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- W4311496229 abstract "Thermal management of lithium-ion battery plays a very important role in battery life and safety. Accurate heat generation calculation and low battery heat generation can reduce the difficulty of battery thermal management. However, the contribution of polarization heat, ohmic heat and reversible heat to the total heat generation and their individual sensibilities to battery material parameters have not been well studied, which brings difficulties in the battery thermal management. In this study, the effects of battery parameters and SOC variation ranges of electrodes on the polarization heat, ohmic heat and reversible heat production are analyzed numerically by using an electrochemical-thermal model, and the most sensible parameters influencing the three parts of heat generation are obtained. It is found that the reaction rate coefficient, maximum concentration of lithium ion in active materials and radius of solid active particles are the most sensible parameters influencing the polarization heat. The electrolyte conductivity and liquid volume fraction of the separator are the most sensible parameters influencing the ohmic heat. Overall, decreasing the electrode particle radius and increasing the electrolyte conductivity are the best methods to control heat generation. The electrode SOC influences the exchange current density which affects the battery polarization heat, and its effect is more obvious when the maximum lithium ion concentration of electrodes is higher. The heat generation of the charging process is reduced by increasing the endothermic time of the reversible heat of the negative electrode by changing negative electrode capacity or initial negative electrode SOC." @default.
- W4311496229 created "2022-12-26" @default.
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- W4311496229 date "2023-02-01" @default.
- W4311496229 modified "2023-10-14" @default.
- W4311496229 title "Numerical study on the heat generation and thermal control of lithium-ion battery" @default.
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- W4311496229 doi "https://doi.org/10.1016/j.applthermaleng.2022.119852" @default.
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