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Volumn 379, Issue 1-2, 2004, Pages 264-276

A computational fluid dynamics (CFD) investigation of the wake closure phenomenon

Author keywords

CFD; Gas atomization; HPGA nozzle; Recirculation zone; Wake closure

Indexed keywords

ATOMIZATION; COMPUTATIONAL FLUID DYNAMICS; NOZZLES; TURBULENCE;

EID: 3242706183     PISSN: 09215093     EISSN: None     Source Type: Journal    
DOI: 10.1016/j.msea.2004.02.065     Document Type: Article
Times cited : (104)

References (19)
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  • 3
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    • Control of fine powder production and melt flow rate using gas dynamics
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    • J. Ting, M.W. Peretti, W.B. Eisen, Control of fine powder production and melt flow rate using gas dynamics, in: H. Ferguson, D.T. Whychell (Eds.), Advances in Powder Metallurgy - Particulate Materials-2000, APMI-MPIF, vol. 2, Princeton, NJ, 2000, pp. 27-40.
    • (2000) Advances in Powder Metallurgy - Particulate Materials-2000, APMI-MPIF , vol.2 , pp. 27-40
    • Ting, J.1    Peretti, M.W.2    Eisen, W.B.3
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    • Simulation of powder metal fabrication with high pressure gas atomization
    • M. Philips, J. Porter (Eds.), Princeton, NJ
    • D.W. Kuntz, J.L. Payne, Simulation of powder metal fabrication with high pressure gas atomization, in: M. Philips, J. Porter (Eds.), Advances in Powder Metallurgy - Particulate Materials-1995, APMI-MPIF, vol. 1, Princeton, NJ, 1995, pp. 63-78.
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    • Kuntz, D.W.1    Payne, J.L.2


* 이 정보는 Elsevier사의 SCOPUS DB에서 KISTI가 분석하여 추출한 것입니다.