大功率回旋管在微波火箭上的实验

Y. Oda, K. Komurasaki, K. Takahashi, A. Kasugai, K. Sakamoto
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引用次数: 1

摘要

微波火箭是大气放电技术在高功率毫米波束流中的新应用。高功率微波束中等离子体的电离锋向吸收微波功率的辐射源传播。在其传播过程中,形成激波。冲击波产生冲力。在微波火箭中,重复的毫米波脉冲产生推进推力。这种推进系统被称为光束能量推进(BEP)。因为推进能量是由地面装备的光束源提供的,所以它不需要机载能量源。因此,它有望实现比传统化学火箭更高的有效载荷比。在这项研究中,利用推力产生模型进行了推力估计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experiment on Microwave Rocket using a High Power Gyrotron
Microwave rocket is new application of atmospheric discharge in a high power millimeter-wave beam. An ionization front of plasma in a high power microwave beam propagates towards a radiation source absorbing microwave power. During its propagation, a shock wave is formed. A shock wave produces impulsive force. In microwave rocket repetitive millimeter-wave pulses generate propulsive thrust. This kind of propulsion system is called beamed energy propulsion (BEP). Because propulsive energy is provided from the beam source equipped on the ground, it is free from on-board energy sources. For that reason, it is expected to achieve a higher payload ratio than conventional chemical rockets. In this study, estimation of thrust using a thrust generation model was conducted.
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