## Abstract The method developed by Rallison and Acrivos (1978) to solve the deformation of a single drop due to exterior shear flow for a small Reynolds number is extended to the problem of the deformation of a compound drop. The result is found in terms of a Fredholm integral equation of the seco
SPH Simulation of Low Reynolds Number Planar Shear Flow and Heat Convection
โ Scribed by F. Jiang; M. S. A. Oliveira; A. C. M. Sousa
- Publisher
- John Wiley and Sons
- Year
- 2005
- Tongue
- English
- Weight
- 267 KB
- Volume
- 36
- Category
- Article
- ISSN
- 0933-5137
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โฆ Synopsis
The present study reports on a set of computer programmable SPH formulations, which are used to simulate transient planar shear flows, and in particular Poiseuille flow and Couette flow with different types of body forces. The flows examined have Reynolds numbers within the range 0.05$50. SPH results agree well with analytical solutions for those situations amenable to an analytical treatment, with the largest deviation being less than 2.0 %. The accuracy of a SPH formulation for heat convection, with particular emphasis in the viscous heat dissipation, is also tested via a steady convective heat transfer case for a combined Poiseuille and Couette flow.
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