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Full Hybrid Electrical Vehicle Battery Pack System Design, CFD Simulation and Testing

机译:全混合动力车电池组系统设计,CFD仿真和测试

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CFD analysis was performed using the FLUENT software to design the thermal system for a hybrid vehicle battery pack. The battery pack contained multiple modular battery elements, called bricks, and the inlet and outlet bus bars that electrically connected the bricks into a series string. The simulated thermal system was comprised of the vehicle cabin, seat cavity, inlet plenum, battery pack, a downstream centrifugal fan, and the vehicle trunk. The fan was modeled using a multiple reference frame approach. A full system analysis was done for airflow and thermal performance optimization to ensure the most uniform cell temperatures under all operating conditions. The mesh for the full system was about 13 million cells run on a 6-node HP cluster. A baseline design was first analyzed for fluid-thermal performance. Subsequently, multiple design iterations were run to create uniform airflow among all the individual bricks while minimizing parasitic pressure drop. NVH issues were also addressed in the design by keeping the flow streamlined thereby minimizing flow-induced turbulence. The prediction for system pressure drop and cell temperature correlated well with test data on an instrumented battery pack.
机译:使用FLUENT软件来设计用于混合车辆的电池组的热系统进行CFD分析。所述电池组包含多个模块化电池元件,称为砖块,以及在入口和出口汇流条,其电连接在所述砖成串联串。模拟的热系统包括车厢,座腔,进气室,电池组中,下游的离心式风扇,并且车辆树干。所述风扇是使用多个参考帧的方法建模。一个完整的系统,分析了气流和热性能做了优化,以确保所有操作条件下最均匀的电池温度。为全面系统的网格为约13亿个细胞的6节点惠普集群上运行。首先分析了基线设计流体散热性能。随后,多个设计迭代运行,以创建所有单个砖块之间均匀的空气流,同时最小化寄生压降。 NVH问题也解决在设计中通过保持流线型从而最大限度地减少流动引起的湍流流动。用于系统的压力降和电池温度的预测与试验数据非常相关的装有仪表的电池组。

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