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Hot flow analysis of swirling sudden‐expansion dump combustor
Author(s) -
Chuang ShuHao,
Lin HsunCheng,
Tai FangMei,
Sung HongMing
Publication year - 1992
Publication title -
international journal for numerical methods in fluids
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.938
H-Index - 112
eISSN - 1097-0363
pISSN - 0271-2091
DOI - 10.1002/fld.1650140208
Subject(s) - turbulence , reynolds stress , combustor , mechanics , flow (mathematics) , reynolds number , mathematics , momentum (technical analysis) , physics , combustion , chemistry , organic chemistry , finance , economics
Abstract Hot flow of a sudden‐expansion dump combustor with swirling is analysed by employing an infinite chemical reaction rate. Turbulence properties are closed using one type of algebraic Reynolds stress model and two types of κ–ϵ model. One of the κ–ϵ models includes a swirling effect modification to the ε‐equation. Computations have been performed by the SIMPLE‐C algorithm with a power‐law scheme. The calculated results of the momentum fields and turbulence quantities for swirling flow are compared with the available experimental data. It is shown that the standard κ–ϵ model gives poor prediction of the mean velocity, particularly the tangential velocity. For the hot flow analysis of a sudden‐expansion dump combustor with swirling flow it is suggested that it is necessary to use the modified κ–ϵ model or algebraic Reynolds stress model.