Author:
Sulisetyono Aries,Nurfadhi Ridhlo,Hadiwidodo Yoyok
Publisher
Centre for Evaluation in Education and Science (CEON/CEES)
Subject
Mechanical Engineering,General Engineering,Safety, Risk, Reliability and Quality,Transportation,Renewable Energy, Sustainability and the Environment,Civil and Structural Engineering
Reference11 articles.
1. Park, M.J., Choi, B.K., and Kim, Y.I. (2017). On the efficient time domain stress analysis for the rolling chock of an independent type LNG tank targeting fatigue damage evaluation. Marine Structures, vol.53, pp.32-51. https://www.sciencedirect.com/science/ article/pii/S0951833916301605;
2. Lina, Y., Yea, C., Yua, Y.Y., and Bia, S.W., (2018). An approach to estimating the boil-off rate of LNG in type C independent tank for floating storage and regasification unit under different filling ratio. Applied Thermal Engineering, Vol.135, pp. 463-471. https://www.sciencedirect.com/science/article/abs/ pii/S1359431117371818;
3. Hu, Z.Q., Wang, S.Y., Chen, G., Chai, S.H., and Jind, Y.T., (2017). The effects of LNG-tank sloshing on the global motions of FLNG system. International Journal of Naval Architecture and Ocean Engineering, Vol.9, pp. 114-125. https://www.sciencedirect.com/ science/article/pii/S2092678216306148;
4. De Jouette, C., Le Gouez, J.M., Put, O., and Rigaud, S. (1996). Volume of Fluid Method (VOF) Applied to Non-Linear Wave Problem on Body Fitted Grids. International Workshop and Water Waves and Floating Body 11, Hamburg, Germany, March 17-20.;
5. Sinaga, L.T.P., Utama, I.K.A.P., and Sulisetyono, A., (2014). Experimental and numerical of sloshing effect on heave and pitch Motions of FLNG vessel, Applied Mechanics and Materials, Vol.664, pp.153-157. https://www.scientific.net/AMM.664.153;
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