First Breakthrough for Future Air-Breathing Magneto-Plasma Propulsion Systems

被引:10
作者
Goeksel, B. [1 ]
Mashek, I. Ch [2 ]
机构
[1] Electrofluidsyst Ingenieurburo Goksel, Berlin, Germany
[2] St Petersburg State Univ, St Petersburg, Russia
来源
14TH HIGH-TECH PLASMA PROCESSES CONFERENCE (HTPP 14) | 2017年 / 825卷
关键词
FOCUS DPF;
D O I
10.1088/1742-6596/825/1/012005
中图分类号
O35 [流体力学]; O53 [等离子体物理学];
学科分类号
070204 ; 080103 ; 080704 ;
摘要
A new breakthrough in jet propulsion technology since the invention of the jet engine is achieved. The first critical tests for future air-breathing magneto-plasma propulsion systems have been successfully completed. In this regard, it is also the first time that a pinching dense plasma focus discharge could be ignited at one atmosphere and driven in pulse mode using very fast, nanosecond electrostatic excitations to induce self-organized plasma channels for ignition of the propulsive main discharge. Depending on the capacitor voltage (200-600 V) the energy input at one atmosphere varies from 52-320 J/pulse corresponding to impulse bits from 1.2-8.0 mNs. Such a new pulsed plasma propulsion system driven with one thousand pulses per second would already have thrust-to-area ratios (50-150 kN/m(2)) of modern jet engines. An array of thrusters could enable future aircrafts and airships to start from ground and reach altitudes up to 50km and beyond. The needed high power could be provided by future compact plasma fusion reactors already in development by aerospace companies. The magneto-plasma compressor itself was originally developed by Russian scientists as plasma fusion device and was later miniaturized for supersonic flow control applications. So the first breakthrough is based on a spin-off plasma fusion technology.
引用
收藏
页数:11
相关论文
共 31 条
[1]  
Ananin S, 1990, PHYS PLASMAS, V16, P186
[2]  
Astashinsky B, 1992, ENG PHYS J, V62, P386
[3]  
Astashinsky B, 1980, J APPL SPECTROSC, V33, P629
[4]   On the quenching of excited electronic states of molecular nitrogen in nanosecond pulsed discharges in atmospheric pressure air [J].
Bak, M. S. ;
Kim, W. ;
Cappelli, M. A. .
APPLIED PHYSICS LETTERS, 2011, 98 (01)
[5]   PLASMA DEFLAGRATION AND PROPERTIES OF A COAXIAL PLASMA DEFLAGRATION GUN [J].
CHENG, DY .
NUCLEAR FUSION, 1970, 10 (03) :305-+
[6]  
Goksel B, 2005, P GERMAN AEROSPACE C, V3, P1853
[7]  
Goksel B, 2013, 593 EUCASS
[8]  
Gribkov VA, 2008, AIP CONF PROC, V996, P51, DOI 10.1063/1.2917031
[9]   Simulations of plasma heating caused by the coalescence of multiple current loops in a proton-boron fusion plasma [J].
Haruki, T. ;
Yousefi, H. R. ;
Sakai, J-I. .
PHYSICS OF PLASMAS, 2010, 17 (03)
[10]  
Knecht SD, 2006, AIP CONF PROC, V813, P1232, DOI 10.1063/1.2169306