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Pressure flow field and inlet flow distortion metrics reconstruction from velocity data

机译:根据速度数据重建压力流场和入口流量畸变指标

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摘要

Complex engine intakes are susceptible to unsteady flow distortions that may compromise the propulsion system operability. Hence, the need for high spatial and temporal resolution flow information is essential to aid the development of distortion tolerant, closely coupled propulsion systems. Stereoscopic PIV methods have been successfully applied to these flows offering synchronous velocity datasets of high spatial resolution across the Aerodynamic Interface Plane. However, total pressure distortion measurements are still typically provided by low bandwidth, intrusive total pressure rakes of low spatial resolution which results in limited characterisation of the total pressure distortion. This limitation can potentially be addressed by pressure field reconstruction fromnon-intrusive, high resolution velocity data. A range of reconstruction methods are assessed based on representative data from steady and unsteady computational simulations of an Sduct configuration. In addition to the reconstructed total pressure field, the impact on the key distortion metrics is assessed. The effect of Mach number is considered. Overall the reconstruction methods show that the distortion metrics can be determined with sufficient accuracy to indicate that there is a potential benefit from exploiting high resolution velocity measurements in evaluating total pressure distortion.
机译:复杂的发动机进气口容易受到不稳定的流量畸变的影响,这可能会损害推进系统的可操作性。因此,对高空间和时间分辨率流信息的需求对于帮助发展耐畸变,紧密耦合的推进系统至关重要。立体PIV方法已成功应用于这些流,从而在整个气动接口平面上提供了具有高空间分辨率的同步速度数据集。然而,总压力畸变的测量通常仍然由低带宽,低空间分辨率的侵入式总压力耙提供,这导致总压力畸变的有限表征。通过从非侵入式高分辨率速度数据重建压力场可以潜在地解决此限制。根据来自Sduct配置的稳定和不稳定计算仿真的代表性数据,评估了一系列重建方法。除了重建的总压力场之外,还评估了对关键变形指标的影响。考虑马赫数的影响。总体而言,重建方法表明可以以足够的精度确定变形量度,以指示在评估总压力变形时利用高分辨率速度测量可能具有潜在优势。

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