DOI QR코드

DOI QR Code

Simplified Vulnerability Assessment Procedure for the Warship Based on the Vulnerable Area Approach

취약면적 기반의 함정 취약성 간이 평가 방법에 관한 연구

  • Kim, Kwang-Sik (Graduate school, Department of Naval Architecture and Ocean Engineering, INHA University) ;
  • Lee, Jang-Hyun (Department of Naval Architecture and Ocean Engineering, INHA University) ;
  • Hwang, Se-Yun (Graduate school, Department of Naval Architecture and Ocean Engineering, INHA University)
  • 김광식 (인하대학교 대학원 조선해양공학과) ;
  • 이장현 (인하대학교 조선해양공학과) ;
  • 황세윤 (인하대학교 대학원 조선해양공학과)
  • Received : 2011.05.09
  • Accepted : 2011.07.25
  • Published : 2011.10.20

Abstract

It is important to assess and improve the warship survivability for the weapon threats which have a critical effect on warship. The survivability of the warship is defined as the capability of a warship to avoid or withstand a man-made hostile environment. The survivability of the warship consists of three categories (Susceptibility, Vulnerability and Recoverability). Firstly, the susceptibility is defined as the inability of a warship to avoid radars, guns, missiles and etc. Secondly, the vulnerability is defined as the inability of a warship to withstand the man-made hostile environment. Finally, the recoverability is defined as the ability of a warship to recover the damaged components and systems. Among them, this paper has described the vulnerability assessment for the hypothetical system which is composed of critical components. Also, the procedure which is suggested to calculate the vulnerable probability of the damaged warship is based on the Vulnerable Area Method.

Keywords

References

  1. Ball, R.E., 1985. The Fundamentals of Aircraft Combat Survivability Analysis and Design. AIAA education series: New York.
  2. Ball, R.E., 2003. The Fundamentals of Aircraft Combat Survivability Analysis and Design-Second Edition. AIAA education series: Virginia.
  3. Ball, R.E. & Calvano, C.N., 1994. Establishing the Fundamentals of a Surface Ship Survivability Design Discipline. Naval Engineers Journal, 106(1), pp.71-74. https://doi.org/10.1111/j.1559-3584.1994.tb02798.x
  4. Cho, Y.J., 2009. A Study on Measuring Procedure and Analysis Technique of Ship Infrared Signature at Sea. Journal of Ocean Engineering and Technology, 23(3), pp.53-58.
  5. Choi, W.S. Lee, H.Y. & Chung, J.H., 2009. A Study on Survivability Requirement of warship. Proceedings of the Annual Autumn Meeting of the Society of Naval Architects of Korea. Mungyeong, Republic of Korea, 29-30 October 2009.
  6. Chung, J.H., 2007. Current Trends in Ship Shock Trial Simulation. Journal of the Architectural Institute of Korea, 51(8), pp.70-72.
  7. Chung, J.H. & Kwon, J.I., 2008. Survivability Analysis of A Naval Ship Using the MOTISS Program(I): Theoretical Background. Proceedings of the Annual Autumn Meeting of the Society of Naval Architects of Korea. Changwon, Republic of Korea, 13-14 November 2008.
  8. Chung, J.H. & Kwon, J.I., 2008. Survivability Analysis of A Naval Ship Using the MOTISS Program(II): A Numerical Example. Proceedings of the Annual Autumn Meeting of the Society of Naval Architects of Korea. Changwon, Republic of Korea, 13-14 November 2008.
  9. Dearden, P., 2001. New Blast Weapon. Journal of the Royal Army Medical Corps, 147, pp.80-86. https://doi.org/10.1136/jramc-147-01-08
  10. Driels, M., 2004. Weaponeering: Conventional weapon System Effectiveness. AIAA education series: Virginia.
  11. Friedman, N., 2006. World Naval Weapon Systems-5th Edition. The U.S. Naval Institute.
  12. JTCG/AS(Joint Technical Coordinating Group on Aircraft Survivability), 2001. Aerospace systems survivability handbook series - Volume 5. Survivability models and simulations. JTCG/AS-01-D007.
  13. Kim, K.H. et al., 2009. A Study on a Dynamic Radar Cross Section Analysis Technique for a Surface Warship. Journal of Ocean Engineering and Technology, 23(6), pp.77-81.
  14. Lim, G.H., 2006. A Study of Vulnerability Analysis for Navel Vessel. Thesis of Master Degree. Daejeon. Chungnam National University.
  15. Park, J.G., 2006. A Study of Establishing the Ship Susceptibility Design for Ship Survivability. Thesis of Master Degree. Daejeon. Chungnam National University.
  16. Yang, P. Song, B. Han, Q. & Ou, B., 2009. A Direct Simulation Method for Calculating Multiple-hit Vulnerability of Aircraft with Overlapping Components. Chinese Journal of Aeronautics, 22(6), pp.612-619. https://doi.org/10.1016/S1000-9361(08)60149-1

Cited by

  1. Simplified vulnerability assessment procedure for a warship based on the vulnerable area approach vol.26, pp.7, 2012, https://doi.org/10.1007/s12206-012-0539-8
  2. Development of a Naval Vessel Compartment Arrangement Application using Differential Evolution Algorithm vol.19, pp.4, 2014, https://doi.org/10.7315/CADCAM.2014.410
  3. A Method for Reliability Analysis of Armored Fighting Vehicle using RBD based on Integrated Hit Probabilities of Crews and Components vol.20, pp.5, 2016, https://doi.org/10.6109/jkiice.2016.20.5.1040