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Modelling of electrical capacitance dependences of magnetic nanofluid layer in an electric field

M. S. Demin - T. F. Morozova

North-Caucasus Federal University, 1 Pushkin str., 355009 Stavropol, Russia

Abstract
Results of the analysis of linear regression models are presented described in the experimental studies on the electrical capacity of a cell with a microlayer of magnetic nanofluid carried out with changed input parameters (factors), such as the polarizing voltage (0-20 V), the volume concentration of the disperse phase (2.3-14.4%), the interelectrode gap (100-200 μm), the layer temperature (293-368 K). Two-dimensional and three-dimensional graphical dependences of the electrical capacitance of the microlayer of magnetic nanofluid determined by the input parameters are presented. Figs 6, Refs 8.

Magnetohydrodynamics 54, No. 1/2, 91-96, 2018 [PDF, 0.22 Mb]

Copyright: Institute of Physics, University of Latvia
Electronic edition ISSN 1574-0579
Printed edition ISSN 0024-998X
DOI: http://doi.org/10.22364/mhd