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2017 | OriginalPaper | Buchkapitel

MHD of Large Scale Liquid Metal Batteries

verfasst von : Valdis Bojarevics, Andrejs Tucs

Erschienen in: Light Metals 2017

Verlag: Springer International Publishing

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Abstract

Liquid metal batteries are candidates for large-scale energy storage in a national energy grid. The attraction of the liquid batteries lies in the fast kinetics at liquid metal-electrolyte interfaces, simple assembly and recycling, while the major difficulties to implementation are their sensitivity to liquid motion and operation at elevated temperatures. The concept of liquid metal battery bears a close similarity to aluminium electrolytic production cells. The two liquid layer magnetohydrodynamic effects can be projected to the three liquid layer self-segregated structure of the batteries. The trend for commercial electrolysis cells is to increase their size instead of operating a large number of parallel small ones. Our aim is to develop a numerical model for the three density-stratified electrically conductive liquid layers using 3D and shallow layer approximation accounting for specific magnetohydrodynamic effects during periods of battery charge/discharge. A possibility to reuse infrastructure of an old aluminium electrolysis potline for a large scale liquid batteries facility is discussed.

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Metadaten
Titel
MHD of Large Scale Liquid Metal Batteries
verfasst von
Valdis Bojarevics
Andrejs Tucs
Copyright-Jahr
2017
DOI
https://doi.org/10.1007/978-3-319-51541-0_84

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