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

Add to Quick Collection   All 206 Results

Showing items 16 - 30 of 206.
Sort:
 Add All Items to Quick Collection
Source: Thermal science and engineering progress. 2021. Vol. 21. P. 100793 (1-22)
Type: статьи в журналах
Date: 2021
Description: In this study, double diffusive free convection of nanofluid within a confined rectangular duct is investigated numerically. The momentum and energy equations are placed in the form of difference equa ... More
Source: International communications in heat and mass transfer. 2022. Vol. 139. P. 106510 (1-15)
Type: статьи в журналах
Date: 2022
Description: A numerical simulation is conducted on the convective heat transfer of liquid having variable viscosity in a closed porous 3D enclosure under an influence of isothermal or heat-generating solid body. ... More
Source: Computers and fluids. 2015. Vol. 118. P. 182-190
Type: статьи в журналах
Date: 2015
Source: Journal of thermal analysis and calorimetry. 2021. Vol. 146, № 2. P. 725-738
Type: статьи в журналах
Date: 2021
Description: The cooling process of electronic devices having heat-generating elements is a major challenge allowing to develop electronics industry. Therefore, a creation of novel cooling techniques is an importa ... More
Source: Mathematics. 2021. Vol. 9, № 11. P. 1275 (1-17)
Type: статьи в журналах
Date: 2021
Description: The fluid flow over a yawed cylinder is useful in understanding practical significance for undersea applications, for example, managing transference and/or separation of the boundary layer above subme ... More
Source: Numerical heat transfer. Part A : Applications. 2013. Vol. 64, № 12. P. 994-1015
Type: статьи в журналах
Date: 2013
Source: International journal of heat and mass transfer. 2014. Vol. 73. P. 340-353
Type: статьи в журналах
Date: 2014
Source: Energies. 2019. Vol. 12, № 4. P. 666 (1-16)
Type: статьи в журналах
Date: 2019
Description: In this study, forced convection of Fe3O4–water nanofluid in a bifurcating channel was numerically studied under the influence of variable magnetic. Galerkin residual finite element method was used fo ... More
Source: Energies. 2021. Vol. 14, № 2. P. 492 (1-24)
Type: статьи в журналах
Date: 2021
Description: In this study, thermoelectric generation with impinging hot and cold nanofluid jets is considered with computational fluid dynamics by using the finite element method. Highly conductive CNT particles ... More
Source: Journal of molecular liquids. 2016. Vol. 221. P. 518-525
Type: статьи в журналах
Date: 2016
Description: An analysis of natural convective flow and heat transfer of a micropolar fluid in a wavy differentially heated cavity has been performed. Governing partial differential equations formulated in non-dim ... More
Source: Journal of Heat Transfer. 2014. Vol. 136. P. 082501-1-082501-5
Type: статьи в журналах
Date: 2014
Source: International journal of mechanical sciences. 2020. Vol. 165. P. 105192 (1-12)
Type: статьи в журналах
Date: 2020
Description: Intensification of energy transport in different engineering devices is the challenge for many scientists and engi- neers. This problem can be solved by usage of various fins within the device and eff ... More
Source: Transport in porous media. 2014. Vol. 101, № 3. P. 437-463
Type: статьи в журналах
Date: 2014
Source: Mathematical and Computational Applications. 2021. Vol. 26, № 2. P. 41 (1-24)
Type: статьи в журналах
Date: 2021
Description: In this research, the analytical methods of the differential transform method (DTM), homotopy asymptotic method (HAM), optimal homotopy asymptotic method (OHAM), Adomian decomposition method (ADM), va ... More
Source: International journal of numerical methods for heat & fluid flow. 2021. Vol. 31, № 1. P. 134-153
Type: статьи в журналах
Date: 2021
Description: Purpose This paper aims to study the mathematical modeling of passive cooling systems for electronic devices. Improving heat transfer is facilitated by the correct choice of the working fluid and the ... More

Date

^