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- W71359405 abstract "This paper presents additional analysis for unfolding various phenomena of magnetization and subsequent relaxation taking place inside the ferro-fluid of the redox flow cell catholyte channel during discharge and recharging processes. For the ultimate goal of establishing a true and reliable equivalent circuit for the redox flow cell, all possible magneto-fluid reactions have to be accounted for, including dipoles ions-magnetic field interaction as well as neutral particles rotations, and their moment orientations with the external magnetic field. Previous published work by this author identified various aspects of ferro-fluid ions alignment with the magnetic field including the mode of magnetization and its susceptibility as well as ferro-resonance and Bloch wall potential energy distribution. In this paper, this author expands further on the work done by other authors regarding magnetization properties of waterbased ferro-fluids. Mathematical models are set for the surfactant layer with respect to particle diameter to account for predictable rotational and moments time constant of the order of 1 msec. Solution for the state of magnetization and its time change are derived as well as the particles distribution function and its 2nd spatial derivatives. All these information about the phenomenon of ferro-fluid magnetizations in the ionic and the neutral statesmore » will be used as direct tools in establishing a true equivalent circuit for the redox flow cell that will lead eventually in eliminating the adverse effects of the internal circulating currents and total improvement in the cell operational performance.« less" @default.
- W71359405 created "2016-06-24" @default.
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- W71359405 date "1980-12-01" @default.
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- W71359405 title "Equivalent circuit parametric model requirements of the redox flow cell for bulk energy storage" @default.
- W71359405 hasPublicationYear "1980" @default.
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