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Subsonic Static and Dynamic Aerodynamics of Blunt Entry Vehicles

机译:钝器进入车辆的亚音速静态和动态空气动力学

摘要

The incompressible subsonic aerodynamics of four entry-vehicle shapes with variable c.g. locations are examined in the Langley 20-Foot Vertical Spin Tunnel. The shapes examined are spherically-blunted cones with half-cone angles of 30, 45, and 60 deg. The nose bluntness varies between 0.25 and 0.5 times the base diameter. The Reynolds number based on model diameter for these tests is near 500,000. Quantitative data on attitude and location are collected using a video-based data acquisition system and reduced with a six deg-of-freedom inverse method. All of the shapes examined suffered from strong dynamic instabilities which could produced limit cycles with sufficient amplitudes to overcome static stability of the configuration. Increasing cone half-angle or nose bluntness increases drag but decreases static and dynamic stability.
机译:具有可变c.g.的四种入门车辆形状的不可压缩亚音速空气动力学特性在Langley 20英尺垂直旋转隧道中检查位置。检查的形状是半圆锥角为30、45和60度的球形钝锥。鼻子钝度在基本直径的0.25到0.5倍之间变化。这些测试基于模型直径的雷诺数接近500,000。使用基于视频的数据采集系统收集有关姿态和位置的定量数据,并使用六自由度反演方法进行简化。所有检查的形状都具有很强的动态不稳定性,这可能会产生极限环,其振幅足以克服配置的静态稳定性。圆锥半角或鼻子钝度增加会增加阻力,但会降低静态和动态稳定性。

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