Three-dimensional computation of flow and sound for human hemilarynx

  • Jo, Yongwoo
  • Ra, Hawoon
  • Moon, Young J.
  • Doellinger, Michael
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초록

The flow and sound of a human hemilarynx, of which the three-dimensional surface motion (e.g. mucosal waves) is measured using the high-speed imaging techniques, are computed for Re-l =192-752 and M = 7.62 x 10(-4) - 2.97 x 10(-3) by solving the filtered incompressible Navier-Stokes equations (INS), coupled with the linearized perturbed compressible equations (LPCE). The predicted acoustic characteristics accord reasonably well to the experimental data for all Reynolds numbers, and it is found that the power exchange between the air-streams and the hemilarynx ranges from 0.05 to 0.175 Watts and the amount of energy exchange for one period of glottis motion is +27 to -5 mu J. The computational results indicate that the open quotient Q(0), an indicator of phonation efficiency, is well related to the energy exchange between flow and hemilarnyx and that the three-dimensional mucosal motions of the vocal fold is responsible for regulating the produced sound over a wide range of frequencies. (C) 2016 Elsevier Ltd. All rights reserved.

키워드

Human hemilarynxPhonationLinearized perturbed compressible equationslow Mach number aeroacousticsDYNAMIC-MECHANICAL MODELVOCAL FOLDSNUMERICAL SCHEMESMEDIAL SURFACEFLUID-FLOWPHONATIONAEROACOUSTICSTRACT
제목
Three-dimensional computation of flow and sound for human hemilarynx
저자
Jo, YongwooRa, HawoonMoon, Young J.Doellinger, Michael
DOI
10.1016/j.compfluid.2016.04.029
발행일
2016-08-01
유형
Article
저널명
Computers and Fluids
134
페이지
41 ~ 50