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      Suppression of hydrodynamic sloshing in liquefied natural gas tank with floating baffle: Experimental and numerical studies

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          Abstract

          A fixed anti-sloshing mechanism such as baffles which modifies the tank structure may lead to increment of the maintenance cost. This paper proposes a floating baffle, and reviews its investigation on the sloshing behaviour in a membrane-type tank model under unidirectional excitation with 30% and 50% of filling ratio. An LNG tank was numerically simulated in OpenFOAM under regular sinusoidal motion with an amplitude of 3 cm and excitation frequency set to the natural frequency at 1.1 seconds. Impulsive pressure on the tank wall was obtained, and then benchmarked with the experimental results from the pressure sensors. The simulation and experiment results showed an acceptable agreement with a root mean squared error of less than 10%. The findings are expected to become a significant reference for safer sea transportations such as conventional LNG vessels.

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          Guidance-Error-Based Robust Fuzzy Adaptive Control for Bottom Following of a Flight-Style AUV With Saturated Actuator Dynamics

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            Experimental study on vertical baffles of different configurations in suppressing sloshing pressure

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              Cargo load shift and its influence on tank vehicle dynamics under braking and turning

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                Author and article information

                Journal
                IOP Conference Series: Earth and Environmental Science
                IOP Conf. Ser.: Earth Environ. Sci.
                IOP Publishing
                1755-1307
                1755-1315
                March 01 2020
                March 01 2020
                : 463
                : 1
                : 012111
                Article
                10.1088/1755-1315/463/1/012111
                a356ad9f-41dc-4e2c-b150-976409f57f31
                © 2020

                http://creativecommons.org/licenses/by/3.0/

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