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INFLUENCE OF CROSS-SECTIONAL SHAPE ON THE FLOW IN A HIGHLY BENT RESEARCH INTAKE DUCT FOR JET ENGINES

机译:高弯发动机进气道横截面形状对流动的影响

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In many modern aircraft concepts, civil as well as military ones, the engine is fully integrated into the fuselage. This integration often requires a highly bent intake duct. Due to the high degree of curvature and also the diffusive character of the intake duct, the inflow at the engine's fan is non-uniform and may feature severe flow distortions. The size, strength, and pattern of these flow distortions may affect the engine's compressor system and its safety margins. In this paper five highly bent intake duct geometries are analyzed by means of CFD. They evolve from the same baseline geometry but are defined by different cross-sectional shapes. With this variation of the cross-sections, the influence of the cross-sectional shape on the aerodynamics of the intake duct is investigated qualitatively. Based on these analyses a sixth intake duct geometry was created as test vehicle for experimental investigation of intake-compressor interaction within the engine test facility. The defining cross-sectional shapes were selected in order to achieve a flow distortion at the duct outlet plane, that is small enough to ensure a safe engine operation, but is still strong enough to provoke interaction of the distorted flow and the compressor flow. The setup for these fully numerical investigations is based on previous studies of the aerodynamics of intake ducts at the Institute of Jet Propulsion. It is shown that the entrance cross-section has a strong influence on the flow throughout the whole intake duct. Additionally, it could be deter- mined that the flow distortion caused by the strong curvature of the intake duct can be reduced in size and strength by a proper combination of cross-sectional shapes.
机译:在许多现代飞机的概念​​中,民事和军事的概念,发动机完全集成到机身中。这种集成通常需要高度弯曲的进气管。由于高曲率和进气管道的扩散特性,发动机风扇的流入是不均匀的并且可以具有严重的流动扭曲。这些流动扭曲的尺寸,强度和模式可能会影响发动机的压缩机系统及其安全边距。在本文中,通过CFD分析了五种高度弯曲的进气管地貌。它们从相同的基线几何形状发展,但由不同的横截面形状定义。利用横截面的这种变化,定性地研究了在进气管的空气动力学上的横截面形状的影响。基于这些分析,将第六进油管几何形式作为试验车,用于试验机构在发动机测试设施内的进气压缩机相互作用的实验研究。选择限定的横截面形状以便在管道出口平面处实现流动变形,这足够小以确保安全发动机操作,但仍然足够强,以挑选变形流动的相互作用和压缩机流动。这些完全数值调查的设置基于对射流推进研究所的进气管的空气动力学的先前研究。结果表明,入口横截面对整个进气管的流动有很大影响。另外,可以通过适当的横截面形状的适当组合来减少由进气管的强曲率引起的流动扭曲可以减小尺寸和强度。

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