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Computational and experimental investigation into aerodynamic interference between slender bodies in supersonic flow

机译:超声速流动中细长体之间气动干扰的计算和实验研究

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Aerodynamic interference can occur between high-speed bodies when in close proximity. A complex flowfield develops where shock and expansion waves from a generator body impinge upon the adjacent receiver body and modify its aerodynamic characteristics. The aims of this paper are to validate a computational prediction method, to use the predicted solutions to interpret the measured results and to provide a deeper understanding of the associated flow physics. The interference aerodynamics for two slender bodies were investigated through a parametric wind tunnel study where the effect of axial stagger was investigated for different receiver body incidence angles. Measurements included forces and moments, surface pressures and shadowgraph visualisations. Supporting computational predictions provided a deeper understanding of the underlying aerodynamics and flow mechanisms. Good agreement was found between the measured and predicted interference loads and surface pressures for all configurations. The interference loads are strongly dependent upon the axial impingement location of the primary Shockwave. These induced interference loads change polarity as the impingement location moves aft over the receiver. Distinct interference characteristics are observed when the receiver is placed at high positive incidence, where the impinging shock has a strong effect on the crossflow separation location. Overall, the observed interference effects are expected to modify the subsequent body trajectories and may increase the likelihood of a collision.
机译:高速车身之间可能会产生气动干扰。产生了复杂的流场,其中来自发电机主体的冲击波和膨胀波撞击到相邻的接收器主体上,并改变了其空气动力学特性。本文的目的是验证一种计算预测方法,使用预测的解决方案来解释测量结果并提供对相关流物理学的更深刻理解。通过参数风洞研究,研究了两个细长主体的干扰空气动力学,其中研究了轴向交错对不同接收器主体入射角的影响。测量包括力和力矩,表面压力和阴影图可视化。支持计算的预测提供了对潜在的空气动力学和流动机理的更深入的了解。在所有配置的实测和预测干扰载荷与表面压力之间都发现了很好的一致性。干扰载荷在很大程度上取决于主冲击波的轴向冲击位置。当撞击位置在接收器上向后移动时,这些感应的干扰负载会改变极性。当接收器以高正入射角放置时,会观察到明显的干扰特性,其中撞击冲击对横流分离位置有很强的影响。总的来说,观察到的干扰效应有望改变随后的身体轨迹,并可能增加碰撞的可能性。

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