Back to Results
First PageMeta Content
Aerodynamics / Navier–Stokes equations / Direct simulation Monte Carlo / Boundary layer / Viscosity / Knudsen number / Turbulence / Hypersonic speed / Computational fluid dynamics / Fluid mechanics / Physics / Fluid dynamics


Strathprints Institutional Repository Lockerby, Duncan A. and Reese, Jason M. and Gallis, Michael A[removed]Capturing the Knudsen layer in continuum-fluid models of non-equilibrium gas flows. AIAA Journal, [removed]pp. 1
Add to Reading List

Document Date: 2014-06-10 15:38:33


Open Document

File Size: 304,90 KB

Share Result on Facebook

City

Albuquerque / Glasgow / /

Company

Sandia National Laboratories / Knudsen / /

Country

United States / /

/

Facility

King’s College / University of Strathclyde / /

IndustryTerm

isothermal continuum solutions / rarefied gas flow / gas viscosity / conventional fictitious slip solutions / gas flow / monatomic gas flow / layer solution / flow solution / energy fluxes / non-equilibrium gas flows / gas density / non-equilibrium gas / gas effective viscosity / monatomic gas flow subject / monatomic gas / /

Organization

Reese Department of Mechanical Engineering / Lockerby Department of Mechanical Engineering / University of Strathclyde / King’s College London / /

Person

Jason M Reese / Michael A Gallis / Duncan A Lockerby / /

Position

administrator / /

ProvinceOrState

New Mexico / /

PublishedMedium

The AIAA Journal / /

Technology

fluid dynamics / http / Simulation / microfluidics / /

URL

http /

SocialTag