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An Experimental Study on Energy Conversion Process of an in-Space CW Laser Thruster

机译:空间内CW激光推进器能量转换过程的实验研究

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CW laser propulsion has been investigated to develop a prospective propulsion system that may be used in space. OTV (Orbit Transfer Vehicle) is placed as one of the most effective applications of the propulsion system. In this study, the energy partitioning of incident laser energy was investigated over the wide range of velocity of the flow field in low pressure. Flow velocity is thought to have significant effects on energy conversion process because the distribution of temperature and the position of a laser sustained plasma in the focusing laser beam should be determined so that flow velocity and propagation velocity of optical discharge balance out. It was found that the higher energy conversion efficiency can be achieved by lowering the pressure and increasing the velocity of the flow field.
机译:已经研究了CW激光推进,以开发一种可用于空间的前瞻性推进系统。 OTV(轨道转移车辆)作为推进系统最有效的应用之一。在这项研究中,在低压的流场的宽范围内研究了入射激光能量的能量分配。据认为,对能量转换过程具有显着影响的流速,因为应确定聚焦激光束中的温度和激光持续等离子体的位置的分布,使得光学排出的流速和传​​播速度。发现可以通过降低压力并增加流场的速度来实现更高的能量转换效率。

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