Experimental and numerical analysis of 3D end effects in Naval Magnetohydrodynamic propulsion motors

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Abstract

This study explores the impact of end electric current on the performance of a marine magnetohydrodynamic (MHD) propulsion motor or thruster using a comprehensive 3D numerical simulation. The investigation focuses on various operating parameters, such as electromagnetic and drag forces, efficiency, losses, current, and different pressure components. To validate the numerical findings, a scaled-down experimental setup is utilised. The results demonstrate that certain operating parameters of MHD motors are not affected by the three-dimensional characteristics of their channels. These parameters, including fluid velocity, can be accurately calculated using the analytical model based on the effective electric current of the motor. Conversely, other operating parameters of MHD motors are significantly influenced by the end effects in their channels. For example, the overall efficiency, which depends on the total electric current of the motor, should be calculated using a more precise simulation method.

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Haghparast, M., & Alizadeh Pahlavani, M. R. (2024). Experimental and numerical analysis of 3D end effects in Naval Magnetohydrodynamic propulsion motors. Journal of Marine Engineering and Technology, 23(5), 373–381. https://doi.org/10.1080/20464177.2024.2375793

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