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Status Of Pulsed Inductive Thruster Research

机译:脉冲感应推进器研究现状

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The TRW Pulsed Inductive Thruster (PIT) is an electromagnetic propulsion system that can provide high thrust efficiency over a wide range of specific impulse values. In its basic form, the PIT consists of a flat spiral coil covered by a thin dielectric plate. A pulsed gas injection nozzle distributes a thin layer of gas propellant across the plate surface at the same time that a pulsed high current discharge is sent through the coil. The rising current creates a time varying magnetic field, which in turn induces a strong azimuthal electric field above the coil. The electric field ionizes the gas propellant and generates an azimuthal current flow in the resulting plasma. The current in the plasma and the current in the coil flow in opposite directions, providing a mutual repulsion that rapidly blows the ionized propellant away from the plate to provide thrust. The thrust and specific impulse can be tailored by adjusting the discharge power, pulse repetition rate, and propellant mass flow, and there is minimal if any erosion due to the electrodeless nature of the discharge. Prior single-shot experiments performed with a 1-meter diameter version of the PIT at TRW demonstrated specific impulse values between 2,000 seconds and 8,000 seconds, with thruster efficiencies of about 52% for ammonia. This paper outlines current and planned activities to transition the single shot device into a multiple repetition rate thruster capable of supporting NASA strategic enterprise missions.
机译:TRW脉冲感应推力器(PIT)是一种电磁推进系统,可以在很宽的特定脉冲值范围内提供高推力效率。 PIT的基本形式是由扁平的螺旋形线圈组成,该线圈由薄的介电板覆盖。脉冲气体喷嘴在通过线圈发送脉冲高电流放电的同时,将薄薄的气体推进剂层分布在整个平板表面上。上升的电流会产生随时间变化的磁场,从而在线圈上方感应出强方位角电场。电场使气体推进剂电离,并在产生的等离子体中产生方位角电流。等离子体中的电流和线圈中的电流沿相反的方向流动,从而产生相互排斥,从而迅速将离子化的推进剂吹离板,从而产生推力。推力和比冲可以通过调整放电功率,脉冲重复频率和推进剂质量流量来调整,并且由于放电的无电极性质,即使有任何腐蚀也很少。在TRW上使用直径为1米的PIT进行的先前单发实验表明,特定脉冲值介于2,000秒和8,000秒之间,氨的推进器效率约为52%。本文概述了当前和计划中的将单发设备转变为能够支持NASA战略性企业任务的多重复率推进器的活动。

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