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首页> 外文期刊>Journal of Spacecraft and Rockets >Normalized Force Coefficients for Satellites with Elongated Shapes
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Normalized Force Coefficients for Satellites with Elongated Shapes

机译:细长形状卫星的归一化力系数

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The coefficient of drag is one of the largest sources of error when retrieving neutral density and winds from satellite accelerometer measurements. As the use of highly accurate accelerometers increases, so does our need for the improved modeling of surface forces. This paper discusses two analytical methods for calculating the coefficients of drag and lift in the context of long satellites with substantial surface areas parallel to the flow. The density data from one such satellite, the challenging minisatellite payload, is compared to the high accuracy satellite drag model of thermospheric density using each of the two methods for calculating the coefficients of drag and lift. When the random thermal motions of the ambient atmosphere are taken into account, the increase in agreement is found to be over 35 %. These results show that the coefficient of drag for the challenging minisatellite payload satellite cannot be adequately represented under hyperthermal assumptions.
机译:当从卫星加速度计测量中获取中性密度和风时,阻力系数是最大的误差来源之一。随着高精度加速度计的使用增加,对改进表面力建模的需求也在增加。本文讨论了两种计算方法,用于计算在具有与流动平行的较大表面积的长卫星环境中的阻力和升力系数。使用这两种方法分别计算阻力和升力系数,将来自此类卫星(具有挑战性的微型卫星有效载荷)的密度数据与热球密度的高精度卫星阻力模型进行比较。当考虑到周围大气的随机热运动时,一致性的增加被发现超过35%。这些结果表明,在高温假设下,具有挑战性的微型卫星有效载荷卫星的阻力系数不能得到足够的表示。

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