首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers >Experimental and numerical analysis of fluid-solid-thermal coupling on electric fuel pump
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Experimental and numerical analysis of fluid-solid-thermal coupling on electric fuel pump

机译:电燃料泵流体固 - 热耦合的实验与数值分析

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摘要

This paper designs an axial partition fuel cooling shell to solve the problem of temperature rise in the motor of the electric fuel pump (EFP). And describes a simplified method in conjunction with the computational fluid dynamics(CFD) to analyze heat generations and fuel cooling effects in integrated EFPs. Furthermore, CFD is used to numerically simulate the coupling effects among the fluid-solid-thermal based on multiple physical field. With varying different working conditions of the pump, cooling characteristics of the fuel cooling shell are obtained through CFD results. Finally, an experimental system for the EFP is established to verify reliability of the simplified method and the effectiveness of the fuel cooling scheme. Results show that fuel cooling shell plays an essential role in heat dissipating, with a maximum reduction of up to approximately 42 K in temperature. Temperature error between simulations and experiments is less than 4%, which indicates reliabilities of the simplified model and fuel cooling shell.
机译:本文设计了一种轴向隔离燃料冷却壳,以解决电燃料泵(EFP)的电动机温度升高的问题。并结合计算流体动力学(CFD)来描述一种简化的方法,以分析集成EFP中的热代和燃料冷却效果。此外,CFD用于基于多个物理领域的流体固态热耦合效应来数值上模拟。随着泵的不同工作条件,通过CFD结果获得燃料冷却壳的冷却特性。最后,建立了一种EFP的实验系统,以验证简化方法的可靠性和燃料冷却方案的有效性。结果表明,燃料冷却壳在散热中起着重要作用,最大降低至高达约42k的温度。模拟和实验之间的温度误差小于4%,表示简化模型和燃料冷却壳的可靠性。

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