CrossRef Text and Data Mining
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Experimental Study of Motion Behavior of Side-by-Side Moored Two Floating Bodies Including Sloshing in Head Sea
J. Ocean Eng. Technol.. 2012;26(6):46-52.

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Reliability based approach for offloading operation related to motion of two side-by-side moored LNG carriers
Applied Ocean Research. 2015;51:381-396   Crossref logo
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Wave drift forces on two floating bodies arranged side by side
Journal of Marine Science and Application. 2011;10(4):394-398   Crossref logo
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Numerical and experimental study on hydrodynamic interaction of side-by-side moored multiple vessels
Ocean Engineering. 2005;32(7):783-801   Crossref logo
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Study of fluid resonance between two side-by-side floating barges
Journal of Hydrodynamics. 2016;28(5):767-777   Crossref logo
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Time domain simulation of side-by-side floating bodies using a 3D numerical wave tank approach
Applied Ocean Research. 2016;58:189-217   Crossref logo
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Side-to-side head movements to obtain motion depth cues:
Behavioural Processes. 1998;43(1):71-77   Crossref logo
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Comparative numerical study of repulsive drift forces and gap resonances between two vessels floating side-by-side in proximity in head seas using a discontinuous HOBEM and a constant BEM with boundary matching formulation
Ocean Engineering. 2013;72:331-343   Crossref logo
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Sloshing Effects on FLNG and LNGC Side-by-Side Offloading
Volume 1: Offshore Technology. 2021;   Crossref logo
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Interaction of two axisymmetric bodies falling side by side at moderate Reynolds numbers
Journal of Fluid Mechanics. 2014;741:   Crossref logo

Numerical study of the coupled motion responses in waves of side-by-side LNG floating systems
Applied Ocean Research. 2015;51:350-366   Crossref logo
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