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Effects of Transverse Temperature Gradient on the Rotor Velocity in an Ultrasonic Motor

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【作者】 程利平张淑仪徐晓东

【Author】 Li-Ping Cheng;Shu-Yi Zhang;Xiao-Dong Xu;Lab of Modern Acoustics,Institute of Acoustics,Nanjing University;

【机构】 Lab of Modern Acoustics,Institute of Acoustics,Nanjing University

【摘要】 As a result of the nonlinear effect,acoustic streaming has been widely used for increasing the transport coefficient or driving a rotor,for example,in resonant cavities and non-contact ultrasonic motors.It has been demonstrated by experiments that a temperature gradient transverse to the wave propagating direction can significantly increase the velocity of the streaming Bows in resonant cavities.To check whether the transverse temperature gradient can also increase the working velocity of acoustic streaming-driven motors,we investigate this issue by numerically solving the hydrodynamic equations.It is found that the velocity of the rotor only weakly depends on the transverse temperature gradient,e.g.,even with a temperature difference of 40℃ between the rotor and the stator,the velocity increases only ~8.8%.

【Abstract】 As a result of the nonlinear effect,acoustic streaming has been widely used for increasing the transport coefficient or driving a rotor,for example,in resonant cavities and non-contact ultrasonic motors.It has been demonstrated by experiments that a temperature gradient transverse to the wave propagating direction can significantly increase the velocity of the streaming Bows in resonant cavities.To check whether the transverse temperature gradient can also increase the working velocity of acoustic streaming-driven motors,we investigate this issue by numerically solving the hydrodynamic equations.It is found that the velocity of the rotor only weakly depends on the transverse temperature gradient,e.g.,even with a temperature difference of 40℃ between the rotor and the stator,the velocity increases only ~8.8%.

【基金】 Supported by the National Natural Science Foundation of China under Grant No 10874083
  • 【文献出处】 Chinese Physics Letters ,中国物理快报(英文版) , 编辑部邮箱 ,2016年01期
  • 【分类号】TM359.9
  • 【被引频次】2
  • 【下载频次】13
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