Mathematical model of external ballistics of projectiles

Н. М. Гузик, Н. Б. Сокульська, Л. Д. Величко
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引用次数: 0

Abstract

The paper presents mathematical model of external ballistics of projectile, fired from cannon. The drag force has a decisive influence on the dynamics of the projectile. Direct calculation of the functional dependence of the drag force on the set of parameters is quite controversial and has not been utilized so far. Therefore, the author calculus the functional relativity, approximately, solving the inverse problem of mechanics. The flight range of a projectile at certain aiming angles, noted in the firing tables, determine the drag force according to the effect on a projectile of its weight and Coriolis force. Its functional dependence is described separately at the stages of projectile’s motion with supersonic, transonic and subsonic velocities. Due to the functional dependence of the drag force of a projectile, the influence of a charge projectile, initial velocity, atmospheric pressure, air temperatures and projectile’s mass effect on kinematic parameters of its motion can be calculated. Knowledge of this dependence of the drag force of the projectile’s movement allows to automate, using appropriate software, the determination of the elevation angle depending on the location of the target and the values of deterministic and nondeterministic factors.
弹丸外弹道数学模型
提出了火炮发射弹丸外弹道的数学模型。阻力对弹丸的动力学有决定性的影响。直接计算阻力对参数集的函数依赖关系是有争议的,迄今尚未得到应用。因此,作者对泛函相对论进行了近似的演算,解决了力学逆问题。弹丸在一定的瞄准角度下的飞行距离,在发射表中注明,根据弹丸的重量和科里奥利力对弹丸的影响来决定阻力。在超声速、跨声速和亚声速运动阶段分别描述了其功能依赖关系。由于弹丸阻力的函数依赖性,可以计算出装药弹丸、初速度、大气压力、空气温度和弹丸质量效应对弹丸运动运动学参数的影响。了解这种对弹丸运动阻力的依赖,可以使用适当的软件自动确定仰角,这取决于目标的位置以及确定性和非确定性因素的值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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15
审稿时长
6 weeks
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