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Titolo:
The interaction between a compressible synthetic jet and a laminar hypersonic boundary layer
Autore:
Mallinson, SG; Reizes, JA; Hillier, R;
Indirizzi:
Univ Technol Sydney, Fac Engn, Broadway, NSW 2007, Australia Univ Technol Sydney Broadway NSW Australia 2007 dway, NSW 2007, Australia Univ London Imperial Coll Sci Technol & Med, Dept Aeronaut, London SW7 2BY, England Univ London Imperial Coll Sci Technol & Med London England SW7 2BY gland
Titolo Testata:
FLOW TURBULENCE AND COMBUSTION
fascicolo: 1, volume: 66, anno: 2001,
pagine: 1 - 21
SICI:
1386-6184(2001)66:1<1:TIBACS>2.0.ZU;2-R
Fonte:
ISI
Lingua:
ENG
Soggetto:
SUPERSONIC-FLOW; PENETRATION; ENHANCEMENT; TRANSVERSE; FLOWFIELDS; COMBUSTOR; TUNNEL;
Keywords:
hypersonic; boundary layer; synthetic jet; unsteady flow;
Tipo documento:
Article
Natura:
Periodico
Settore Disciplinare:
Engineering, Computing & Technology
Citazioni:
66
Recensione:
Indirizzi per estratti:
Indirizzo: Mallinson, SG Univ Technol Sydney, Fac Engn, POB 123, Broadway, NSW 2007, Australia Univ Technol Sydney POB 123 Broadway NSW Australia 2007 alia
Citazione:
S.G. Mallinson et al., "The interaction between a compressible synthetic jet and a laminar hypersonic boundary layer", FLOW TURB C, 66(1), 2001, pp. 1-21

Abstract

Numerical simulations have been performed of a synthetic jet interacting with a laminar hypersonic boundary layer. Two datum cases were also considered, no jet and steady jet. The simulations for the case of no jet are in agreement with available experimental data. Predicted flow features of the steady jet interaction are broadly consistent with previous studies. For the synthetic jet, the upstream and downstream separated regions are dramatically reduced in size, and the jet appears to lie closer to the surface, compared with the steady jet. It is also found that the synthetic jet induces a greater mixing rate than the steady jet.

ASDD Area Sistemi Dipartimentali e Documentali, Università di Bologna, Catalogo delle riviste ed altri periodici
Documento generato il 05/04/20 alle ore 03:54:27