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Aerodynamic characteristics of generalized bent biconic bodies for aero-assisted, orbital-transfer vehicles

机译:航空辅助轨道转移飞行器的广义弯曲双锥体的空气动力学特性

摘要

A method was developed to generate the surface coordinates of body shapes suitable for aeroassisted, orbital-transfer vehicles (AOTVs) by extending bent biconic geometries. Lift, drag, and longitudinal moments were calculated for the bodies using Newtonian flow theory. These techniques were applied to symmetric and asymmetric aerobraking vehicles, and to an aeromaneuvering vehicle with high L/D. Results for aerobraking applications indicate that a 70 deg, fore half cone angle with a spherically blunted nose, rounded edges, and a slight asymmetry would be appropriate. Moreover, results show that an aeromaneuvering vehicle with L/D 2.0, and with sufficient stability, is feasible.
机译:通过扩展弯曲的双锥形几何形状,开发了一种方法来生成适用于航空辅助轨道转移飞行器(AOTV)的车身形状的表面坐标。使用牛顿流理论计算了物体的升力,阻力和纵向力矩。这些技术已应用于对称和非对称的气动制动车辆,以及具有高L / D的空气动力学车辆。航空制动应用的结果表明,前角为70度,球面钝头,边缘呈圆形和略微不对称的前半锥角是合适的。此外,结果表明,具有L / D 2.0且具有足够稳定性的空气动力学车辆是可行的。

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    Davies C. B.; Park C.;

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  • 年度 1983
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