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Results 1 to 25 of 327

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On the local theory of stellar convection with μ-gradient using one-point correlation functionsUMEZU, Minoru.Monthly notices of the Royal Astronomical Society (Print). 2008, Vol 391, Num 3, pp 1327-1331, issn 0035-8711, 5 p.Article

Generalized atmospheric Rosenbluth methods (GARM)RECHNITZER, A; JANSE VAN RENSBURG, E. J.Journal of physics. A, Mathematical and theoretical (Print). 2008, Vol 41, Num 44, issn 1751-8113, 442002.1-442002.8Article

Overshooting from convective cores: theory and numerical simulationROXBURGH, I. W.Space science reviews. 1993, Vol 66, Num 1-4, pp 299-308, issn 0038-6308Conference Paper

Validity tests of the mixing-length theory of deep convectionCHAN, K. L; SOFIA, S.Science (Washington, D.C.). 1987, Vol 235, Num 4787, pp 465-467, issn 0036-8075Article

A theory of nonlocal mixing-length convection. II: Generalized smoothed particle hydrodynamics simulationsGROSSMAN, S. A; NARAYAN, R.The Astrophysical journal. Supplement series. 1993, Vol 89, Num 2, pp 361-394, issn 0067-0049Article

New mixing-length approach for the mean velocity profile of turbulent boundary layersBUSCHMANN, M. H; GAD-EL-HAK, M.Journal of fluids engineering. 2005, Vol 127, Num 2, pp 393-396, issn 0098-2202, 4 p.Article

Passive optical fiber star couplerBROCKMEYER, A; COUTANDIN, J; GROH, W et al.Applied optics. 1992, Vol 31, Num 6, pp 746-748, issn 0003-6935Article

A modified van Driest formula for hte mixing length of turbulent boundary layers in pressure gradientsGRANVILLE, P. S.Journal of fluids engineering. 1989, Vol 111, Num 1, pp 94-97, issn 0098-2202Article

On mixing length theory and saturated turbulenceDIAMOND, P. H; CARRERAS, B. A.Comments on Plasma Physics and Controlled Fusion. 1987, Vol 10, Num 6, pp 271-278, issn 0374-2806Article

Vertical Variations of Mixing Lengths under Neutral and Stable Conditions during CASES-99JIELUN SUN.Journal of applied meteorology and climatology. 2011, Vol 50, Num 10, pp 2030-2041, issn 1558-8424, 12 p.Article

Time-dependent convection seismic study of δ Sct starsDUPRET, M.-A; GRIGAHCENE, A; GARRIDO, R et al.Monthly Notices of the Royal Astronomical Society. 2005, Vol 361, Num 2, pp 476-486, issn 0035-8711, 11 p.Article

Limit cycle mixingMAHRT, L.Journal of the atmospheric sciences. 1989, Vol 46, Num 8, pp 1061-1075, issn 0022-4928Article

Rationalizing the Spatial Distribution of Mesoscale Eddy Diffusivity in Terms of Mixing Length TheoryBATES, Michael; TULLOCH, Ross; MARSHALL, John et al.Journal of physical oceanography. 2014, Vol 44, Num 6, pp 1523-1540, issn 0022-3670, 18 p.Article

Analytical solution for vertical profile of streamwise velocity in open-channel flow with submerged vegetationYANG HU; WENXIN HUAI; JIE HAN et al.Environmental fluid mechanics (2001). 2013, Vol 13, Num 4, pp 389-402, issn 1567-7419, 14 p.Article

Law of the wall of rotating turbulent shear flowJU YEOP PARK; MYUNG KYOON CHUNG.Physics of fluids (1994). 2005, Vol 17, Num 9, pp 098104.1-098104.4, issn 1070-6631Article

Convection zone of white-dwarf starsATWEH, Z. M; ERYURT-EZER, D.Astrophysics and space science. 1992, Vol 187, Num 1, pp 27-36, issn 0004-640XArticle

The vertical distribution of phytoplankton as a mesure of depth, duration and frequency of mixing in standing water during periods of unstable stratificationHORN, H.Acta hydrochimica et hydrobiologica. 1990, Vol 18, Num 2, pp 205-213, issn 0323-4320Article

Nonlocal properties of the solar convection zoneUNNO, W; KONDO, M.Publications of the Astronomical Society of Japan. 1989, Vol 41, Num 1, pp 197-210, issn 0004-6264Article

Inter-relations between scale invariance and mixing length theory based on g and rippling mode turbulent transportsYAGI, M; WAKATANI, M; SHAING, K. C et al.Journal of the Physical Society of Japan. 1988, Vol 57, Num 1, pp 117-124, issn 0031-9015Article

Refinement of the mixing-length model for prediction of gas-particle flow in a pipeLEE, K. B; CHUNG, M. K.International journal of multiphase flow. 1987, Vol 13, Num 2, pp 275-282, issn 0301-9322Article

Time-dependent convection seismic study of five γ Doradus starsDUPRET, M.-A; GRIGAHCENE, A; GARRIDO, R et al.Monthly Notices of the Royal Astronomical Society. 2005, Vol 360, Num 3, pp 1143-1152, issn 0035-8711, 10 p.Article

White dwarf envelopes: further results of a non-local model of convectionMONTGOMERY, M. H; KUPKA, F.Monthly Notices of the Royal Astronomical Society. 2004, Vol 350, Num 1, pp 267-276, issn 0035-8711, 10 p.Article

On eddy characteristics, eddy transports, and mean flow propertiesSTAMMER, D.Journal of physical oceanography. 1998, Vol 28, Num 4, pp 727-739, issn 0022-3670Article

Interaction de modes tridimensionnels résonnants au sein d'une couche limite turbulente = Three wave resonance in a turbulent boundary layerOrtiz, Sabine; Guiraud, J.-P.1994, 306 p.Thesis

New mixing-length model for turbulent high-speed flowsSITU, M; SCHETZ, J. A.AIAA journal. 1991, Vol 29, Num 6, pp 872-873, issn 0001-1452, 2 p.Article

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