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Comparative lightcraft impulse measurements

机译:比较飞机脉冲测量

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摘要

The impulse coupling coefficients of two radically different laser propulsion thruster concepts (lightcrafts), each 10 cm in diameter, have been measured under equal conditions using two different pendulum test stands. One test stand and one lightcraft of toroidal shape were provided by the U.S. Air Force Research Laboratory. The other test stand and a bell shaped (i.e. a paraboloid) lightcraft were those of the German Aerospace Center (DLR). All experiments employed the DLR electron-beam sustained, pulsed CO_2 laser with pulse energies up to 400 J. The laser was operated with two configurations: 1) a stable resonator (flat beam profile); and, 2) an unstable resonator (ring shaped beam profile). A first series of experiments was carried out in the open laboratory environment. Propellant, therefore, was either the surrounding air alone, or Delrin as an added solid propellant. The coupling coefficient was determined as a function of the laser pulse energy. In a second series, the same experiments were repeated at various reduced pressure levels with the German lightcraft suspended in a vacuum vessel. This simulates the conditions of a transitional flight from within the atmosphere to outer space. As an additional parameter the specific mass consumption of Delrin (gram/Joule) was measured for each parameter set, allowing the determination of the average exhaust velocity in vacuum.
机译:在两个条件相同的条件下,使用两个不同的摆式试验台,测量了直径各为10 cm的两种根本不同的激光推进推进器概念(飞机)的脉冲耦合系数。美国空军研究实验室提供了一个试验台和一个环形飞行器。另一个测试台和一个钟形(即抛物面)轻型飞机是德国航空航天中心(DLR)的飞机。所有实验均使用脉冲能量高达400 J的DLR电子束持续脉冲CO_2激光器。该激光器具有两种配置:1)稳定的谐振器(平坦光束轮廓); 2)不稳定的谐振器(环形光束轮廓)。在开放实验室环境中进行了第一批实验。因此,推进剂要么是周围的空气,要么是Delrin作为添加的固体推进剂。确定耦合系数作为激光脉冲能量的函数。在第二系列中,将德国轻型飞机悬挂在真空容器中,在不同的减压水平下重复了相同的实验。这模拟了从大气层到外层空间过渡飞行的条件。作为附加参数,针对每个参数集测量了Delrin的单位质量消耗(克/焦耳),从而可以确定真空中的平均排气速度。

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