Fig. 1 Features of the vessel (a)before and (b)after the accident
Fig. 2 Procedure of numerical analysis for the accident vessel
Fig. 3 In the past three years(2012-2014), the marine condition of Iduk-seo (a)wind velocity pdf data and (b)significant wave height pdf data
Fig. 4 The incident angle of the waves and wind according to the location of the vessel (a)at the initial time and (b)at the accident time
Fig. 5 Hydrodynamic analysis for the hull of the accident vessel through HydroSTAR ver. 7.3
Fig. 6 RAO of roll motion of the DCM vessel in full-load condition
Fig. 7 RAO of acceleration of the DCM vessel for longitudinal direction in full load condition at 83 m height
Fig. 8 Boundary and loading conditions for the local-structural analysis
Fig. 9 Structural analysis results with von-Mises stresses
Table 1 Main particulars of the accident vessel for hydrodynamic analysis
Table 2 Comparison of G0M of the accident vessel between KST and HydroSTAR
Table 3 Acceleration and pressure of longitudinal direction applied on the leader induced by waves in an accident case under full load condition
Table 4 Total weight of the leader parts of the pile driving boat
Table 5 Discretization of wind pressure with heights
References
- Brebbia, C. A. and Walker, S. (2013), Dynamic analysis of offshore structures, Newnes-Butterworths Press, pp. 1-327.
- Kim, E. S. and Kim, J. H. (2014), "Forensic Engineering Study on Structure Stability Evaluation of Deep Cement Mixing Vessel using ADINA Software", Transactions of the Korean Society of Mechanical Engineers A, 38.11: pp. 1283-1290. https://doi.org/10.3795/KSME-A.2014.38.11.1283
- Kim, S. W. and Kim, D. H. (2008), "A study on applying of the ITC-Hulls & ISM Code for the Accident of the Foundering Ship", Journal of Korean Navigation and Port Research, 32(3), pp. 229-235. https://doi.org/10.5394/KINPR.2008.32.3.229
- Korean Register of Shipping(2017), "Rules and Guidance for the Classification of Mobile Offshore Units", p. 92.
- Korean Register of Shipping(2018a), "Rules and Guidance for the Classification of Steel Ships", p. 244.
- Korean Register of Shipping(2018b), "Rules for the Classification of Steel Barges", p. 84.
- Korean Ship Safety Technology Authority (2013), "L 69mgeub hangman-gongsayong hangtaseon [Seok-Jung 36ho] domyeon-gamli", p. 54.
- Lee, J. S., Jung, H. S., Oh, J. H. and Lee, S. G. (2017), "A Study on Flooding.Sinking Simulation for Cause Analysis of No. 501 Oryong Sinking Accident", Journal of Korean Navigation and Port Reserch, 41(6), pp. 451-466.
- Lee, Y. C., Nam, D. and Lee, S. I. (2011), "A study on the Legal Responsibility of Ship Survey", Maritime Law Review, 23(2), pp. 25-53.