9. CONCLUSIONS
9.7 Rules Development for Ships
In the design regular wave approach the load combination factors represent the relationship between the dominant (maximized in specific wave conditions) and the lower order loads. It is questionable, however, whether such an approach can approximate the randomness of the sea and ship operations. Developments, such as the Goal Based New Ship Construction Standards by IMO, are intended to define the safety level for ship structure. They are intended to be used to verify whether the classification rules, IMO requirements and administration requirements implemented to an individual ship ensure the defined safety level.
REFERENCES
Aage, C., Cramer, H. and Mains, C. (2004). Test Calculations using a wind criterion. International Maritime Organisation IMO, SLF47/INF.5.
Adegeest., L. J.M., Braathen, A. and Lseth, R.M. (1998). Use of Non-Linear Sea-Loads Simulations in Design of Ships. Proc. 7th Int. Symp. on Practical Design of Ships and other Floating Structures PRADS, 53-58.
Ahmed, T. M., Hudson, D. A. and Temarel, P. (2004). Incorporation of Steady flow effects in linear three – dimensional seakeeping predictions for high speed hulls. Proc. 9th Int. Symp. on Practical Design of Ships and other Floating Structures PRADS, 1, 496-501.
Baarholm, G.S. and Jensen, J.J. (2004). Influence of Whipping on Long-term Vertical Bending Moment. Journal of Ship Research 48:4, 261-272
Baarholm, R., Kristiansen, T., Lie, H. and Herfjord, K. (2005). Experimental investigation of dual riser interaction. Proc. 24th Int. Conf. on Offshore Mechanics and Arctic Engineering OMAE, 67100.
Bacicchi, G., Scarpa, G., Dogliani, M., Sebastiani, L. and Iaccarino, R. (2004). A first principles approach to structural design loads including whipping hydroelastic effects. Proc. 2nd Int. Conf. on Design for Safety, 104-109.
Bai, W., Teng, B. and Qiu, D.H. (2003). Real time simulation of second-order radiation of 3D bodies. Journal of Hydrodynamics 18:4, 489-498.
Barcellona, M., Landrini, M., Greco, M. and Faltinsen, O. (2003). An Experimental Investigation on Bow Water Shipping. Journal of Ship Research 47:4, 327-346.
Battistin, D. and Iafrati, A. (2003). Hydrodynamic loads during water entry of two-dimensional and axisymmetric bodies. Journal of Fluids and Structures, 17, 643–664.
Begovic, E. (2004). Cross Flow Effects in the Vertical Motion Prediction of Slender Hulls. Proc. 9th Int. Symp. on Practical Design of Ships and other Floating Structures PRADS, 1, 198-205.
Belenky, L., Raskin, Y. and Tunik, A. (2005). Limit State Design of Ship Grillages Under Local Loads. International Shipbuilding Progress 52:2,169-182.
Belenky, V. L., Weems, K. M., Lin, W. M. and Paulling, J. R. (2003). Probabilistic Analysis of Roll Parametric Resonance in Head Seas. Proc. 8th Int. Conf. on Stability of Ships and Ocean Vehicles STAB, 325-340.
Berg, A. (1987). Scaling laws and statistical distributions of impact pressures in liquid sloshing. Det Norske Veritas DNV, Report no. 87-2008.
Bertaglia, G., Serra, A. and Franchescutto, A. (2003a). The Intact Rules are changing: Impact on the design of large cruise ships. Proc. RINA Int. Conf. on Passenger and Ship Safety, 45-54.
Bertaglia, G., Serra, A., Franchescutto, A. and Bulian, G. (2003b). Experimental Evaluation of the Parameters for the Weather Criterion. Proc. 8th Int. Conf. on Stability of Ships and Ocean Vehicles STAB, 253-263.
Bertram, V. (2002). Practical Ship Hydrodynamics, Butterworth – Heinemann.
Bertram, V., Caponetto, M. and El Moctar, O. (2003). RANSE simulations for unsteady marine two- phase flows. Proc. RINA Int. Conf. CFD Technology in Ship Hydrodynamics, 83-89.
