ORCID Profile
0000-0003-2081-7547
Current Organisation
Kyushu University
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Publisher: Elsevier BV
Date: 09-2004
Publisher: Elsevier BV
Date: 04-2010
Publisher: ASMEDC
Date: 2008
Abstract: This paper presents the hydroelastic analysis of the floating performance stage that was constructed at the Marina Bay. The challenge posed in the hydroelastic analysis was the modeling of an equivalent plate that captures the dynamic flexural behaviour of the floating stage. By using a plate model with plate strips along the connecting lines of the floating stage, their Young’s moduli and Poisson’s ratios are adjusted so that the free vibration frequencies and mode shapes of the equivalent plate model match the results of the rigorous finite element model of the floating stage. The analysis shows that the hydroelastic response of the floating structure is relatively mild due to the calm waters in the Marina Bay when compared to the static bending response from imposed loads.
Publisher: ASME International
Date: 05-2010
DOI: 10.1115/1.4001690
Abstract: Presented herein is a literature review on the design and performance of antimotion structures/devices such as breakwaters, submerged plates, oscillating water column breakwaters, air-cushion, auxiliary attachments, and mechanical joints for mitigating the hydroelastic response of very large floating structures (VLFS) under wave action. Shapes of VLFS that could minimize the hydrodynamic response of the structure are also discussed. The analytical, numerical, and experimental methods used in studying the effect of these antimotion structures/devices toward reducing the hydroelastic responses of VLFS are also reviewed.
Publisher: Elsevier BV
Date: 07-2009
Publisher: Elsevier BV
Date: 06-2018
Publisher: Elsevier BV
Date: 12-2006
Publisher: Informa UK Limited
Date: 05-2008
Publisher: Informa UK Limited
Date: 11-2010
Publisher: Elsevier BV
Date: 09-2001
Publisher: Elsevier BV
Date: 2004
Publisher: Elsevier BV
Date: 02-2006
Publisher: Elsevier BV
Date: 10-2008
No related grants have been discovered for Tomoaki Utsunomiya.