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CFD Analysis of Air Intake System With Negative Pressure on Intake Grill

机译:进气烤架负压的进气系统的CFD分析

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The objective of the current research was to predict and analyze the flow through the grill of air intake system which is positioned behind the front wheel arch of vehicle. Most of the vehicles used today locate the grill of air intake at the front side so to acquire benefit of ram effect. In some cases, however, the grill is located behind the vehicle to improve wading performance. The geometry of air intake system of Land Rover Freelander was used in the modelling approach. The study was focused on different flow speeds on the grill at high load operation where the air speed at the grill side is high and creates negative pressure. The CFD results are validated against experimental data of steady flow test bench. It was found that flow visualization of CFD simulations under steady flow conditions could explore the air flow behavior in the intake manifold system in such a way that geometrical design can be modified to increase the capabilities of air induction system to suck more air to the engines.
机译:目前研究的目的是预测和分析通过位于车辆前轮拱后面的进气系统的流动的流动。今天使用的大多数车辆定位前侧的进气烤架,以便获得RAM效果的益处。然而,在某些情况下,烤架位于车辆后面以提高涉水性能。陆流动站Freelander进气系统的几何形状用于建模方法。该研究专注于在高负荷操作上的烤架上的不同流速,其中格栅侧的空气速度高,产生负压。 CFD结果针对稳定流动测试台的实验数据验证。结果发现,在稳定流动条件下的CFD模拟的流动可视化可以以这种方式探讨进气歧管系统中的空气流动行为,使得可以修改几何设计以增加空气感应系统的能力,以将更多的空气吸入发动机。

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