High-speed vacuum air vehicle

Rajat Mishra, Himashu Sharma, Harshit Mishra
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Abstract

Background: There are a number of problems in the prior art, those are topics  of research inputs likes  ranges of the drag force generated by the vehicle,  lift force at high vehicle motion velocities for compensation of the vehicle weight, Aerodynamic aspects of operation of the vehicle, Aim: Stream wise stability of vehicle motion and levitation and breaking of the vehicles and supersonic speed is not achieved in any mode of transportation. But this present invention related to high speed magnetic levitating transportation. More particularly, present invention is related to high speed magnetic levitating transportation using compressed air chamber in the transportation vehicle. Methods: The present invention is more particularly related to high speed vehicle levitated on a vacuum tunnel by using electromagnetic levitation. As this vehicle will move from one place to another in a vacuum environment and this vehicle will levitate above track with the help of electromagnets. Results: The important thing is its motion, which is possible due to reaction force of high pressure air, coming out from compressed air chamber present in vehicle. Conclusion:  It can give us the acceleration as per load requirement and it can achieve supersonic speed in few seconds.
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高速真空飞行器
背景:现有技术中存在许多问题,这些问题是研究投入的主题,如车辆产生的阻力范围,车辆高运动速度下补偿车辆重量的升力,车辆操作的空气动力学方面,目的:车辆运动的流方向稳定性以及车辆的悬浮和破碎以及超音速在任何运输方式中都无法实现。但本发明涉及高速磁悬浮运输。更具体地说,本发明涉及在运输车辆中使用压缩空气室的高速磁悬浮运输。方法:本发明特别涉及利用电磁悬浮技术使高速车辆悬浮在真空隧道上。由于这个飞行器将在真空环境中从一个地方移动到另一个地方,这个飞行器将在电磁铁的帮助下悬浮在轨道上方。结果:重要的是它的运动,这可能是由于高压空气的反作用力,从车内的压缩空气室出来。结论:该系统能按载荷要求提供加速度,并能在数秒内达到超音速。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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