磁场对电磁波在等离子体中传输的影响

    The Influence of Magnetic Field on the Transmission of Electromagnetic Waves in Plasma

    • 摘要: 针对高超声速飞行器再入大气过程中所面临的黑障问题,基于美国国家航空航天局的无线电衰减测量项目飞行试验数据建立了钝头体模型,数值模拟了高超声速飞行器周围等离子体流场在黑障区的频率分布,并对通信窗口处的频率进行函数拟合,基于该函数编程模拟了电磁波在非均匀等离子体中的传播特性。研究结果表明,再入高度为47 km、飞行马赫数为20的高超声速飞行器黑障问题最为严重,而在飞行器磁窗口处施加1.2 T的磁场,可以使电子数密度下降0.01 %,从而减小带电粒子间的碰撞,拓宽电磁波通信波段,缓解飞行器的黑障问题;当飞行器飞行高度为71 km时,L波段和VHF波段的电磁波易发生通信中断,而3.3 T的外加磁场可以使该波段的电磁波正常通信。文中的研究结果为外加磁场缓解高超声速飞行器黑障问题提供了解决思路与理论支撑。

       

      Abstract: To address the blackout problem faced by hypersonic vehicles during atmospheric reentry, a blunt-body model is established based on flight test data from radio attenuation measurement project of national aeronautics and space administration, and the frequency distribution of the plasma flow field is numerically simulated around hypersonic vehicle in the blackout zone. The frequencies at the communication window are fitted with a function, and based on this function, the propagation characteristics of electromagnetic waves in non-uniform plasma are simulated. The research results indicate that the blackout problem is most severe for hypersonic vehicle with a reentry altitude of 47 km and a flight Mach number of 20. Applying a 1.2 T magnetic field at the vehicle′s magnetic window can reduce the electron density by 0.01 %, thereby decreasing collisions between charged particles, broadening the electromagnetic wave communication band, and alleviating the vehicle′s blackout problem. When the flight altitude of the vehicle is 71 km, electromagnetic waves in the L-band and VHF band are prone to communication interruptions, but an external magnetic field of 3.3 T can enable normal communications in these bands. The findings of this study provide a solution and theoretical basis for using external magnetic fields to mitigate blackout issues in hypersonic vehicles.

       

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