Abstract:
A metal-air battery includes a battery cell module which generates electricity through metal oxidation and oxygen reduction, a buffer tank which fluidly communicates with the battery cell module and has an internal pressure higher than an internal pressure of the battery cell module, and a first fluid intermittent portion which controls a flow of fluid from the battery cell module to an outside of the battery cell module, based on predetermined open and close periods.
Abstract:
A metal air battery system includes: a battery cell module configured to generate electricity by oxidation of a metal and reduction of oxygen; a plurality of air purification modules in fluid communication with the battery cell module; a compressed air supply unit configured to supply compressed air to the plurality of air purification modules; and a buffer tank disposed between the compressed air supply unit and the plurality of air purification modules, and configured to receive compressed air from the compressed air supply unit and to supply the compressed air to the plurality of air purification modules, wherein a bottom portion of the buffer tank includes a plurality of holes, and a hole of the plurality of holes corresponds to an inlet of an air purification module in the plurality of air purification modules, and the hole is directly connected to the corresponding inlet of the air purification module.
Abstract:
A cooling device and a battery apparatus including the cooling device is provided. The cooling device includes a heat transfer body configured to be in contact with at least a portion of the battery pack to absorb heat from the portion of the battery pack through a first coolant included in the heat transfer body and a cooling flow path disposed relative to the heat transfer body, and configured to cool the heat absorbed from the heat transfer body through a second coolant included in the cooling flow path.
Abstract:
A cooling device includes a direct liquid cooling medium and a plurality of heat transferrers. The direct liquid cooling medium is configured to directly contact and absorb heat from a plurality of battery modules included in a battery pack. The plurality of heat transferrers, each respectively disposed between the battery modules, is configured to absorb heat generated in a portion of each of the battery modules through an internal cooling medium.
Abstract:
A metal-air battery apparatus includes a positive electrode, a negative electrode on the positive electrode, an ion conductive layer between the positive electrode and the negative electrode, and a temperature control unit which controls temperatures of the positive electrode and the negative electrode. The metal-air battery apparatus may further include a monitoring unit which monitors an internal condition of the metal-air battery apparatus, and the temperature of at least one of the positive electrode and negative electrode may be controlled by monitoring the internal condition of the metal-air battery apparatus.
Abstract:
A battery optimization method and apparatus is provided. The battery optimization method includes selectively adjusting a parameter set related to a corresponding SoC section among a plurality of parameters of an electrochemical thermal (ECT) model based on operating data of each SoC section, and updating the plurality of parameters of the ECT model based on adjusted parameter sets.
Abstract:
A cooling structure includes a plurality of bars arranged separately from each other and configured to press a battery cell, a support configured to support the plurality of bars, flow paths defined by a first surface of the battery cell and one pair of neighboring bars, and configured to guide a flow of a cooling medium, with the cooling medium being in direct contact with the first surface of the battery cell, and a separation wall provided in at least one of the flow paths and being configured to separate each of the at least one flow path into sub-flow paths.
Abstract:
A metal air battery includes an air purification module which communicates fluid to a battery cell module, purifies air flowing from an outside, and supplies the purified air to the battery cell module. The air purification module includes: a first air purifier which filters a first impurity of a plurality of impurities in the air flowing from the outside; and a second air purifier which filters a second impurity of the plurality of impurities, which is different from the first impurity.