Bhatta, D.D. and Rahman, M. (2003). On scattering and radiation problem for a cylinder in water of finite depth. International Journal of Engineering Science, 41, 931–967.
Billerbek, H. (2005). SinSee- Beurteilung der Schiffssicherheit in schwerem Seegang (SinSee - On the safety evaluation of ships in rough weather). Status Report. BMBF The German Ministry of Research and Eduction, Rostock.
Blume, P. (1987). Development of new stability criteria for modern dry cargo vessels. Proc. 3rd Int. Symp. on Practical Design of Ships and Mobile Units PRADS, 1, 543-552.
Boin, J. F., Guilbaud, M. and Ba, M. (2003). On the integration of diffraction-radiation with forward speed Green function. Ship Technology Research 50:3, 106-124.
Boote, D., Colaianni, T., Pino, E. and Rizzo, C. (2004). A Procedure for Wave Loads Asessment of fast Trimaran Ships. Proc. 9th Int. Symp. on Practical Design of Ships and other Floating Structures, 1, 261-269.
Bridge, C., Willis, N., Sworn, A. and de Wilde, J. (2005). Development of SHEAR 7 Lift Curves for VIV Analysis and Application to Single Pipe and Bundle Risers. Proc. Offshore Technology Conf. OTC, 17533.
Bruzzone, D. (2003). Applications of a Rankine Source Method to the Evaluation of Motions of High speed Marine vehicles. Int. Marine Design Conf. IMDC, 2, 69-79.
Buchner, B., van Dijk, A. and de Wilde, J. (2001). Numerical multiple-body simulation of side-by-side mooring to an FPSO. Proc. 11th Int. Offshore and Polar Engineering Conf. ISOPE, 1, 343-353. Buckley, W.H. (2005). Extreme waves for ship and offshore structures. Proc. RINA 3rd Int. Conf.
Design and Operation for Abnormal Condition, 7-30.
Bulian, G. and Franchescutto, A. (2004). A Simplified modular Approach for the Prediction of the Roll Motion due to the Combined Action of Wind and Waves. Proc. Institution of Mechanical Engineers IMechE - Journal of Engineering for the Maritime Environment, 218 Part M, 189-212. Bulian, G. and Franchescutto, A. (2005). A modular methodology for the estimation of the ship roll motion under the action of stochastic wind and waves. International Maritime Organisation IMO - Sub- Committee on stability and load lines and on fishing vessels, SLF 48/4/6.
Bunnik, T. and Huijsmans, R. (2005). Validation of Wave Propagation in Numerical Wave Tanks. Proc. 24th Int. Conf. on Offshore Mechanics and Arctic Engineering OMAE, 67221.
Cariou, A. and Jancart, F. (2003). Influence of modelling on calculated sea loads on ships. Marine Structures 16:2, 149–173.
Chatjigeorgiou, I.K. and Mavrakos, S.A. (2001). Dynamic Behavior of a Marine Cable Under Snap- Loading Conditions. Journal of Ship Technology Research, Schiffstechnik, 48, 171-180.
Chen, X. B. (2002). Role of surface tension in modeling ship waves. Proc. 17th Int. Workshop on Water Waves and Floating Bodies IWWWFB, Cambridge UK.
Chen, X.B. (2004). Hydrodynamics in offshore and naval applications - Part I. Proc. 6th Int. Conf. on HydroDynamics ICHD, 1-28.
Chen, X.B. (2005a). Wave component of free-surface Green function. Proc. Int. Conf. on Computational and Experimental Engineering and Sciences ICCES, India.
Chen, X.B. (2005b). Hydrodynamics analysis for offshore LNG terminals. 2nd Int. Workshop on Applied Offshore Hydrodynamics, 1408.
Chen, X.B. and Duan, W.Y. (2003). Capillary-gravity waves due to impulsive disturbance. Proc. 18th Int. Workshop on Water Waves and Floating Bodies IWWWFB, Le Croisic France.
