References
- American Bureau of Shipping, 2014. Strength Assessment of Membrane-type LNG Containment Systems Under Sloshing Loads (ABS Guidance Notes).
- Bureau Veritas, 2011. Strength Assessment of LNG Membrane Tanks Under Sloshing Loads (BV Guideline Note).
- Det Norske Veritas, 2014. Sloshing Analysis of LNG Membrane Tanks. DNV Classification Notes No.30.9.
- Faltinsen, O.M., Timokha, A.N., 2009. Sloshing. Cambridge University Press, Cambrige, UK.
- Gavory, T., de Seze, P.E., 2009. Sloshing in membrane LNG carriers and its consequences from a designer's perspective. In: 19th ISOPE Conference. Osaka, Japan, pp. 13-20.
- Gervaise, E., de Sèze, P.E., Maillard, S., 2009. Reliability-based methodology for sloshing assessment of membrane LNG vessels. In: 19th ISOPE Conference. Osaka, Japan, pp. 183-191.
- Hwang, Y.S., Jung, J.H., Kim, D.W., Ryu, M.C., 2008. An experimental study and numerical simulation on sloshing impact pressures with two identically shaped rectangular 2-Dimensional model tanks with different sizes. In: 13th ISOPE Conference. Vancouver, Canada, pp. 184-190.
- Kim, Y., 2002. A numerical study on sloshing flows coupled with ship motion - the anti-rolling tank problem. J. Ship Res. 46 (1), 56-62.
- Kim, Y., 2003. Artificial damping in water wave problems I : constant damping. Int. J. Offshore Polar Eng. 13 (2), 88-93.
- Kim, Y., 2007. Experimental and numerical analyses of sloshing flow. J. Eng. Math. 58, 191-210. https://doi.org/10.1007/s10665-006-9124-4
- Kim, Y., Lee, Y.B., Kim, Y.S., Lee, J.M., 2006. Sensitivity study on computational parameters for prediction of slosh-induced impact pressure. Int. J. Offshore Polar Eng. 16 (2), 104-111.
- Kim, Y., Kim, S.Y., Ahn, Y., Kim, K.H., Jeon, S.E., Suh, Y.S., Park, J.J., Hwangbo, S.M., 2013. Model-scale sloshing tests for an anti-sloshing blanket system. Int. J. Offshore Polar Eng. 23 (4), 254-262.
- Kuo, J.F., Campbell, R.B., Ding, Z., Hoie, S.M., Rinehart, A.J., SandstrOm, R.E., Yung, T.W., Greer, M.N., Danaczko, M.A., 2009. LNG tank sloshing assessment methodology - the new generation. In: 19th ISOPE Conference, Osaka, Japan, pp. 1-12.
- Lloyds Register, 2009. Sloshing Assessment Guidance Document for Membrane Tank LNG Operations (LR Guidance Notes).
- Maillard, S., Brosset, L., 2009. Influence of density ratios between liquid and gas on sloshing model test results. In: 19th Int. Offshore and Polar Eng. Conf., Osaka, Japan. ISOPE.
- Malenica, S., Korobkin, A.A., Ten, I., Gazzola, T., Mravak, Z., De-Lauzon, J., Scolan, Y.M., 2009. Combined semi-analytical and finite element approach for hydro structure interactions during sloshing impacts - sloshel project. In: 19th ISOPE Conference. Osaka, Japan, pp. 143-152.
- Pastoor, W., Ostvold, T.K., Byklum, E., Valsgard, S., 2005. Sloshing load and response in LNG carriers for new designs, new operations and new trades. In: 21st GASTECH Conference. Bilbao, Spain.
- Rognebakke, O., Opedal, J.A., Ostvold, T.K., 2009. Sloshing impact design load assessment. In: 19th ISOPE Conference. Osaka, Japan, pp. 252-260.
- Ryu, M.C., Jung, J.H., Jeon, S.S., Hwang, Y.S., Han, S.K., Kim, Y.S., Cho, T.I., Kwon, S.H., 2009a. Reference load for a conventional 138K cbm LNG carrier in a comparative approach. In: OMAE Conference.
- Ryu, M.C., Hwang, Y.S., Jung, J.H., Jeon, S.S., Kim, Y.S., Lee, J.H., Lee, Y.M., 2009b. Sloshing load assessment for LNG offshore units with a two-row tank arrangement. In: 19th Int. Offshore and Polar Eng. Conf. Osaka, Japan, pp. 284-294.
- Ryu, M.C., Jung, J.H., Jeon, S.S., Hwang, Y.S., Han, S.K., Kim, Y.S., Cho, T.I., Kwon, S.H., 2009c. Reference load for a 138K cbm LNG carrier in a comparative approach. In: ASME 28th Int. Conference on Ocean. Offshore and Arctic Engineering, Honolulu, Hawaii, pp. 99-110.
- Zhang, C., 2015. Analysis of liquid sloshing in LNG carrier with wedgeshaped tanks. Ocean. Eng. 105, 304-317. https://doi.org/10.1016/j.oceaneng.2015.06.044
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