Computing the near-wall region in gas micro- and nanofluidics : critical Knudsen layer phenomena
Reese, Jason and Zheng, Yingsong and Lockerby, Duncan A. (2006) Computing the near-wall region in gas micro- and nanofluidics : critical Knudsen layer phenomena. In: European Conference on Computational Fluid Dynamics, 2006-09-05 - 2006-09-08. (http://proceedings.fyper.com/eccomascfd2006/docume...)
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Abstract
In order to capture critical near-wall phenomena in gas micro- and nanoflows within conventional CFD codes, we present scaled Navier-Stokes-Fourier (NSF) constitutive relations. Our scaling is mathematically equivalent to applying an 'effective' viscosity to the original constitutive relations. An expression for this 'effective' transport coefficient is obtained from the half-space Kramer's flow problem. The advantage of our model over the traditional NSF equations is that the non-equilibrium flow near to the wall (the momentum Knudsen layer) can be described. Its advantage over higher-order hydrodynamic models for gas micro- and nanoflows is that the boundary conditions remain the same as required for the traditional NSF equations, so modifications to current CFD codes (provided they are already capable of modelling slip at solid surfaces) would be minimal. As an application example, we apply our model to the isothermal problem of a microsphere moving through a gas: we show that our model gives excellent results in the Knudsen number range Kn . 0:1 and acceptable results up to Kn ¼ 0:25. This is much better than the traditional NSF model with non-scaled constitutive relations.
ORCID iDs
Reese, Jason ORCID: https://orcid.org/0000-0001-5188-1627, Zheng, Yingsong and Lockerby, Duncan A.;-
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Item type: Conference or Workshop Item(Paper) ID code: 32143 Dates: DateEvent5 September 2006PublishedNotes: Paper 493. ISBN: 90-9020970-0 Subjects: Technology > Mechanical engineering and machinery
Science > Physics > Solid state physics. NanoscienceDepartment: Faculty of Engineering > Mechanical and Aerospace Engineering Depositing user: Pure Administrator Date deposited: 16 Dec 2011 17:01 Last modified: 11 Nov 2024 16:29 Related URLs: URI: https://strathprints.strath.ac.uk/id/eprint/32143