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Magnetic field effects on O2/Ar liquid flow through a platinum micro-channel via dissipative particle molecular dynamics approach

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Abstract In this computational work, we describe atomic behavior of Ar and O2 fluids in Pt micro-channel with external magnetic field. Our Dissipative Particle Dynamics (DPD) simulation results show the… Click to show full abstract

Abstract In this computational work, we describe atomic behavior of Ar and O2 fluids in Pt micro-channel with external magnetic field. Our Dissipative Particle Dynamics (DPD) simulation results show the poiseuille flow for these structures with/without external magnetic field. These DPD simulations done with LAMMPS (Large scale Atomic/Molecular Massively Parallel Simulator) package. Numerically, maximum value for density of Ar/O2 particles in platinum micro-channels is 0.042/0.043. Further, maximum ratio of these particles velocity reach to 0.104/0.097. This maximum value occur in middle region of micro-channel. Temperature of various fluid particles varies with similar behavior and reach to maximum value in 390/489 simulated bins of DPD box. Finally, we expected these computational results can be used for optimize the industrial process such as mass and heat transfer.

Keywords: micro channel; magnetic field; platinum micro; dissipative particle

Journal Title: Journal of Molecular Liquids
Year Published: 2021

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