期刊文献+
共找到3篇文章
< 1 >
每页显示 20 50 100
消除汽车刹车噪音的控制系统
1
作者 东方 《发明与创新(大科技)》 2003年第10期46-46,共1页
关键词 汽车 刹车噪音 噪音控制系统 压电陶瓷制动器
下载PDF
反噪声及其妙用
2
作者 吴继星 《环境》 1993年第3期26-27,共2页
关键词 噪声控制 反噪声器 压电陶瓷制动器
下载PDF
Active control of fluctuating pressure induced by blade-vortex interaction 被引量:4
3
作者 ZHANG MingMing XU JianZhong 《Science China(Technological Sciences)》 SCIE EI CAS 2011年第4期862-868,共7页
It is well known that interactions between the leading edge of a blade and incoming vortical structures produce a sharp rise in fluctuating pressure nearby,contributing significantly to the noise production in various... It is well known that interactions between the leading edge of a blade and incoming vortical structures produce a sharp rise in fluctuating pressure nearby,contributing significantly to the noise production in various types of rotorcrafts.To suppress this fluctuating pressure and subsequently induced noise,as the first step,active control of interactions between an airfoil and incoming cylinder-generated vortices,which mimics the practical phenomenon,was experimentally investigated.The essence of the control is to create a local perturbation,using piezo-ceramic actuators,on the surface near the leading edge of the airfoil,thus modifying the airfoil-vortex interactions.Both open-and closed-loop methods were used,where the surface perturbation was controlled by an external sinusoidal wave and a feedback pressure signal from a pressure transducer installed at the leading edge,respectively.It was observed that the closed-loop control was superior to the open-loop one;the closed-and open-loop controls achieve a maximum reduction in the pressure fluctuation at the dominant vortex frequency by 32% and 11%,respectively.The detailed physics behind the observations was discussed. 展开更多
关键词 blade-vortex interaction perturbation technique piezo-ceramic actuator closed-loop control
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部