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Convection Heat Transfer Under the Effect of Uniform and Periodic Magnetic Fields With Uniform Internal Heat Generation: a New Comprehensive Work To Develop the Ability of the Multi Relaxation Time Lattice Boltzmann Method

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Date

2022

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Publisher

Springer

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Green Open Access

No

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Abstract

The purpose of the present work is to investigate the effect of the angle of application of magnetic field in two types of uniform and non-uniform on the nanofluid flow characteristics and natural convection heat transfer in the presence of uniform heat generation. This numerical study was performed using multi relaxation time lattice Boltzmann method (MRT-LBM). The D(2)Q(9) and D(2)Q(5) grid arrangements were used to simulate the flow and temperature fields, respectively. The results show that in all cases, increasing the strength of magnetic field (the Hartmann number) reduces the average Nusselt number, which increases with increasing the heat generation coefficient. Applying a magnetic field horizontally results in an average of about 15% lower Nusselt number compared to the vertical. Increasing the strength of magnetic field (the Hartmann number) and the average Nusselt number is achieved by periodically applying a magnetic field instead of applying a uniform one. As the aspect ratio of the cavity increases, the non-uniform effect of applying a magnetic field becomes more apparent.

Description

Sajadi, S.Mohammad/0000-0001-8284-5178

Keywords

Uniform Heat Generation, Natural Convection, Multi Relaxation Time Lattice Boltzmann Method, Periodic Magnetic Field

Turkish CoHE Thesis Center URL

Fields of Science

0103 physical sciences, 01 natural sciences, 0104 chemical sciences

Citation

Nemati, Mohammad...et al. (2021). "Convection heat transfer under the effect of uniform and periodic magnetic fields with uniform internal heat generation: a new comprehensive work to develop the ability of the multi relaxation time lattice Boltzmann method", Journal of Thermal Analysis and Calorimetry.

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Q2

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Q1
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OpenCitations Citation Count
5

Source

Journal of Thermal Analysis and Calorimetry

Volume

147

Issue

14

Start Page

7883

End Page

7897
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CrossRef : 5

Scopus : 6

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Mendeley Readers : 3

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