Chen, X.B. and Malenica, S. (1996). Uniformly valid solution of the wave-current-body interaction problem. Proc. 11th Int. Workshop on Water Waves and Floating Bodies IWWWFB, Germany. Chen, X.B., Malenica, S. and Orozco, J.M. (2005). Evaluation of wave and current loads on FPSOs.
Proc. Offshore Technology Congress OTC, 17180.
Chezhian, M. and Faltinsen, O. M. (2004). Three-dimensional analysis of slamming. Proc. 6th Int. Conf. on Hydrodynamics, 357-364, Australia.
Ciappi, E., Dessi, D. and Mariani, R. (2003). Slamming and whipping response analysis of a fast monohull via segmented model tests. Proc. 3rd Int. Conf. on Hydroelasticity in Marine Technology, 143-155.
Clark, P.J., Malenica S. and Molin B. (1993). An heuristic approach to wave drift damping. Applied Ocean Research 15:1, 53-55.
Clauss, G., Schmittner, C. and Stutz, K. (2003). Freak wave impact on semi-submersibles - time- domain analysis of motions and forces. Proc. 13th Int. Offshore and Polar Engineering Conference ISOPE, 3, 447-454.
Clauss, G., Schmittner, C., Hennig, J., Guedes Soares, C., Fonseca, N. and Pascoal, R. (2004). Bending moments of an FPSO in rogue waves. Proc. 23rd Int. Conf. on Offshore Mechanics and Arctic Engineering OMAE, 51504.
Clauss, G., Stutz, K. and Schmittner, C. (2005). Rogue wave impact on offshore structures. Proc. Offshore Technology Conf. OTC, 16180.
Clauss, G.F. and Hennig, J. (2003). Deterministic Analysis of Extreme Roll Motions Using Tailored Wave Sequences. Proc. 8th Int. Conf. on Stability of Ships and Ocean Vehicles STAB, 441-455. Colagrossi, A. and Landrini, M. (2003). Numerical simulation of interfacial flows by smoothed particle
hydrodynamics. Journal of Computational Physics, 191, 448–475.
Couty, N. and Besnier, F. (2004). Transient response of a hull girder submitted to transverse impulsive loads. Proc. 9th Int. Symp. on Practical Design of Ships and other Floating Structures PRADS, 1, 375-383.
Cramer, H. and Krüger, S. (2001). Numerical Capsizing Simulations and Consequences for Ship Design. Proc. German Society of Naval Architects, 95, 72-78.
Cramer, H., Reichert, C., Hessner, K., Hennig, J. and Clauss, G. F. (2004). Seakeeping Simulations and Seaway Models and Parameters Supporting Ship Design and Operation. Proc. 9th Int. Symp. on Practical Design of Ships and other Floating Structures PRADS, 2,1035-1042.
Crocker, G., English, J., McKenna, R. and Gagnon, R. (2004). Evaluation of bergy bit populations on the Grand Banks. Cold Region Science and Technology, 38, 239-250.
Cumming, D. (2005). Practical Considerations Related to Carrying Out Seakeeping Trials on Small Fishing Vessels. Proc. 7th Marine Hydromechanics and Structures Conf., Halifax, Canada.
Cusano, G., Monti, S. and Velasco, A. (2003). Full scale and model test investigation of slamming effects on fast monohull vessels. Proc. 3rd Int. Conf. on Hydroelasticity in Marine Technology, 163-173.
Daley, C. and Hermanski, G. (2005).Ship Frame Research Program – Investigation of Finite Element Analysis Boundary Conditions. Institute for Ocean Technology NRC Canada, Technical Report TR-2005-05.
Daley, C., Hermanski, G., Hussein, A., Pavic, M., Kozarski, N., Mallard, S. and Bursey, D. (2005). Ship Frame and Grillage Structural Experiments. Proc. 7th Canadian Marine Hydrodynamic and Structure Conf , Halifax Canada.
de Wilde, J.J. (2005). Laboratory Tests for VIV Prediction of Deepwater Risers. Int. Symp. on Technology of Ultra Deep Ocean Engineering, Sessio, II-3, Japan.
de Wilde, J. J. and Huijsmans, R. H. M. (2004). Laboratory Investigation of Long Riser VIV Response. Proc. 14th Int. Offshore and Polar Engineering Conference ISOPE, 3, 511-516.
de Wilde, J.J., Huijsmans, R.H.M. and Triantafyllou, M.S. (2003). Experimental Investigation of the Sensitivity to In-line Motions and Magnus-like Lift Production on Vortex-Induced Vibrations. Proc. 13th Int. Offshore and Polar Engineering Conference ISOPE, 3, 593-598.
