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Simulating Thermal Characteristics of an Electric Vehicle Fuse Using Multiphysics Based on Finite Element Method

机译:基于有限元法的多麦体验模拟电动车辆熔断器的热特性

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Circuit protection fuses are an integral part in electric powertrain based automobiles such as Hybrid electric vehicles (HEVs)/Plug-in hybrid vehicles (PHEVs)/Battery electric vehicle (BEVs) to protect the components under overcurrent situations. This paper describes the transient thermal characteristics of fuses used in such electric vehicles where thermal cycling related failures are of great concern. A robust and accurate three-dimensional multiphysics model has been developed for obtaining temperature response in fuse element by solving the electric potential equation and thermal diffusion equation. Experiments were also performed to validate the model within 5 degree Celsius accuracy for various operating currents and thermocouple locations. Using the validated model, a representative duty cycle relevant to electric vehicle was simulated to understand the thermal behavior. Various operating parameters and their effect on thermal performance is also discussed. The described findings and simulation methodology would enable the fuse design engineers to incorporate various thermal management strategies at product and system level considering the thermal cycling effects.
机译:电路保护保险丝是基于电动动力驱动的汽车的组成部分,例如混合动力电动车辆(HEV)/插入式混合动力汽车(PHEV)/电池电动车(BEV),以保护组件在过电流下。本文介绍了在这种电动车辆中使用的保险丝的瞬态热特性,其中热循环相关的故障非常关注。通过求解电势方程和热扩散方程,开发了一种坚固且精确的三维多体模型,用于获得熔丝元件中的温度响应。还进行了实验以验证在5摄氏度内的模型,用于各种操作电流和热电偶位置。使用验证的模型,模拟了与电动车辆相关的代表占空比,以了解热行为。还讨论了各种操作参数及其对热性能的影响。所描述的发现和仿真方法将使熔丝设计工程师能够考虑热循环效果的产品和系统级别的各种热管理策略。

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