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A scenario for a future European shipboard railgun

机译:未来欧洲船用轨道轨道的情景

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Railguns can convert large quantities of electrical energy into kinetic energy of the projectile. This was demonstrated by the 33 MJ muzzle energy shot performed in 2010 in the framework of the Office of Naval Research (ONR) electromagnetic railgun program. Since then, railguns are a prime candidate for future long range artillery systems. In this scenario, a heavy projectile (several kilograms) is accelerated to approx. 2.5 km/s muzzle velocity. While the primary interest for such a hypersonic projectile is the bombardment of targets being hundreds of kilometers away, they can also be used to counter airplane attacks or in other direct fire scenarios. In these cases, the large initial velocity significantly reduces the time to impact the target. In this study we investigate a scenario, where a future shipboard railgun installation delivers the same kinetic energy to a target as the explosive round of a contemporary European ship artillery system. At the same time the railgun outperforms the current artillery systems in range. For this scenario a first draft for the parameters of a railgun system were derived. For the flight-path of the projectile, trajectories for different launch angles were simulated and the aero-thermodynamic heating was estimated using engineering-tools developed within the German Aerospace Center (DLR). This enables the assessment of the feasibility of the different strike scenarios, as well as the identification of the limits of the technology. It is envisioned that this baseline design can be used as a helpful starting point for discussions of a possible electrical weaponization of future European warships.
机译:RailGuns可以将大量电能转化为射弹的动能。这是通过2010年在海军研究办公室(ONR)电磁轨道计划的框架内进行的33 MJ枪口能量射击。从那时起,Railguns是未来长距离炮兵系统的主要候选者。在这种情况下,重型射弹(几千克)加速到约。 2.5 km / s枪口速度。虽然这种超音速弹丸的主要兴趣是对数百公里的目标轰炸,但它们也可用于抵消飞机攻击或其他直接火灾情景。在这些情况下,大的初始速度显着减少了影响目标的时间。在这项研究中,我们调查了一个场景,其中未来的船上轨道轨道安装将与当代欧洲船舶炮兵系统的爆炸轮相同的动能。同时,RailGun优于当前的火炮系统范围内。对于这种情况,派生了轨迹系统参数的第一稿。对于射弹的飞行路径,模拟了不同发射角的轨迹,并且使用德国航空航天中心(DLR)内开发的工程工具估计了航空热力学加热。这使得能够评估不同的罢工情景的可行性,以及识别技术的限制。设想,这种基线设计可以用作讨论未来欧洲战舰可能的电气武器化的有用起点。

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