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1
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0030158089
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A two-equation heat-transfer model reflecting second-moment closures for wall and free turbulent flows
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Abe K., Kondoh T., and Nagano Y. A two-equation heat-transfer model reflecting second-moment closures for wall and free turbulent flows. Int. J. Heat and Fluid Flow 17 (1996) 228-237
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Abe, K.1
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2
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0031171949
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On Reynolds-stress expressions and near-wall scaling parameters for predicting wall and homogeneous turbulent shear flows
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Abe K., Kondoh T., and Nagano Y. On Reynolds-stress expressions and near-wall scaling parameters for predicting wall and homogeneous turbulent shear flows. Int. J. Heat and Fluid Flow 18 (1997) 266-282
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Int. J. Heat and Fluid Flow
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Abe, K.1
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3
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0026990324
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Blay, D., Mergui, S., Niculae, C., 1992. Confined turbulent mixed-convection in the presence of horizontal buoyant wall jet. ASME HTD, vol. 213, Fundamentals of Mixed Convection, pp. 65-72.
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4
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0029657439
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Recent developments in second-moment closure for buoyancy-affect flows
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Craft T.J., Ince N.Z., and Launder B.E. Recent developments in second-moment closure for buoyancy-affect flows. Dyn. Atoms. Oceans 23 (1996) 99-114
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Craft, T.J.1
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5
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On explicit algebraic stress models for complex turbulent flows
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Gatski, T.B.1
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0027575397
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Calculation of turbulent flows with pressure gradients using a k-ε model
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Hattori H., and Nagano Y. Calculation of turbulent flows with pressure gradients using a k-ε model. Trans. JSME 59-560B (1993) 518-524
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Trans. JSME
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Hattori, H.1
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7
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0032021225
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Rigorous formulation of two-equation heat-transfer model of turbulence using direct simulations
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Hattori H., and Nagano Y. Rigorous formulation of two-equation heat-transfer model of turbulence using direct simulations. Numer. Heat Transfer B 33 (1998) 153-180
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(1998)
Numer. Heat Transfer B
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Hattori, H.1
Nagano, Y.2
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8
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5644258727
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Non-linear two-equation model taking into account the wall-limiting behavior and redistribution of stress components
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Hattori H., and Nagano Y. Non-linear two-equation model taking into account the wall-limiting behavior and redistribution of stress components. Theoret. Comput. Fluid Dyn. 17-5 (2004) 313-330
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(2004)
Theoret. Comput. Fluid Dyn.
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Hattori, H.1
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9
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0008439656
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Direct numerical simulation of unstably stratified turbulent channel flow
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Iida O., and Kasagi N. Direct numerical simulation of unstably stratified turbulent channel flow. J. Heat Transfer 119 (1997) 53-61
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J. Heat Transfer
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Iida, O.1
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10
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0037127731
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Direct numerical simulation of turbulent channel flow under stable density stratification
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Iida O., Kasagi N., and Nagano Y. Direct numerical simulation of turbulent channel flow under stable density stratification. Int. J. Heat and Mass Transfer 45-8 (2002) 1693-1703
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(2002)
Int. J. Heat and Mass Transfer
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Iida, O.1
Kasagi, N.2
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11
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0031080775
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Direct numerical simulation of combined forced and natural turbulent convection in a vertical plane channel
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Kasagi N., and Nishimura M. Direct numerical simulation of combined forced and natural turbulent convection in a vertical plane channel. Int. J. Heat and Fluid Flow 18 (1997) 88-99
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(1997)
Int. J. Heat and Fluid Flow
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Kasagi, N.1
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12
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0000730442
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Heat and mass transport
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Bradshaw P. (Ed), Springer-Verlag, New York
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Launder B.E. Heat and mass transport. In: Bradshaw P. (Ed). Turbulence (1976), Springer-Verlag, New York 231-287
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Launder, B.E.1
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13
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0030294845
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New low-Reynolds-number k-ε model including damping effect due to buoyancy in a stratified flow field
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Murakami S., Kato S., Chikamoto T., Laurence D., and Blay D. New low-Reynolds-number k-ε model including damping effect due to buoyancy in a stratified flow field. Int. J. Heat and Mass Transfer 39 (1996) 3483-3496
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Murakami, S.1
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Laurence, D.4
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14
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0036235774
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An improved turbulence model for rotating shear flows
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3-006
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Nagano Y., and Hattori H. An improved turbulence model for rotating shear flows. J. Turbulence 3-006 (2002) 1-13
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J. Turbulence
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Nagano, Y.1
Hattori, H.2
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15
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1842749754
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DNS and modelling of spanwise rotating channel flow with heat transfer
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4-010
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Nagano Y., and Hattori H. DNS and modelling of spanwise rotating channel flow with heat transfer. J. Turbulence 4-010 (2003) 1-15
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J. Turbulence
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Nagano, Y.1
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16
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33745803923
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A new low-Reynolds-number turbulence model with hybrid time-scales of mean flow and turbulence for complex wall flows
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Hanjalić K., Nagano Y., and Tummers M. (Eds), Begell House, Inc.
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Nagano Y., and Hattori H. A new low-Reynolds-number turbulence model with hybrid time-scales of mean flow and turbulence for complex wall flows. In: Hanjalić K., Nagano Y., and Tummers M. (Eds). Turbulence, Heat and Mass Transfer vol. 4 (2003), Begell House, Inc. 561-568
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(2003)
Turbulence, Heat and Mass Transfer
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Nagano, Y.1
Hattori, H.2
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17
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0030438752
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Development of a two-equation heat transfer model based on direct simulations of turbulent flows with different Prandtl numbers
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Nagano Y., and Shimada M. Development of a two-equation heat transfer model based on direct simulations of turbulent flows with different Prandtl numbers. Phys. Fluids 8-12 (1996) 3379-3402
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Nagano, Y.1
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18
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0043226789
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Modeling the turbulent heat and momentum transfer in flows under different thermal conditions
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Nagano Y., Hattori H., and Abe K. Modeling the turbulent heat and momentum transfer in flows under different thermal conditions. Fluid Dyn. Res. 20 (1997) 127-142
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Fluid Dyn. Res.
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Nagano, Y.1
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0016570251
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A more general effective-viscosity hypothesis
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Accounting for buoyancy effects in the explicit algebraic stress model: homogeneous turbulent shear flows
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So R.M.C., Vimala P., Jin L.H., Zhao C.Y., and Gatski T.B. Accounting for buoyancy effects in the explicit algebraic stress model: homogeneous turbulent shear flows. Theoret. Comput. Fluid Dyn. 15 (2002) 283-302
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21
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0025543492
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Numerical prediction of turbulent natural convection boundary layers
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Yin Y., Nagano Y., and Tsuji T. Numerical prediction of turbulent natural convection boundary layers. Heat Transfer Jap. Res. 19-6 (1991) 584-601
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Yin, Y.1
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