Abstract The time asymmetric pitching effects on the energy extraction performance of a semi-active flapping wing power generator
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The time asymmetric pitching effects on the energy extraction performance of a semi-active flapping wing power generator

机译:关于半主动扑翼发电机的能量提取性能的时间不对称俯仰效应

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Abstract Inspired from the bird and insect’s flight in nature, the time asymmetric pitching motion is proposed for the semi-active flapping wing power generator instead of conventional time symmetric pitching motion to seek better energy extraction performance. The NACA0012 wing, with prescribed pitching motion, is employed to represent as a power generator, where the vertical hydrodynamic force activates its heaving motion. A novel numerical coupling model is developed to simulate the interaction between the fluid and the semi-active power generator, and the effects of time asymmetric pitching on the energy extraction performance of the generator is analyzed. It is found that the time asymmetric pitching motion has a noticeable effect on the energy extraction performance of the generator, as it affects the instantaneous energy coefficient, energy efficiency and the flow structures. It is also concluded that with an optimal time asymmetric pitching motion, the maximal efficiency increases as high as 17% over the time symmetric pitching power generator. Highlights A novel numerical coupling model for a semi-active flapping wing power generator is developed. Time asymmetric pitching motion power generator have better energy extraction performance than the conventional time symmetric one. Stronger vortices are observed around wing surface of the power generator with appropriate time asymmetric pitching. ]]>
机译:<![cdata [ Abstract 激发了来自鸟类和昆虫的飞行本质上,提出了时间不对称的俯仰运动,用于半主动扑翼发电机而不是传统时间对称投球运动以寻求更好的能量提取性能。具有规定的俯仰运动的NaCA0012翼用于表示为发电机,其中垂直流体动力学力激活其悬重运动。开发了一种新颖的数控耦合模型来模拟流体和半主动发电机之间的相互作用,分析了时间不对称俯仰对发电机的能量提取性能的影响。发现时间不对称俯仰运动对发电机的能量提取性能具有显着影响,因为它影响瞬时能量系数,能量效率和流动结构。还得出结论,通过最佳的时间不对称的俯仰运动,在时间对称音调发电机上的最大效率高达17%。 突出显示 开发了半主动扑翼发电机的新型数值耦合模型。 <列表 - 项目ID =“D1E735”> 时间不对称音调运动发电机具有更好的能量提取性能传统的时间对称。 在发电机的翼面周围观察到更强的涡流,具有适当的时间不对称的俯仰。 ]]>

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