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<strong>Experimental</strong> <strong>and</strong> <strong>Numerical</strong> <strong>Study</strong> <strong>of</strong> <strong>Swirling</strong> Flow in Scavenging Process for 2-Stroke<br />

Marine Diesel Engines<br />

References<br />

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vortices in swirl flow,’’ JFM, 382, pp. 195---243 (1999).<br />

Alekseenko S. V., Kuibin P. A., Okulov V. L., ‘‘Theory <strong>of</strong> Concentrated<br />

Vortices: An Introduction, ‘‘Springer, (2007).<br />

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in Decaying Swirl Flow in a Pipe’’, App.lied Scientific Research, 45, 233-250<br />

(1988).<br />

Algifri A. H., Bhardwaj R. K., <strong>and</strong> Rao Y. V. N., ‘‘Eddy Viscosity in Decaying<br />

Swirl Flow in a Pipe,’’ App.l. Sci. Res., 45, pp. 287---302 (1988).<br />

Andersen L. <strong>and</strong> Plum M., ‘‘Modeling <strong>of</strong> the scavenging process in a two<br />

stroke Diesel engine,’’ Bachelors Thesis, (2008).<br />

ANSYS FLUENT v12.1 Manual, ANSYS INC.<br />

References<br />

Baker D.W. <strong>and</strong> Sayre C.K.J., ‘‘Decay <strong>of</strong> swirling turbulent flow <strong>of</strong><br />

incompressible fluids in long pipes,’’ Flow------Its Measurement <strong>and</strong> Control<br />

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(1974).<br />

Benjamin T.B., ‘‘Theory <strong>of</strong> vortex breakdown phenomenon,’’ JFM, 14, 4, pp.<br />

593-629 (1962).<br />

Benim A.C. <strong>and</strong> Nahav<strong>and</strong>i A., ‘‘URANS <strong>and</strong> LES Analysis <strong>of</strong> Turbulent<br />

<strong>Swirling</strong> Flows,’’ Progress in Computational Fluid Dynamics, 5,8, (2005).<br />

Blair G. P., ‘‘The Basic Design <strong>of</strong> Two-Stroke Engines,’’ SAE, (1990).<br />

Cazan R. <strong>and</strong> Aidun C. K., ‘‘<strong>Experimental</strong> Investigation <strong>of</strong> the <strong>Swirling</strong> Flow<br />

<strong>and</strong> the Helical Vortices induced by a Twisted tape inside a Circular Pipe,’’<br />

Physics <strong>of</strong> Fluids, 21, 3, (2009).<br />

Craft T., Iacovides H., Launder B. <strong>and</strong> Zacharos A., ‘‘Some <strong>Swirling</strong>-flow<br />

Challenges for Turbulent CFD,’’ Flow Turbulence Combustion, 8, 4, pp.<br />

419-434 (2008).<br />

Dam B. S., ‘‘<strong>Experimental</strong> <strong>and</strong> <strong>Numerical</strong> Investigations <strong>of</strong> sprays in twostroke<br />

diesel engines,’’ PhD thesis, Technical University <strong>of</strong> Denmark, (2007).<br />

173<br />

References

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