2012. Development of Optimum Structural Design System for Compartment Arrangement Based on CSR. Final Report of Joint Research between Mokpo National University & STX Offshore & Shipbuilding Co.
  19. Stadler, W., 1977. Natural Structural Shapes of Shallow Arches. Journal of Applied Mechanics, 44(2), pp.291-298. https://doi.org/10.1115/1.3424040
  20. Stidsen, T.J. Caprani, O. & Michalewicz, Z., 1999. A Parabolic Operator for Parameter Optimization Problems. IEEE.