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An experimental investigation of the aerodynamic characteristics of slanted base ogive cylinders using magnetic suspension technology

机译:磁悬浮技术对倾斜基齿轮的空气动力学特性的实验研究

摘要

An experimental investigation is reported on slanted base ogive cylinders at zero incidence. The Mach number range is 0.05 to 0.3. All flow disturbances associated with wind tunnel supports are eliminated in this investigation by magnetically suspending the wind tunnel models. The sudden and drastic changes in the lift, pitching moment, and drag for a slight change in base slant angle are reported. Flow visualization with liquid crystals and oil is used to observe base flow patterns, which are responsible for the sudden changes in aerodynamic characteristics. Hysteretic effects in base flow pattern changes are present in this investigation and are reported. The effect of a wire support attachment on the 0 deg slanted base model is studied. Computational drag and transition location results using VSAERO and SANDRAG are presented and compared with experimental results. Base pressure measurements over the slanted bases are made with an onboard pressure transducer using remote data telemetry.
机译:据报道,对倾斜的基齿圆柱体的零入射进行了实验研究。马赫数范围是0.05到0.3。通过磁性悬挂风洞模型,消除了与风洞支架相关的所有流动干扰。据报道,升力,俯仰力矩和阻力突然急剧变化,基本倾斜角度略有变化。用液晶和油进行的流动可视化用于观察基本流动模式,这是造成空气动力特性突然变化的原因。基本流动模式变化中的磁滞效应存在于此研究中并已报告。研究了导线支撑附件对0度倾斜基础模型的影响。提出了使用VSAERO和SANDRAG的计算阻力和过渡位置的结果,并将其与实验结果进行了比较。倾斜底座上的底座压力测量是通过使用远程数据遥测的车载压力传感器进行的。

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