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Round buoyant laminar and turbulent plumes

dc.contributor.authorYih, Chia‐shunen_US
dc.contributor.authorWu, Fengen_US
dc.date.accessioned2010-05-06T22:07:55Z
dc.date.available2010-05-06T22:07:55Z
dc.date.issued1981-05en_US
dc.identifier.citationYih, Chia‐Shun; Wu, Feng (1981). "Round buoyant laminar and turbulent plumes." Physics of Fluids 24(5): 794-801. <http://hdl.handle.net/2027.42/70419>en_US
dc.identifier.urihttps://hdl.handle.net/2027.42/70419
dc.description.abstractTwo approximate solutions, which become exact for Prandtl numbers 1 and 2, are given for laminar round plumes for arbitrary Prandtl number σ. The first of these gives a very accurate solution for laminar found plumes in air, for which σ = 0.73, and the second provides a good solution for laminar round plumes in water, for which σ = 6.7. Two approximate solutions, which become exact for turbulent Prandtl numbers 1.1 and 2, respectively, are given for turbulent round plumes. The one which becomes exact at σ = 1.1 is used to give a highly accurate solution for σ = 1, which, for an eddy‐viscosity coefficient λ equal to 0.0156, provides a remarkably good agreement with the experimental data of Beuther, Capp, and George, Jr.en_US
dc.format.extent3102 bytes
dc.format.extent586680 bytes
dc.format.mimetypetext/plain
dc.format.mimetypeapplication/pdf
dc.publisherThe American Institute of Physicsen_US
dc.rights© The American Institute of Physicsen_US
dc.titleRound buoyant laminar and turbulent plumesen_US
dc.typeArticleen_US
dc.subject.hlbsecondlevelPhysicsen_US
dc.subject.hlbtoplevelScienceen_US
dc.description.peerreviewedPeer Revieweden_US
dc.contributor.affiliationumThe University of Michigan, Ann Arbor, Michigan 48109en_US
dc.contributor.affiliationotherChina University of Science and Technology, Hofei, Anhni, Chinaen_US
dc.description.bitstreamurlhttp://deepblue.lib.umich.edu/bitstream/2027.42/70419/2/PFLDAS-24-5-794-1.pdf
dc.identifier.doi10.1063/1.863451en_US
dc.identifier.sourcePhysics of Fluidsen_US
dc.identifier.citedreferenceYa. B. Zel’dovich, Zh. Eksp. Teor. Fiz. 7, 1963 (1937).en_US
dc.identifier.citedreferenceC.‐S. Yih, in Proceedings of the 1st U.S. National Congress Applied Mechanics (American Society of Mechanical Engineers, New York, 1951), p. 941.en_US
dc.identifier.citedreferenceC.‐S. Yih, in Proceedings of Symposium on the Use of Models in Geophysical Fluid Mechanics (Government Printing Office Washington, D.C., 1956), p. 117.en_US
dc.identifier.citedreferenceW. Schmidt, Z. Angew. Math. Mech. 21, 265 (1941).en_US
dc.identifier.citedreferenceH. Rouse, C.‐S. Yih, and H. W. Humphreys, Tellus 4, 201 (1952).en_US
dc.identifier.citedreferenceW. K. George, Jr., R. L. Alpert, and F. Tamanini, Int. J. Heat Mass Transfer 20, 1145 (1977).en_US
dc.identifier.citedreferenceP. D. Beuther, S. P. Capp, and W. K. George, Jr., presented at the Joint ASME∕AIChE 18th National Heat Transfer Conference, San Diego, California, August 1979.en_US
dc.identifier.citedreferenceC.‐S. Yih, Phys. Fluids 20, 1234 (1977).en_US
dc.identifier.citedreferenceB. R. Morton, G. I. Taylor, and J. S. Turner, Proc. R. Soc. London A 234, 1 (1956).en_US
dc.owningcollnamePhysics, Department of


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