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Passenger Car Water Wading Evaluation Using CFD Simulation

机译:使用CFD模拟乘用车水涉水评估

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Water Wading refers to the situation where a car is moving through relatively deep water at low speed. The challenges of an automotive Original Equipment Manufacturer (OEM) is to integrate the functional parts like bumper, bumper grille, engine undercover, intake system etc., to enhance the vehicle quality and performance. One of the challenges in vehicle front end and engine room design is to prevent water entry into the air intake system during wading. If significant amount of water enter the air intake, some of the water could subsequently enter the engine cylinder, which would damage the critical components within the engine beyond repair. In general practice wading tests have been carried out during proto stage of vehicle development program to ensure vehicle performance. However a Computational Fluid Dynamics (CFD) method for carrying out water wading calculations early during the development phase offers reduction in development cost and time for a new vehicle. This paper explains the CFD methodology to evaluate the water entry into the air intake system. A detailed process development has been done for simulation methodology to finalize best meshing parameters and analysis procedure based on correlation with physical testing. The CFD and physical testing results are in ±10% of deviation. Various design modifications like changes in intake snorkel position and its design are attempted to improve the overall performance.
机译:水削弱是指汽车在低速下通过相对深水移动的情况。汽车原始设备制造商(OEM)的挑战是将功能部件相容,如保险杠,保险杠格栅,发动机卧底,进气系统等,以增强车辆质量和性能。车辆前端和发动机室设计的挑战之一是在涉水期间防止进入进气系统的进入进气系统。如果大量的水进入进气口,则一些水随后可以进入发动机缸,这会损坏发动机内的关键部件以外的修复。在一般的实践中,在车辆开发计划的原型阶段进行了涉及测试,以确保车辆性能。然而,用于在开发阶段期间早期进行水涉水计算的计算流体动力学(CFD)方法提供了新车的开发成本和时间的降低。本文解释了评估进入进气系统的CFD方法。对仿真方法进行了详细的进程开发,以便基于与物理测试相关的基于相关性的最佳啮合参数和分析过程。 CFD和物理测试结果偏差的±10%。尝试各种设计修改以及摄入呼吸管位置的变化及其设计来提高整体性能。

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