驻波声场中悬浮临界密度及稳定性研究
收稿日期: 2019-11-25
修回日期: 2019-12-24
网络出版日期: 2020-05-17
基金资助
北京航空航天大学2019-2022 年教育教学改革培育项目( 大类招生环境下物理专业课程改革与建设) ; 北京航空航天大学双百优质课程项目( A 级理论力学ZG211J1771) ; 北京航空航天大学研究型示范课( 物理先导课) ; 北京航空航天大学2018 年重点教改项目( 物理本科毕业设计新模式探索与实践) 资助
Study of the critical density and stability of suspension in standing wave sound field
Received date: 2019-11-25
Revised date: 2019-12-24
Online published: 2020-05-17
金硕, 严琪琪, 李成翊, 张兆航, 黄安平 . 驻波声场中悬浮临界密度及稳定性研究[J]. 大学物理, 2020 , 39(05) : 20 -26 . DOI: 10.16854 /j.cnki.1000-0712.190546
is theoretically derived both in the travelling wave and the standing wave. The concept of the critical suspension
density is introduced into the standing wave sound field,which should be used as a criterion for suspension in a
nonlinear sound field. At the same time,the maximum range of Resonant cavity's movement speed is given. Furthermore,
by the combination of numerical computations and experimental results,the influence of the density and the
size of the sample in the standing wave sound field,the shape of the emitting surface and the reflecting surface,the
distance between these two surface,and the size of the reflecting surface on the suspension stability are investigated.
It is found that when the size and the density of the object are determined,adjusting the length of the resonant cavity
and increasing the sound pressure at the antinode are effective means to improve the acoustic suspension stability.
Key words: standing wave sound field; suspension; stability; sound pressure
/
| 〈 |
|
〉 |