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Computation of two-phase shear-layer flow using an Eulerian-Lagrangian analysisA combined Eulerian-Lagrangian analysis which combines a linearized block implicit Navier-Stokes analysis for the continuous phase with a Lagrangian analysis for the discrete phase has been utilized to simulate a two-phase shear-layer flow in a two-dimensional channel flow configuration. The motion of the particles is tracked in computational coordinate space, resulting in improved computational efficiency, and interphase coupling terms for the Eulerian analysis are computed from the instantaneous distribution of the particles rather than the trajectory information. The use of the implicit Navier-Stokes analysis for the continuous phase has made it possible to efficiently use a highly stretched mesh. A low Reynolds number form of the k-epsilon turbulence model was used with near-wall resolution, thus eliminating the need to use the 'wall-function' approach. The streamwise velocity profiles for the continuous and the discrete phases have been compared with experimental data for two test cases.
Document ID
19880057563
Acquisition Source
Legacy CDMS
Document Type
Conference Paper
Authors
Sabnis, Jayant S.
(Scientific Research Associates, Inc. Glastonbury, CT, United States)
Choi, Sang-Keun
(Scientific Research Associates, Inc. Glastonbury, CT, United States)
Buggeln, Richard C.
(Scientific Research Associates, Inc. Glastonbury, CT, United States)
Gibeling, Howard J.
(Scientific Research Associates, Inc. Glastonbury, CT, United States)
Date Acquired
August 13, 2013
Publication Date
July 1, 1988
Subject Category
Fluid Mechanics And Heat Transfer
Report/Patent Number
AIAA PAPER 88-3202
Report Number: AIAA PAPER 88-3202
Accession Number
88A44790
Funding Number(s)
CONTRACT_GRANT: NAS8-37255
Distribution Limits
Public
Copyright
Other

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