Электронная библиотека (репозиторий) Томского государственного университета
Sheremet, Mikhail A. | статьи в журналах

Add to Quick Collection   All 204 Results

Showing items 16 - 30 of 204.
Sort:
 Add All Items to Quick Collection
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: Numerical heat transfer. Part A : Applications. 2013. Vol. 64, № 12. P. 994-1015
Type: статьи в журналах
Date: 2013
Source: Fluids. 2021. Vol. 6, № 2. P. 91 (1-15)
Type: статьи в журналах
Date: 2021
Description: In this study, a numerical modelling of thermal radiation and turbulent thermogravitational convection in a large-scale chamber containing a thermally-generating element is conducted. The lower border ... More
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: Journal of Heat Transfer. 2014. Vol. 136. P. 082501-1-082501-5
Type: статьи в журналах
Date: 2014
Source: Energies. 2019. Vol. 12, № 14. P. 2807 (1-17)
Type: статьи в журналах
Date: 2019
Description: In the present investigation, the free convection energFree convection of hybrid nanofluids in a C-shaped chamber under variable heat flux and magnetic field: simulation, sensitivity analysis, and art ... More
Source: Transport in porous media. 2014. Vol. 101, № 3. P. 437-463
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: 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: Nanomaterials. 2020. Vol. 10, № 2. P. 284 (1-17)
Type: статьи в журналах
Date: 2020
Description: The cooling of electronic elements is one of the most important problems in the development
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
Source: Alexandria engineering journal. 2021. Vol. 60, № 3. P. 2769-2778
Type: статьи в журналах
Date: 2021
Description: Development of electronic devices depends on cooling techniques. An efficiency of cooling methods can be improved using more effective heat-transfer fluids and extended heat-exchange surfaces. Free co ... More
Source: Computers and fluids. 2015. Vol. 118. P. 182-190
Type: статьи в журналах
Date: 2015
Source: Case studies in thermal engineering. 2021. Vol. 26. P. 101199 (1-12)
Type: статьи в журналах
Date: 2021
Description: This paper aims to analyze the effects of different nanoparticles shape factor, EMHD and radiation parameters for the Cu–Al2O3/H2O nanofluid flow towards a stretching/shrinking Riga plate. The model i ... More
Source: Symmetry. 2021. Vol. 13, № 1. P. 122 (1-17)
Type: статьи в журналах
Date: 2021
Description: The present paper aims to analyze the thermal convective heat transport and generated irreversibility of water-Cu-Al2O3 hybrid nanosuspension in an odd-shaped cavity. The side walls are adiabatic, and ... More
^