MHD mixed convection flow of alumina - water nanofluid into a lid-driven cavity with different patterns of wavy sidewalls

Publish Year: 1403
نوع سند: مقاله ژورنالی
زبان: English
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JR_JCAM-55-1_008

تاریخ نمایه سازی: 26 بهمن 1402

Abstract:

This research investigates the numerical analysis of magnetohydrodynamic (MHD) mixed convection flow and heat transfer within a bottom lid-driven cavity filled with water-alumina (Al۲O۳) nanofluid. The cavity's sidewalls exhibit a wavy profile and are maintained at distinct temperatures. Cavity domain exhibit distinct free and force convections. These wavy walls, characterized by zigzag shapes determined by various wave amplitudes and their ratios (wave form), create a dynamic thermal environment. The top and bottom surfaces remain flat and well-insulated, while forced convection is induced by the drag of the bottom wall from left to right at a constant speed. Additionally, the bottom wall is subjected to a vertical magnetic field. The system of equations is discretized using the finite difference method. The numerical solutions are derived by the Gauss-Seidel iterative method. The study primarily focuses on investigating the effects of key parameters, including the wavy wall geometry, solid volume fraction (۰ ≤ φ ≤ ۰.۰۰۰۳), Rayleigh number (۱۰۳≤ Ra ≤۱۰۵), and Hartmann number (۰ ≤ Ha ≤۰.۶). Numerical solutions are computed across different ranges of these parameters, and the obtained results are successfully validated against previous numerical studies. The findings reveal that higher Hartmann numbers and solid volume fractions lead to lower circulation rates and Nusselt numbers. Convection is markedly enhanced with higher amplitude and its ratios of the wavy sidewalls. The combined two-sinusoidal function with the wave amplitudes of ۲.۵ and ۰.۴۷ of provides the highest mean Nusselt numberof۳.۲۰۴ with the highest dimensionless stream function of ۱.۶۳۸. These results highlight the significant influence of the wave form on both flow and temperature distributions.

Authors

Ahmed Kadhim Hussein

College of Engineering -Mechanical Engineering Department - University of Babylon - Babylon City, Hilla, Iraq.

Watit Pakdee

Center for R&D on Energy Efficiency in Thermo-Fluid Systems, Department of Mechanical Engineering, Thammasat University, Klong Nueng, Klong Lueng, Pathum Thani, Thailand.

Mohamed Bechir Ben Hamida

College of Engineering, Department of Chemical Engineering, Imam Mohammad Ibn Saud Islamic University (IMSIU), Riyadh, Saudi Arabia.

Bagh Ali

School of Mechanical Engineering and Automation, Harbin Institute of Technology, Shenzhen ۵۱۸۰۵۵, China.

Farhan Lafta Rashid

Petroleum Engineering Department, College of Engineering, University of Kerbala, Kerbala, Iraq.

Uddhaba Biswal

Department of Mathematics, Laxminarayan College, Jharsuguda, Odisha ۷۶۸۲۰۲, India.

Muataz S. Alhassan

Division of advanced nano material technologies, Scientific Research Center, Al-Ayen University,Thi-Qar, Iraq.

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