A rapid optimization method for the flow channel spacing of the power battery air cooling system
An air-cooled system and power battery technology, applied in secondary batteries, electrochemical generators, design optimization/simulation, etc., can solve problems such as lack of battery spacing optimization methods, achieve simple implementation, improve cooling capacity, and optimize speed. Effect
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[0028] This embodiment provides a method for quickly optimizing the flow channel spacing of the power battery air-cooling system. The flow chart of the method is as follows figure 1 shown, including the following steps:
[0029] S-1. Set the initial spacing of the cooling channels to a uniform spacing according to the total volume of the power battery air cooling system, and set the number of adjustments to the cooling channel spacing, the size Δd of each spacing adjustment, and the flow rate of each cooling channel relaxation factor r i ;
[0030] S-2. Using the numerical method to calculate the velocity field corresponding to the power battery air-cooling system distributed at the initial spacing, and obtain the air flow Q of each cooling channel i , combined with the set flow relaxation factor r for each cooling channel i , to calculate the equivalent air flow Q’ for each cooling channel i =Q i ×r i , and the standard deviation of the corresponding equivalent air flow...
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