Optimized method for managing heat in an electrochemical storage system
The invention relates to an optimized method for managing the surface temperature and the core temperature of an electrochemical storage system under nominal and extreme operating conditions. For uses relating to hybrid and electric vehicles, the heat state (T) at the surface and in the core of the...
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Main Authors | , |
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Format | Patent |
Language | Chinese English |
Published |
08.01.2014
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Online Access | Get full text |
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Abstract | The invention relates to an optimized method for managing the surface temperature and the core temperature of an electrochemical storage system under nominal and extreme operating conditions. For uses relating to hybrid and electric vehicles, the heat state (T) at the surface and in the core of the elements constituting the system must be controlled in order to prevent any risk of thermal runaway, fire, and explosion. The reconstruction of the internal characteristics that are not directly measurable, such as the temperature in the core of the elements, is carried out using an electrical, thermal, and thermochemical runaway model of the battery. The method can be used synchronously with the operation of the battery itself (real time) using a model with concentrated parameters (0D), or offline, e.g. in the context of a calibration, an optimization, or an evaluation of the power and heat management strategies. The method makes it possible to simulate the thermal, electrical, and thermochemical runaway behavior |
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AbstractList | The invention relates to an optimized method for managing the surface temperature and the core temperature of an electrochemical storage system under nominal and extreme operating conditions. For uses relating to hybrid and electric vehicles, the heat state (T) at the surface and in the core of the elements constituting the system must be controlled in order to prevent any risk of thermal runaway, fire, and explosion. The reconstruction of the internal characteristics that are not directly measurable, such as the temperature in the core of the elements, is carried out using an electrical, thermal, and thermochemical runaway model of the battery. The method can be used synchronously with the operation of the battery itself (real time) using a model with concentrated parameters (0D), or offline, e.g. in the context of a calibration, an optimization, or an evaluation of the power and heat management strategies. The method makes it possible to simulate the thermal, electrical, and thermochemical runaway behavior |
Author | PRADA ERIC SAUVANT-MOYNOT VALERIE |
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Snippet | The invention relates to an optimized method for managing the surface temperature and the core temperature of an electrochemical storage system under nominal... |
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SubjectTerms | BASIC ELECTRIC ELEMENTS CALCULATING COMPUTING COUNTING ELECTRIC DIGITAL DATA PROCESSING ELECTRICITY MEASURING MEASURING ELECTRIC VARIABLES MEASURING MAGNETIC VARIABLES PHYSICS PROCESSES OR MEANS, e.g. BATTERIES, FOR THE DIRECT CONVERSIONOF CHEMICAL INTO ELECTRICAL ENERGY TESTING |
Title | Optimized method for managing heat in an electrochemical storage system |
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