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Hydrodynamic Efficiency of Ablation Propulsion with Pulsed Ion Beam

机译:脉冲离子束烧蚀推进的流体动力学效率

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This paper presents the hydrodynamic efficiency of ablation plasma produced by pulsed ion beam on the basis of the ion beam-target interaction. We used a one-dimensional hydrodynamic fluid compressible to study the physics involved namely an ablation acceleration behavior and analyzed it as a rocketlike model in order to investigate its hydrodynamic variables for propulsion applications. These variables were estimated by the concept of ablation driven implosion in terms of ablated mass fraction, implosion efficiency, and hydrodynamic energy conversion. Herein, the energy conversion efficiency of 17.5% was achieved. In addition, the results show maximum energy efficiency of the ablation process (ablation efficiency) of 67% meaning the efficiency with which pulsed ion beam energy-ablation plasma conversion. The effects of ion beam energy deposition depth to hydrodynamic efficiency were briefly discussed. Further, an evaluation of propulsive force with high specific impulse of 4000s, total impulse of 34mN and momentum to energy ratio in the range of μN/W was also analyzed.
机译:本文介绍了基于离子束靶相互作用的脉冲离子束产生的消融等离子体的流体动力学效率。我们使用一维流体动力流体可压缩,以研究物理学,即消融加速度行为,并将其分析为Rocketlike模型,以便研究其用于推进应用的流体动力变量。这些变量是通过在烧蚀的质量分数,灌注效率和流体动力能量转换方面的消融驱动驱动的爆炸概念估算。在此,实现了17.5%的能量转换效率。此外,结果表明了烧蚀过程的最大能量效率为67%,这意味着脉冲离子束能量消融等离子体转换的效率。简要讨论了离子束能量沉积深度与流体动力学效率的影响。此外,还分析了具有4000s的高特异性脉冲的推进力的评估,34Mn的总脉冲和动量在μn/ w范围内的动量。

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