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Hydrodynamic Investigation of A Multi-Module Floating Platform with A Wave Energy Device Array 被引量:2
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作者 ZHAO Xuan-lie WANG Jia +2 位作者 GENG Jing ZHOU Su-lian C.Guedes Soares 《China Ocean Engineering》 CSCD 2024年第6期1034-1046,共13页
This paper presents a hydrodynamic analysis of a hybrid system consisting of a floating platform coupled with an array of oscillating bodies that move along the weather sidewall of the platform.Using the Lagrange mult... This paper presents a hydrodynamic analysis of a hybrid system consisting of a floating platform coupled with an array of oscillating bodies that move along the weather sidewall of the platform.Using the Lagrange multiplier method,the motion equation governing this type of motion characteristic is formulated,and the formula of the extracted wave power is derived.The numerical results demonstrate a significant increase in the hydrodynamic efficiency of oscillating bodies within specific frequency ranges in the presence of the floating platform.The incorporation of proper power take-off damping of the oscillating bodies results in a reduction in the heave motion of the platform,but it may lead to an increase in pitch motion.The analysis of the response behaviour of the system shows that both the heave motion and pitch motion of the platform contribute to the power extraction and relative motion between the buoys and the platform.Parametric investigations are conducted to explore the hydrodynamic interactions between the floating platform and the buoy array.Additionally,the concept of“hydrodynamic synergy”is proposed to describe the synergetic effect of different components of a multi-purpose platform,which is of considerable engineering interest. 展开更多
关键词 hybrid floating system wave energy device array hydrodynamic interactions multi-body system Lagrange multiplier method
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A synthetic autonomous profiling float array in a Lagrangian particle tracking system
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作者 Tianyu Wang Zenghong Liu Yan Du 《Acta Oceanologica Sinica》 CSCD 2024年第12期34-46,共13页
Over the past two decades,numerous countries have actively participated in the International Argo Program,working toward the global“OneArgo”goal.China's Argo program has deployed over 500 autonomous profiling fl... Over the past two decades,numerous countries have actively participated in the International Argo Program,working toward the global“OneArgo”goal.China's Argo program has deployed over 500 autonomous profiling floats in the Indo-Pacific,with 55 Beidou(BD)floats,equipped with the Beidou satellite communication system,currently operational.During the operation of the BD float network,we found that in addition to the limitation of floats battery,the loss may also be caused by communication loss due to the floats escaping from the Beidou-2's short message coverage.In this study,float trajectories are simulated using velocity fields from an eddy-resolved resolution Estimating the Circulation and Climate of the Ocean,PhaseⅡ(ECCO2)model and a Lagrangian particle tracking model programmed to represent the vertical motions of profiling floats.The simulations can help to explore both the representativeness and the predictability of profiling float displacements.By deploying a large number of synthetic floats in the Lagrangian particle tracking system,we construct probability density functions(PDFs)of the simulated-float trajectory among key oceans,for example,a joint region of East Indian-South China Sea-Northwest Pacific Ocean(5°–40°N,70°–140°E),which is generally similar to the location of the present BD float network.These statistics can help to estimate the chance of floats drifting into shallow seas(such as the East China Sea)and out of the coverage of the Beidou satellite communication.With this knowledge changes to the future China's Argo observing system could be made. 展开更多
关键词 Lagrangian particles autonomous profiling float array trajectory simulation probability density functions
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