Skip to main navigation Skip to search Skip to main content

The Synergetic Thermo-Acoustic and Magneto-Acoustic Emitting from Free-standing Nano-Thin Film

Research output: Conference PapersRGC 32 - Refereed conference paper (without host publication)peer-review

Abstract

In this paper, the mixed thermo-acoustic and magneto-acoustic generations are synergistically discovered with respect to wave stability. Different from the thermo-acoustical nano-thin film devices, the present acoustical emitting device derives from both of the thermo-acoustical and the structural acoustical radiation. Moreover, the thermal and magnetic sounding production share the same voicing unit as well as the same simple harmonic current input. Due to the electric power excitation for thermo-acoustics and electro-magnetic loading for magneto-acoustics, the frequencies and wave stability response of the acoustic wave are apparently different as that in the steady magnetic field. The dynamic magnetic field with the same frequency as the electric current is introduced to correct the inharmonious frequency. As the thermo-acoustics and magneto-acoustics share the same velocity boundary condition, the two effects are partly coupled and affected. The characteristics of the mixed thermo-acoustics and magneto-acoustics are established and discussed. The sound pressure level is significantly improved compared with the single thermo-acoustical system.
Original languageEnglish
Pages279
Publication statusPublished - Jun 2019
EventEngineering Mechanics Institute Conference 2019 (EMI 2019) - California Institute of Technology, Pasadena, United States
Duration: 18 Jun 201921 Jun 2019
http://emi2019.caltech.edu/

Conference

ConferenceEngineering Mechanics Institute Conference 2019 (EMI 2019)
PlaceUnited States
CityPasadena
Period18/06/1921/06/19
Internet address

Fingerprint

Dive into the research topics of 'The Synergetic Thermo-Acoustic and Magneto-Acoustic Emitting from Free-standing Nano-Thin Film'. Together they form a unique fingerprint.

Cite this