Dessi, D., Mariani, R., Coppottelli, G. and Rimondi, M. (2005). Experimental identification of wet bending modes with segmented model tests. Proc. 8th Int. Conf. on Fast Sea Transportation FAST, St. Petersburg Russia.
Dietz, S.J., Friis-Hansen, P. and Jensen, J.J. (2004). Design Wave Episodes for Extreme Values Ship Responses. Proc. 9th Int. Symp. on Practical Design of Ships and other Floating Structures PRADS, 1, 286-293.
DNV. (2005). Distribution of Mean wave Directions for H>6. Det Norske Veritas, Internal Report. Du, S.X., Hudson, D.A., Price, W.G., Temarel, P., Chen, R.Z. and Wu, Y.S. (2004). Wavelet analysis
of extreme wave load experiments with a flexible ship model. Proc. 9th Int. Symp. on Practical Design of Ships and other Floating Structures PRADS, 1, 301-309.
Eefsen, T., van Walree, F., Peri, D., van Terwisga, P., Kristensen, H.O., Dattola, R. and Visser, M. (2004). Development of frigate designs with good seakeeping characteristics. Proc. 9th Int. Symp. on Practical Design of Ships and other Floating Structures PRADS, 2, 612-620.
Engle, A. and Lewis, R. (2003). A comparison of hydrodynamic impacts prediction methods with two dimensional drop test data. Marine Structures 16:2, 175–182.
Faltinsen, O. M. (1990). Sea Loads on Ships and Offshore Structures, Cambridge Press.
Faltinsen, O.M., Ge, C. and Moan, T. (2002). Slamming on wetdeck – local and global analysis. Proc.6th Symp. on High Speed Marine Vehicles HSMV, I1-13.
Faltinsen, O.M., Landrini, M. and Greco, M. (2004). Slamming in marine applications. Journal of Engineering Mathematics, 48, 187-217.
Fang, M.C. and Chen, G.R. (2002). On three-dimensional solutions of drift forces and moments between two ships in waves. Journal of Ship Research 46:4, 280-289.
Ferreira, M.D. and Lee, C.H. (1994). Computation of second-order mean wave forces and moments in multibody interaction. Proc. 7th Int. Conf. on Behaviour of Offshore Structures, 2, 303-313.. Folso, L. and Rizzuto, E. (2003). Equivalent Waves for Sea Loads on Ship Structures. Proc. 23rd Int.
Conf. on Offshore Mechanics and Arctic Engineering OMAE, 37439.
Fonseca, N. and Guedes Soares, C. (2004a). Experimental Investigation of the Nonlinear Effects on the Statistics of Vertical Motions and Loads of a Containership in Irregular Waves. Journal of Ship Research 48:2, 148-167.
Fonseca, N. and Guedes Soares, C. (2004b). Green Water Effects on the Bow of a Containership Advancing in Regular and Irregular Waves. Proc. 9th Int. Symp. on Practical Design of Ships and other Floating Structures PRADS, 1, 412-419.
Fonseca, N., Guedes Soares, C. and Pascoal, R. (2005). Vertical bending moments induced by a set of abnormal waves on a containership, Proc. RINA 3rd Int. Conf. Design and Operation for Abnormal Conditions, 65-73.
France, W.N., Levadou, M., Treakle, T.W., Paulling, J.R., Michel, R.K. and Moore, C. (2003). An investigation of head-sea parametric rolling and its influence on container lashing systems. Marine Technology 40:1,1-19.
Frederking, R. (2003). Determination of Local Ice Pressure from Ship Transits in Ice. Proc.13th Int. Offshore and Polar Engineering Conf. ISOPE, 1, 484-488..
