Design and simulation of a large muzzle kinetic energy railgun
Zizhou Su, Wei Guo, Zhiqiang Dong, Junyi Yang, Honghai Zhang, Wen Zhen Zhou
Abstract
Zizhou Su, Wei Guo, Zhiqiang Dong, Junyi Yang, Honghai Zhang, Wen Zhen Zhou
Abstract
A large muzzle kinetic energy railgun was developed to demonstrate the supersonic launch of 200mm projectiles. A trade study that evaluated over 30 different railgun cases, and resulted in the selection of a simple railgun as the choice. The goal of the railgun was to launch a 200mm diameter projectile with a mass of greater than 20kg to a velocity of 2500m/s, and the muzzle kinetic energy was more than 62MJ. The analysis and modeling of the electromagnetic launch resulted in an adequate design. The 200MJ pulsed-power-supply system was based on Capacitors. The final projectile design concluded with a 8m barrel and was characterized by the following parameters: conducting rails with an inductance gradient about 0.4μH/m, a peak current of about 7MA, an effective current of no less than 6MA, the projectile muzzle velocity of 2540m/s, the muzzle kinetic energy of more than 63MJ and the system efficiency of 31.8%. A more detailed study will be presented in this paper.
A significance statement is not available in the OpenAlex record.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
A large muzzle kinetic energy railgun was developed to demonstrate the supersonic launch of 200mm projectiles. A trade study that evaluated over 30 different railgun cases, and resulted in the selection of a simple railgun as the choice. The goal of the railgun was to launch a 200mm diameter projectile with a mass of greater than 20kg to a velocity of 2500m/s, and the muzzle kinetic energy was more than 62MJ. The analysis and modeling of the electromagnetic launch resulted in an adequate design. The 200MJ pulsed-power-supply system was based on Capacitors. The final projectile design concluded with a 8m barrel and was characterized by the following parameters: conducting rails with an inductance gradient about 0.4μH/m, a peak current of about 7MA, an effective current of no less than 6MA, the projectile muzzle velocity of 2540m/s, the muzzle kinetic energy of more than 63MJ and the system efficiency of 31.8%. A more detailed study will be presented in this paper.
Key concepts: Railgun, Projectile, Muzzle, Muzzle velocity, Kinetic energy, Nuclear engineering, Aerospace engineering, Mechanics