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Phoenix Mars Scout Parachute Flight Behavior and Observations

机译:Phoenix Mars Scout降落伞飞行行为和观察

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The data returned from the successful Phoenix Mars Scout mission are analyzed in order to determine characteristics and behaviors of the supersonic parachute that was used to slow the entry body during its descent to the surface. At least one significant drag reduction event was observed when the vehicle was traveling at Mach 1.6; this is consistent with previously reported terrestrial high altitude testing and is likely associated with an area oscillation of the parachute. The parachute is shown to possess some lateral instability relative to the anti-velocity vector that is also at a level that is consistent with the same historic data. Ramifications of the lateral instability and, in particular, the unsteadiness in the parachute drag are discussed as energizing elements of the entry body wrist mode. The apparent coefficient of drag for the parachute is calculated and shown to have relatively small variations on an average basis over the supersonic portion of flight.
机译:分析了从成功的Phoenix MARS SCOUT任务返回的数据,以确定超音速降落伞的特征和行为,用于在其下降到表面时慢慢进入体。当车辆在Mach 1.6行驶时,观察到至少一个显着的阻力减少事件;这与先前报道的地面高海拔测试一致,并且可能与降落伞的区域振荡相关。分叉将相对于抗速载体具有一些横向不稳定性,该抗速度矢量也在与相同的历史数据一致的水平。横向不稳定性的后果,特别是降落伞阻力中的不稳定性被讨论为进入体腕部模式的激励元件。计算降落伞的表观拖动系数,并显示在飞行的超音速部分的平均基础上具有相对较小的变化。

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