Pressure drop coefficient of laminar Newtonian flow in axisymmetric diffusers

The laminar flow of Newtonian fluids in axisymmetric diffusers has been numerically investigated to evaluate the pressure-loss coefficient as a function of Reynolds number, diffusion angle and expansion ratio. The numerical simulations were carried out with a finitevolume based code using non-orthog...

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Bibliographic Details
Main Author: Rosa, Sergio (author)
Other Authors: Pinho, Fernando T. (author)
Format: article
Language:eng
Published: 2010
Subjects:
Online Access:http://hdl.handle.net/10198/2041
Country:Portugal
Oai:oai:bibliotecadigital.ipb.pt:10198/2041
Description
Summary:The laminar flow of Newtonian fluids in axisymmetric diffusers has been numerically investigated to evaluate the pressure-loss coefficient as a function of Reynolds number, diffusion angle and expansion ratio. The numerical simulations were carried out with a finitevolume based code using non-orthogonal collocated grids and second order accurate differencing schemes to discretize all terms of the transport equations. The calculations were carried out for Reynolds numbers between 2 and 200, diffusion angles from 0 to 90 and expansion ratios of 1.5 and 2 and the data are presented in tabular form and as correlations. A simplified 1D theoretical analysis helped explain the various contributions to the loss coefficient and its difference relative to the reversible pressure variation due to differences between the actual and fully developed friction losses, distortions of the velocity profiles and pressure non-uniformity upstream and downstream of the expansion section.