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Influence of Bore and Rail Geometry on an Electromagnetic Naval Railgun System

机译:孔和轨道几何形状对电磁海军轨道炮系统的影响

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摘要

A large-scale railgun is being considered by the U.S. Navy as a future long-range (>200 nm) naval weapon system. The notional concept includes a 15 kg projectile with a 2.5 km/s muzzle velocity. The choice of bore and rail geometry for such a weapon can influence key aspects of the total system design. This study explored a range of bore and rail geometries and looked at their effects on key railgun system parameters such as parasitic mass, inductance gradient, linear current density, required pulse forming network (PFN) size, and barrel mass. Preliminary solid modeling and structural analysis of the integrated launch package was performed in order to quantify parasitic mass. Inductance gradient calculations were based on a current density distribution analysis. A PFN/launcher numerical simulation model was then used to determine linear current density and PFN size. Finally, barrel mass was estimated by structural analysis based on calculated rail repulsive forces. Trends and sensitivities of the different parameters to changes in the bore and rail geometries are presented and conclusions are given.
机译:美国海军正在考虑将大型步枪作为未来的远程(> 200海里)海军武器系统。概念概念包括15 kg的弹丸,口速为2.5 km / s。这种武器的膛孔和轨道几何形状的选择会影响整个系统设计的关键方面。这项研究探索了一系列的孔和轨道几何形状,并研究了它们对关键轨道炮系统参数的影响,例如寄生质量,电感梯度,线性电流密度,所需的脉冲形成网络(PFN)尺寸和枪管质量。为了量化寄生质量,对集成发射包进行了初步的固体建模和结构分析。电感梯度计算基于电流密度分布分析。然后使用PFN /发射器数值模拟模型确定线性电流密度和PFN尺寸。最后,根据计算得出的钢轨推斥力通过结构分析估算了炮管质量。给出了不同参数对孔和轨道几何形状变化的趋势和敏感性,并给出了结论。

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