The European physical journal2022,Vol.231Issue(13/14) :17.DOI:10.1140/epjs/s11734-022-00584-9

Natural convection investigation under influence of internal bodies within a nanofluid-filled square cavity

Abdulsahib, Ahmed Dhafer Hashim, Atheer Saad Al-Farhany, Khaled Abdulkadhim, Ammar Mebarek-Oudina, Fateh
The European physical journal2022,Vol.231Issue(13/14) :17.DOI:10.1140/epjs/s11734-022-00584-9

Natural convection investigation under influence of internal bodies within a nanofluid-filled square cavity

Abdulsahib, Ahmed Dhafer 1Hashim, Atheer Saad 2Al-Farhany, Khaled 1Abdulkadhim, Ammar 3Mebarek-Oudina, Fateh4
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作者信息

  • 1. Univ Al Qadisiyah
  • 2. Al Qasim Green Univ
  • 3. Al Mustaqbal Univ Coll
  • 4. Univ 20 Aout 1955 Skikda
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Abstract

The current article presents a numerical simulation of the nanofluid convection inside a square enclosure with two inner adiabatic circular bodies. Galerkin finite-element analysis was utilized to solve the governing equations under the assumptions of laminar, steady flow conditions considering a homogeneous single-phase approach. The parameters under investigation are Rayleigh number (Ra), solid volume fraction, the horizontal position of the two inner cylinders, and the inclination angle of the enclosure. The results indicate that increasing the Rayleigh number, and the solid volume fraction improves the heat transport rate. It is obtained that at low Ra, there is no significant impact on the enclosure angle, while as the Ra goes up, the heat transfer rate increases gradually. In addition, the best location of the internal bodies is in the middle of the cavity as it exhibits an increase in the flow velocity. To obtain the highest Nusselt number, it is recommended to use an inclination angle of 30 at any value of the Rayleigh number.

Key words

LID-DRIVEN CAVITY/HEAT-TRANSFER/MIXED CONVECTION/ENTROPY GENERATION/CIRCULAR-CYLINDER/ENCLOSURE/WALL/FLOW/SIMULATION/MODEL

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出版年

2022
The European physical journal

The European physical journal

ISSN:1951-6355
被引量1
参考文献量57
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