Finite volume discretization of Laplace and gradient operators is modified to account for internal voltage jumps, enabling 3D current distribution simulations in liquid metal batteries, validated analytically and applied to Li||Bi discharge.
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A P2D electrochemical-thermal-degradation model with consistent parameterization predicts capacity fade trajectories and internal modes for NMC cells across calendar and combined ageing conditions, showing sub-linear to accelerated fade depending on usage.
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Modeling discontinuous potential distributions using the finite volume method, and application to liquid metal batteries
Finite volume discretization of Laplace and gradient operators is modified to account for internal voltage jumps, enabling 3D current distribution simulations in liquid metal batteries, validated analytically and applied to Li||Bi discharge.
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Linking Calendar and Cycle Ageing in Lithium-Ion Batteries through Consistent Parameterisation of an Electrochemical-Thermal-Degradation Model
A P2D electrochemical-thermal-degradation model with consistent parameterization predicts capacity fade trajectories and internal modes for NMC cells across calendar and combined ageing conditions, showing sub-linear to accelerated fade depending on usage.