Numerical investigation of electro-thermo-convection in a square enclosure with incorporated hot solid body

被引:0
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作者
Walid Hassen
Lioua Kolsi
Kaouther Ghachem
Mohammed A. Almeshaal
Chemseddine Maatki
Mohamed Naceur Borjini
机构
[1] Princess Noura Bint Abdul Rahman University,Department of Industrial Engineering and Systems, College of Engineering
[2] University of Monastir,Laboratory of Metrology and Energy Systems
[3] Ha’il University,Mechanical Engineering Department, College of Engineering
[4] Al Imam Mohammad Ibn Saud Islamic University,Department of Mechanical Engineering, College of Engineering
关键词
Electro-thermo-convection; Finite volume method; Stream function–vorticity; Incorporated body; Enhancement heat transfer;
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学科分类号
摘要
The electro-thermo-convection in a square cavity with incorporated hot solid body is numerically investigated. The finite volume method associated with Patankar’s “blocked-off-regions” technique is applied. A potential difference is applied between the hot obstacle and the horizontal walls in order to eliminate the so-called dead zone created at the bottom of the cavity. The flow movement is induced not only by thermal buoyancy forces but also by the electric Coulomb force. Calculations are made for several injection levels (1 ≤ C ≤ 10), various obstacle shape factors (1 ≤ l/w ≤ 9), different number of electric Rayleigh (0 ≤ T ≤ 800), multiple thermal Rayleigh numbers (2000 ≤ Ra≤ 30,000) and 03 obstacle positions. The results show that according to the intensity of the applied electrical forces, two types of regimes are identified: a thermally dominated regime characterized by a low heat exchange at the bottom of the obstacle and conversely an electrically dominated regime with an excellent heat exchange over the entire cavity. It has been demonstrated that it is possible to improve the heat transfer up to: 43% by changing the shape factor of the obstacle; 82% by varying the injection level and 532% by applying electrical forces.
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页码:2647 / 2661
页数:14
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