O. Andreev, Yu. Kolesnikov
We present an experimental study of a liquid metal flow in a rectangular channel under the influence of an inhomogeneous magnetic field. This is a fundamental problem of liquid metal magnetohydrodynamics that is relevant to the technique of electromagnetic braking in the process of continuous casting of steel as well as for Lorentz force velocimetry. Based on local velocity and electric potential measurements, we identify three distinct flow regions; namely, a turbulence suppression region, a vortical region, and a stable flow region. Our findings contribute to a deeper understanding of the dynamics of liquid metals in magnetic fields and hold implications for industrial applications such as in the production of metals and energy generation technologies.
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title={Corrected Article Experimental study of},
author={O. Andreev and Yu. Kolesnikov},
year={2026},
language={en}
}TY - JOUR TI - Corrected Article Experimental study of AU - O. Andreev AU - Yu. Kolesnikov PY - 2026 LA - en ER -
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