航天器重力辅助弹道计算要素

I. Popov
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引用次数: 0

摘要

该研究的目的是分析描述与航天器正常降落在无大气层行星表面相对应的弹道轨迹截面。在这种情况下,正常下落物体的运动特征是重力加速度的增加。在没有大气层的情况下,物体在行星表面正常下落的速度、时间和加速度问题被简化为求解二阶微分方程,该方程通过标准方法求解。该解决方案的一个特点是在中间阶段正式使用表格积分。然而,事实证明,他的公式是不可靠的,即右手边的导数不等于被积函数。由此可知,基于所示表格积分的现有解决方案是不正确的。本文给出了对该表积分的修正,这是研究的一个偶然结果。在这项工作中,获得了在没有大气层的情况下,正常落在行星表面的物体的运动时间方程,以及其速度和加速度的时间方程。所得结果可用于计算行星际飞行过程中的被动重力辅助,以及计算小型天体和航天器结构元件的绝对下落。
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Elements of ballistic calculation for spacecraft gravity assist
The purpose of the study is an analytical description of the section of the ballistic trajectory corresponding to the normal fall of the spacecraft on the surface of an atmosphereless planet. In this case, the motion of a normally falling body is characterized by an increasing acceleration of gravity. The problem of the speed, time and acceleration of the normal fall of a body on the planet's surface in the absence of an atmosphere is reduced to solving a second-order differential equation, which is solved by the standard method. A feature of the solution is the formal use of the tabular integral at an intermediate stage. It turned out, however, that his formula is unreliable, namely, the derivative of the right-hand side is not equal to the integrand. It follows from this that the possible existing solutions to this problem, based on the use of the indicated tabular integral, are incorrect. The article presents the correction of this tabular integral, which is an incidental result of the study. In this work, the time equation of motion of a body normally falling on the surface of the planet in the absence of an atmosphere, as well as the time equations of its speed and acceleration are obtained. The results obtained can be useful in calculating passive gravity assist during interplanetary flights and calculating the sheer fall of small celestial bodies and spent structural element s of spacecraft.
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自引率
0.00%
发文量
24
审稿时长
8 weeks
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