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首页> 外文期刊>Advances in Mechanical Engineering >CFD Investigation on 3-Dimensional Interference of a Five-Hole Probe in an Automotive Wheel Arch
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CFD Investigation on 3-Dimensional Interference of a Five-Hole Probe in an Automotive Wheel Arch

机译:汽车轮罩中五孔探针三维干涉的CFD研究

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摘要

Detailed flow measurements are essential for analysing flow structures found in confined spaces, particularly in various automotive applications. These measurements will be extremely helpful in solving flow dependent complexities. Although considerable progress has been made in computational techniques for investigating such flows, experimental flow measurements are still very difficult to carry out therein. Flows mapped using an array of robust instruments like multi-hole pressure probes can provide significant insight into the flow field of such complex flows. Pressure probes can withstand the harsh environments found in such applications; however being intrusive devices significant interference in flow field can limit their applicability. This paper presents an investigation of three-dimensional interference caused by multi-hole pressure probes in an automotive wheel arch. It involves simulation of flow around a pressure probe inserted at various locations within the wheel/wheel arch gap. Pressure and velocity fields along longitudinal and lateral planes have been mapped and the extent of interference caused by the probe along three orthogonal axes has been presented. A three-dimensional ellipsoid of interference has been defined to assist in recommending optimal placement of probes and minimise the error due to interprobe interaction, thus enhancing the measurement accuracy of transient flow phenomena.
机译:详细的流量测量对于分析狭窄空间中的流动结构至关重要,尤其是在各种汽车应用中。这些测量对解决流量相关的复杂性将非常有帮助。尽管在研究这种流量的计算技术上已经取得了相当大的进步,但是在其中仍然很难进行实验流量测量。使用一系列强大的仪器(如多孔压力探头)映射的流量可以为此类复杂流量的流场提供重要的洞察力。压力探头可以承受此类应用中的恶劣环境;然而,作为侵入性设备,对流场的重大干扰会限制其适用性。本文介绍了由汽车轮拱中的多孔压力探头引起的三维干涉。它涉及模拟在车轮/轮拱间隙内各个位置插入的压力探针周围的流动。绘制了沿纵向和横向平面的压力和速度场,并介绍了沿三个正交轴的探头引起的干扰程度。定义了三维干涉椭圆体,以帮助推荐最佳的探头布置,并最大程度地减少由于探针间相互作用而引起的误差,从而提高了瞬态流动现象的测量精度。

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