首页> 外文会议>International Congress on Advances in Nuclear Power Plants >RECENT DEVELOPMENTS OF THE MOA THRUSTER, A HIGH PERFORMANCE PLASMA ACCELERATOR FOR NUCLEAR POWER AND PROPULSION APPLICATIONS
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RECENT DEVELOPMENTS OF THE MOA THRUSTER, A HIGH PERFORMANCE PLASMA ACCELERATOR FOR NUCLEAR POWER AND PROPULSION APPLICATIONS

机译:MOA推进器的最新发展,核电和推进应用的高性能等离子体加速器

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More than 60 years after the late Nobel laureate Hannes Alfven had published a letter stating that oscillating magnetic fields can accelerate ionised matter via magneto-hydrodynamic interactions in a wave like fashion, the technical implementation of Alfven waves for propulsive purposes has been proposed, patented and examined for the first time by a group of inventors. The name of the concept, utilising Alfven waves to accelerate ionised matter for propulsive purposes, is MOA - Magnetic field Oscillating Amplified thruster. Alfven waves are generated by making use of two coils, one being permanently powered and serving also as magnetic nozzle, the other one being switched on and off in a cyclic way, deforming the field lines of the overall system. It is this deformation that generates Alfven waves, which are in the next step used to transport and compress the propulsive medium, in theory leading to a propulsion system with a much higher performance than any other electric propulsion system. Based on computer simulations, which were conducted to get a first estimate on the performance of the system, MOA is a highly flexible propulsion system, whose performance parameters might easily be adapted, by changing the mass flow and/or the power level. As such the system is capable to deliver a maximum specific impulse of 13116 s (12.87 mN) at a power level of 11.16 kW, using Xe as propellant, but can also be attuned to provide a thrust of 236.5 mN (2411 s) at 6.15 kW of power. While space propulsion is expected to be the prime application for MOA and is supported by numerous applications such as Solar and/or Nuclear Electric Propulsion or even as an 'afterburner system' for Nuclear Thermal Propulsion, other terrestrial applications can be thought of as well, making the system highly suited for a common space-terrestrial application research and utilisation strategy. This paper presents the recent developments of the MOA Thruster R&D activities at QASAR, the company in Vienna, which has been set up to further develop and test the Alfven wave technology and its applications.
机译:已有60多年后诺贝尔劳萨·哈内斯·阿尔弗(Hannes Alfven)发表了一封信,说明了振荡磁场可以通过像时尚的波浪中的磁力流体动力相互作用加速电离物质,提出了为推进目的的Alfven Wave的技术实施,专利和一群发明人首次审查。概念的名称,利用Alfven Wave加速推进目的的电离物质,是MoA - 磁场振荡放大推进器。通过使用两个线圈产生的Alfven波,一个是永久供电和用作磁性喷嘴的,另一个是以循环方式接通和断开,使整个系统的磁场线变形。这是这种变形,产生Alfven波,其在用于运输和压缩推进介质的下一步中,理论上导致推进系统具有比任何其他电推进系统更高的性能。基于计算机仿真,进行了对系统性能的第一估计,MOA是一种高度灵活的推进系统,其性能参数可以通过改变质量流量和/或功率水平来容易地调整。由于这种系统能够在11.16kW的功率水平下,使用Xe作为推进剂,可以在11.16kW的功率水平下提供最大特定脉冲,但也可以在6.15处提供236.5mn(2411s)的推力。 KW的力量。虽然空间推进预计是MOA的主要应用,并且由许多应用,如太阳能和/或核电推进,甚至作为核热推进的“加力系统”,其他陆地应用也可以想到,使系统非常适合共同的空间陆地应用研究和利用策略。本文介绍了Qasar的Moa推进器研发活动的最新进展,该公司是维也纳的公司,已经设立,以进一步开发和测试Alfven Wave技术及其应用。

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