Электронная библиотека (репозиторий) Томского государственного университета
2015 | Sheremet, Mikhail A.

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Source: EPJ Web of Conferences. 2015. Vol. 82. P. 01057 (1-4)
Type: статьи в журналах
Date: 2015
Description: Turbulent natural convection in a square cavity has been numerically studied. The mathematical model has been formulated in terms of the dimensionless stream function, vorticity and temperature using ... More
Source: International journal of numerical methods for heat & fluid flow. 2015. Vol. 25, № 5. P. 1138-1161
Type: статьи в журналах
Date: 2015
Description: Purpose
Source: Journal of engineering thermophysics. 2015. Vol. 24, № 1. P. 22-32
Type: статьи в журналах
Date: 2015
Description: Numerical analysis of 3D regimes of convection-radiation heat transfer in cubic enclosure with two isothermal faces and adiabatic walls is performed. The mathematical model is constructed in dimension ... More
Source: Computers and fluids. 2015. Vol. 118. P. 182-190
Type: статьи в журналах
Date: 2015
Source: European journal of mechanics - B/Fluids. 2015. Vol. 53. P. 241-250
Type: статьи в журналах
Date: 2015
Source: PLoS ONE. 2015. Vol. 10, № 5. P. e0126486 (1-17)
Type: статьи в журналах
Date: 2015
Description: The free convection heat transfer of Cu-water nanofluids in a parallelogrammic enclosure filled with porous media is numerically analyzed. The bottom and top of the enclosure are insulated while the s ... More
Source: Journal of Heat Transfer. 2015. Vol. 137, № 7. P. 072601-1-072601-8
Type: статьи в журналах
Date: 2015
Source: IOP Conference Series: Materials Science and Engineering. 2015. Vol. 93. P. 012004 (1-6)
Type: статьи в журналах
Date: 2015
Description: Numerical analysis of the unsteady natural convection with phase transitions inside the pure galluim under the influence of a uniform magnetic field with a heat source of constant temperature has been ... More
Source: IOP Conference Series: Materials Science and Engineering. 2015. Vol. 93. P. 012008 (1-4)
Type: статьи в журналах
Date: 2015
Description: Turbulent natural convection with the interaction of surface radiation in square enclosure has been numerically studied. The governing equations are solved contemporaneously by finite difference metho ... More
Source: Numerical heat transfer. Part A : Applications. 2015. Vol. 68, № 3. P. 243-267
Type: статьи в журналах
Date: 2015
Description: Transient-free convection in a porous enclosure having heat-conducting solid walls of finite thickness under conditions of convective heat exchange with an environment was studied numerically. A heat ... More
Source: Transport in porous media. 2015. Vol. 109, № 1. P. 131-145
Type: статьи в журналах
Date: 2015
Description: This work examines the steady double-diffusive mixed convection flow in a porous open cavity filled with a nanofluid using mathematical nanofluid model proposed by Buongiorno. The analysis uses a two- ... More
Source: Transport in porous media. 2015. Vol. 110, № 1. P. 113-126
Type: статьи в журналах
Date: 2015
Description: A numerical investigation is implemented on the unsteady natural convection with a temperature-dependent viscosity inside a square porous cavity. The vertical walls of the cavity are kept at constant ... More
Source: The European physical journal plus. 2015. Vol. 130. P. 107 (1-12)
Type: статьи в журналах
Date: 2015
Description: This paper deals with a numerical study of natural convection flow and heat transfer inside a concentric horizontal annulus filled with a porous medium saturated by a cuprum (Cu)-water nanofluid. The ... More
Source: International journal of numerical methods for heat & fluid flow. 2015. Vol. 25, № 7. P. 1600-1618
Type: статьи в журналах
Date: 2015
Description: Purpose
Source: International journal of numerical methods for heat & fluid flow. 2015. Vol. 25, № 8. P. 1924-1946
Type: статьи в журналах
Date: 2015
Description: Purpose - Unsteady natural convection of water-based nanofluid within a right-angle trapezoidal cavity under the influence of a uniform inclined magnetic field using the mathematical nanofluid model p ... More
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