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When a liquid cargo tank is partially filled with fluid, internal impact loads can be occurred from the vessel's motions. In this study, liquid sloshing problems with a thin top layer of particles with a lighter density than water and the coupling effects of the liquid-sloshing/vessel-motion we...

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Veröffentlicht in:Han-guk haeyang gonghak hoeji (Online) 2012, 26(4), 107, pp.50-56
Hauptverfasser: 남정우(Jung-Woo Nam), 김경성(Kyung-Sung Kim), 황성철(Sung-Chul Hwan), 허재경(Jae-Kyung Heo), 박종천(Jong-Chun Park), Moo-Hyun Kim
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Zusammenfassung:When a liquid cargo tank is partially filled with fluid, internal impact loads can be occurred from the vessel's motions. In this study, liquid sloshing problems with a thin top layer of particles with a lighter density than water and the coupling effects of the liquid-sloshing/vessel-motion were investigated in order to reduce the sloshing-induced impact loads. The PNU-MPS (Pusan-National-University-modified Moving Particle Simulation) method for solving the liquid motion inside a tank and the CHARM3D BEM (Boundary Element Method) based time-domain ship motion analysis program for vessel-motion simulation were coupled. From the simulation results, we could see that the floaters seemed to be quite effective at reducing the sloshing impact loads in the case of tank-only sloshing problems, but not as much for the coupling problem with vessel motion.
ISSN:1225-0767
2287-6715