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- W3152912283 abstract "• A new mesh-free and parallelizable Monte-Carlo method for heat conduction in packed beds has been developed. • A mesh-free and parallelizable Monte-Carlo method to obtain the magnetic field of a permanent magnet with an arbitrary shape has been introduced. • Effect of magnetic field on thermal conductivity enhancement of ferromagnetic particle bed domains is investigated. • Simulation Results are verified against experimental measurements. A novel mesh-free approach has been developed to solve the conduction heat transfer equations in a particulate bed domain of ferromagnetic powder with and without magnetic field effect. The proposed method is based on a probabilistic approach to defining various configurations of energy transfer paths around an arbitrary particle called “local packed element”, and results are compared with experimental data. Furthermore, a Monte-Carlo approach is used to calculate the magnetic field of a permanent magnet with an arbitrary shape on any arbitrary point around it, and the outcome is also compared against measurements. In both cases, the proposed mesh-free method shows excellent agreement with available empirical results. The proposed method is then used to model the effect of an external magnetic field in the conductive heat transfer in a particulate bed of ferromagnetic powder. It is concluded that the presence of a magnetic field increases thermal diffusion in ferromagnetic powder bed domains by increasing thermal conductivity." @default.
- W3152912283 created "2021-04-26" @default.
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- W3152912283 date "2021-08-01" @default.
- W3152912283 modified "2023-10-18" @default.
- W3152912283 title "A parallelizable mesh-free approach for simulation of heat conduction in ferromagnetic particulate materials under magnetic field effect" @default.
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- W3152912283 doi "https://doi.org/10.1016/j.ijheatmasstransfer.2021.121343" @default.
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