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Hydrodynamic efficiency of ablation by a pulsed ion beam for propulsion applications

机译:用于推进应用的脉冲离子束烧蚀的流体力学效率

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This paper presents the hydrodynamic efficiency of ablation plasma produced by a pulsed ion beam, as obtained on the basis of the ion beam-target interaction concept. We used a one-dimensional hydrodynamic model to explain the ablation acceleration behavior. Hydrodynamic variables are evaluated in terms of ablation velocity, conversion efficiency and ablation efficiency. We obtained 18% value for the energy conversion efficiency, while an ablation efficiency of about 70% is achieved at an ion-beam energy density of 60 J cm(-2) (beam power density of approximate to 1 GW cm(-2)). A thrust producing capability is also investigated.
机译:本文介绍了基于离子束-目标相互作用概念获得的脉冲离子束产生的烧蚀等离子体的流体力学效率。我们使用一维流体动力学模型来解释消融加速行为。根据消融速度,转化效率和消融效率评估流体力学变量。我们获得了18%的能量转换效率值,而在60 J cm(-2)的离子束能量密度下(大约1 GW cm(-2)的束功率密度)可获得约70%的消融效率)。还研究了推力产生能力。

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