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作 者:Zhang Jiantao Wu Song Shu Chang Li Chaodong
机构地区:[1]School of Mechatronic Engineering and Automation,Shanghai University,Shanghai 200072,P.R.China
出 处:《Transactions of Nanjing University of Aeronautics and Astronautics》2017年第1期9-14,共6页南京航空航天大学学报(英文版)
基 金:supported by the National Natural Science Foundations of China(Nos.51305248,51577112);Shanghai Natural Science Foundation of China(No.13ZR1416900);the Training Project for Young Teachers in Shanghai Colleges and Universities(No.ZZSD13051)
摘 要:An electroaeroelastic model for wind energy harvesting using piezoelectric generators is presented.The flow field is mapped in detail.The force which the fluid flow exerts on the generator is formulated.The output voltage levels generated from the mechanical strain within the piezoelectric elements are determined.An analytical model is developed with consideration of the interactions between the fluid,solid and electric.Various analytical results are obtained,such as flow velocity contour and pressure contour for the flow,moving trajectories,stress contour and output voltage of the harvester.A prototype is fabricated and tested.The simulation result is close to the experimental result.The model developed in this paper can predict the performance and behavior of different energy harvesters.And it also can be used as a design tool for optimizing the performance of the harvester.An electroaeroelastic model for wind energy harvesting using piezoelectric generators is presented.The flow field is mapped in detail.The force which the fluid flow exerts on the generator is formulated.The output voltage levels generated from the mechanical strain within the piezoelectric elements are determined.An analytical model is developed with consideration of the interactions between the fluid,solid and electric.Various analytical results are obtained,such as flow velocity contour and pressure contour for the flow,moving trajectories,stress contour and output voltage of the harvester.A prototype is fabricated and tested.The simulation result is close to the experimental result.The model developed in this paper can predict the performance and behavior of different energy harvesters.And it also can be used as a design tool for optimizing the performance of the harvester.
关 键 词:WIND ENERGY HARVESTER PIEZOELECTRIC aeroelasticity ELECTROMECHANICS
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