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Open-Front Approach of a Microwave Rocket Sustained by a Resonant Magnetic Field

机译:共振磁场对微波火箭的开放前处理

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Shock-wave propagation around a microwave-rocket nozzle was numerically reproduced using a computational fluid dynamics code when an electron cyclotron resonance condition was satisfied by irradiating 25 GHz microwaves onto the rocket nozzle under an external magnetic field. The pulse-duration and nozzle-shape dependence for the thrust performance of the microwave rocket was evaluated by changing the normalized heating length and the normalized nozzle radius. The open-front approach using a butterfly valve was newly proposed to improve the thrust performance by eliminating the negative thrust and removing the stagnation region during the gas-refilling process. The thruster only received the positive pressure of the shock wave by eliminating the contribution of the negative pressure using the open-front approach, which improved the thrust performance. In addition to the thrust improvement, the gas-refilling performance was also improved because the ambient gas flowed from the open front to the nozzle inside without forming the stagnation region. The improvement of the thrust performance and the gas- refilling performance can improve the payload transportation efficiency and further reduce the cost of launch using beamed-energy propulsion.
机译:当通过在外部磁场下将25 GHz微波辐射到火箭喷嘴上来满足电子回旋共振条件时,使用计算流体力学代码数值再现了冲击波在微波火箭喷嘴周围的传播。通过改变归一化的加热长度和归一化的喷嘴半径来评估微波持续时间对脉冲持续时间和喷嘴形状的依赖性。最近提出了一种使用蝶阀的开放式方法,以通过消除负向推力并消除加气过程中的停滞区域来提高推力性能。推进器通过使用开前方法消除负压的贡献而仅接收到冲击波的正压,从而改善了推力性能。除了改善推力外,还改善了气体的填充性能,因为周围的气体从开放的前部流向喷嘴内部,而没有形成停滞区域。推力性能和注气性能的提高可以提高有效载荷的运输效率,并进一步降低利用束能量推进的发射成本。

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