Friis-Hansen, P. and Nielsen, L.P. (1995). On the New Wave Model for the Kinematics of Large Ocean Waves. Proc. 14th Int. Conf. on Offshore Mechanics and Arctic Engineering OMAE, 1A, 17-24. Gagnon, R. (2004). Analysis of laboratory growler impact tests. Cold Region Science and Technology,
Gaillarde, G., Ledoux, A. and Lynch, M. (2004). Coupling between liquefied gas and vessel’s motions for partially filled tanks : Effect on seakeeping. Proc. RINA Conf. on Design & Operation of Gas Carriers, 33-37.
Garme, K. and Rosen, A. (2003). Time Domain Simulations and Full Scale Trials on Planning Craft in Waves. International Shipbuilding Progress 50:3, 177-208.
Garrett, D.L. (2005). Coupled analysis of floating production systems. Ocean Engineering 32:7, 802- 816.
Gavory, T. (2005). Innovative tools open up new prospects for liquid motion model tests. Proc. GASTECH, Spain.
Ge, C., Faltinsen, O.M. and Moan, T. (2005). Global hydroelastic response of catamarans due to wetdeck slamming. Journal of Ship Research 49:1, 24-43.
Gielen, A.W.J., Vredevelt, A.W. and Janssen, G.T.M. (2004). Response of stiffened plate panels to hydrodynamic impact – Theory and experiments. Proc. 9th Int. Symp. on Practical Design of Ships and other Floating Structures PRADS, 1, 383-389.
Gomez-Gesteira, M., Cerqueiro, D., Crespo, C. and Dalrymple, R. (2005). Green water overtopping analyzed with a SPH model. Ocean Engineering 32:2, 223-238.
Gou, Y., Teng, B. and Ning, D.Z. (2004). Interaction effects between wave and two connected floating bodies. Engineering Science 6:7, 75-80.
Grigoriopoulos, G.J., Harries, S., Damala, D., Birk, L. and Heimann, J. (2003). Seakeeping assessment for high speed monohulls- A comparative study. Int. Marine Design Conf. IMDC, 1, 137-148. Guedes Soares, C., Fonseca, N. and Pascoal, R. (2004). Comparison of present wave induced load
criteria with loads induced by an abnormal wave. Rogue Waves Symp., Brest France.
Guilbaud, M., Boin, J. F. and Ba, M. (2003). Linearised free surface flow calculations by panel method using the diffraction-radiation with forward speed Green function. Proc. RINA Int. Conf. on Computational Fluid Dynamics Technology in Ship Hydrodynamics, 101-115.
Hamilton, J. and Kitney, N. (2004). An alternative mooring line damping methodology for deep water. Proc. 14th Int. Offshore and Polar Engineering Conference ISOPE, 2, 156-163.
Han, S., Park, S.G., Jun, S.H. and Heo, J.O. (2004). Comparison study of spectral fatigue analysis for an LNG carrier. Proc. 9th Int. Symp. on Practical Design of Ships and other Floating Structures PRADS, 2, 840-848.
He, W.Z. (2004). Study of the Stokes wave second order diffraction around the vertical circular cylinder. Engineering Mechanics, 6, 177-182.
Hennig, J.(2005). Generation and Analysis of Harsh Wave Environments. Proc. German Society of Naval Architects, 99 .
Hennig, J., Brink, K.E. and Kuehnlein, W.L. (2003). Innovative Deterministic Seakeeping Test procedures. Proc. 8th Int. Conf. on Stability of Ships and Ocean Vehicles STAB, 457-465.
Herfjord, K. and Holmas, T. (2005). Deepwater riser interaction. Computational method and validation. Proc. 24th Int. Conf. on Offshore Mechanics and Arctic Engineering OMAE, 67156.
Hermundstad, O.A., Moan, T. and Mørch, H.J.B. (2004). Motions and slamming loads on a Ro-Ro ship. Proc. 9th Int. Symp. on Practical Design of Ships and Other Floating Structures, 1, 487-495. Hirdaris, S.E., Price, W.G. and Temarel, P. (2003). Two- and three-dimensional hydroelastic modelling
of a bulker in waves. Marine Structures 16:8, 627-658.
