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Piping / Anatomy / Human anatomy / Fluid mechanics / Soft palate / Snoring / Palatine uvula / Obstructive sleep apnea / Viscosity / Palate / Sleep disorders / Aerodynamics


Modelling and simulation of fluid-structure interactions in human snoring
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Document Date: 2013-01-15 22:38:18


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File Size: 631,70 KB

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City

Manchester / Perth / Montreal / /

Company

eMedicine / /

Country

United States / Canada / Australia / United Kingdom / /

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Facility

Curtin University / Oriented Multi-Physics Finite-Element Library / University of Manchester / library oomph-lib. / Sir Charles Gairdner Hospital / Hospital Avenue / West Australian Sleep Disorders Research Institute / /

IndustryTerm

plate energy / energy contribution / net energy transfer / kinetic energy / constitutive law / energy transfers / potential energy / energy breakdown / open-source finite-element software library oomph-lib. / steady solutions / open-source software / Energy∗ /length∗ / energy / formulated using the open-source finite-element software library oomph-lib. / /

NaturalFeature

Mean inlet / /

Organization

School of Mathematics / DP0559408 / International Congress / WA State Centre of Excellence / Curtin University / University of Manchester / Sir Charles Gairdner Hospital / Australian Sleep Disorders Research Institute / Australian Research Council / Department of Mechanical Engineering / /

Person

P. J. Kelly / A. J. Sims / J. A. Wilson / G. J. McKee / M. Collins / H. Marshall / /

Position

representative / uvula motion representative / /

ProvinceOrState

Massachusetts / /

Technology

Tomography / Fluid Dynamics / Simulation / /

URL

http /

SocialTag