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Flow characterisation for a validation study in high-speed aerodynamics

机译:流动特性用于高速空气动力学的验证研究

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Validation studies are becoming increasingly relevant when investigating complex flow problems in high-speed aerodynamics. These investigations require calibration of numerical models with accurate data from the physical wind tunnel being studied. This paper presents the characterisation process for a joint experimental-computational study to investigate the streamwise corners of a Mach 2.5 channel flow. As well as checks of flow quality typically performed for phenomenological investigations, additional quantitative tests are conducted. The extra care to obtain high quality data and eliminate any systematic errors reveal useful information about the wind tunnel flow. Further important physical insights are gained from designing and conducting wind tunnel tests in conjunction with numerical simulations. Crucially, the close experimental-computational collaboration enabled the identification of secondary flows in the sidewall boundary-layers; these strongly influence the flow in the corner regions, the target of the validation study.
机译:在研究高速空气动力学中的复杂流动问题时,验证研究变得越来越重要。这些研究需要使用来自正在研究的物理风洞的准确数据对数值模型进行校准。本文介绍了一项联合实验计算研究的特征过程,以研究2.5马赫河道水流的水流角。除了通常用于现象学研究的流量质量检查外,还进行了其他定量测试。获得高质量数据并消除任何系统错误的额外努力揭示了有关风洞流量的有用信息。通过设计和进行风洞测试以及数值模拟,可以获得更重要的物理见解。至关重要的是,紧密的实验与计算协作使得能够识别侧壁边界层中的次生流体。这些都强烈影响验证研究的目标拐角区域的流动。

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