Hochbaum, A.C. and Vogt, M. (2002). Towards the Simulation of Seakeeping and Manoeuvring Based on the Computation of the Free Surface Viscous Ship Flow. Proc. 24th Symp. on Naval Hydrodynamics, Fukuoka Japan.
Hong, S.Y., Kim, J.H., Cho, S.K., Choi, Y.R. and Kim, Y.S. (2005). Numerical and experimental study on hydrodynamic interaction of side-by-side moored multiple vessels. Ocean Engineering 32:7, 783-801.
Hu, C. (2004). 3-D Simulations of Freely Moving Floating Body by Cartesian Grid Method. Reports of the Research Institute of Applied Mechanics, Kyushu University, 15 (ME-S7), 6-11.
Hu, C. and Kashiwagi, M. (2004). A CIP Method for Numerical Simulations of Violent Free Surface Flows. Journal of Marine Science and Technology 9:4, 143-157.
Huijsman, R. and van Groesen, E. (2004). Coupling Freak Waves Events with Green Water Simulation. Proc. 14th Int. Offshore and Polar Engineering Conference ISOPE, 1, 366-373.
Huijsmans, R.H.M., Pinkster, J.A. and de Wilde, J. (2001). Diffraction and radiation of waves around side-by-side moored vessels. Proc.11th Int. Offshore and Polar Engineering Conf. ISOPE, 1, 406- 412.
Huther, M., Parmentier, G. and Maherault, S. (2004). Uncertainties in ship structures cumulative fatigue calculations. Proc. 9th Int. Symp. on Practical Design of Ships and other Floating Structures PRADS, 2, 849-854.
IACS (2003). Unified Requirements for Polar Ships I2, Structural Requirements for Polar Ships (Draft). International Association of Classification Societies.
IACS. (2004a). Joint Tanker Project : Common Structural Rules for Double Hull Oil Tankers - Draft for Comments. International Association of Classification Societies.
IACS. (2004b). Joint Bulker Project : Common Structural Rules for Bulk Carriers - Draft for Comments. International Association of Classification Societies.
Iijima, K., Shigemi, T., Miyake, R. and Kumano, A. (2004). A practical method for torsional strength assessment of container ship structures. Marine Structures 17:5, 355-384.
Imas, L. (2004). Evaluation of the SPH method for hydrodynamics; single and multiphase flows. Proc. 25th Int. Symp. on Naval Hydrodynamics, Canada.
IMO. (2004a). Report of Maritime Safety Committee on its 78th session - item 6. International Maritime Organisation IMO, MSC 78/26.
IMO. (2004b). Report of Maritime Safety Committee on its 79th session - item 6. International Maritime Organisation IMO, MSC 79/26.
IMO. (2004c). Goal-Based New Ship Construction Standards : Report of the Working Group on Goal- Based Standards of MSC 79. International Maritime Organisation IMO, MSC 80/6.
Inoue, Y. and Kamruzzaman, M. (2004). A numerical calculation of hydrodynamic forces on a seagoing ship by 3-D source technique with forward speed. Proc. 23rd Int. Conf. on Offshore Mechanics and Arctic Engineering OMAE, 51565.
Inoue, Y. and Zakaria, N.M.G. (2004). A design aspect of relative wave heights of ships in rough seas by 3-D source technique with forward speed. Proc. 9th Int. Symp. on Practical Design of Ships and other Floating Structures PRADS, 1, 504-511.
Inoue, Y. and Zakaria, N.M.G. (2005). A design aspect of relative wave heights of ships in abnormal sea by 3D source technique with forward speed. Proc. RINA 3rd Int. Conf. Design and Operation for Abnormal Conditions, 55-64.
Irani, M. and Finn, L. (2004). Model testing for vortex shedding induced motions of SPAR platforms. Proc. 23rd Int. Conf. on Offshore Mechanics and Arctic Engineering OMAE, 51315.
Iskandar, B.H. and Umeda, N. (2001). Some Examination of Capsizing Probability Calculation for an