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首页> 外文期刊>Journal of atmospheric and solar-terrestrial physics >Channel electron multiplier operated on a sounding rocket without a cryogenic vacuum pump from 120 to 80km altitude
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Channel electron multiplier operated on a sounding rocket without a cryogenic vacuum pump from 120 to 80km altitude

机译:通道电子倍增器在没有低温真空泵的情况下从120至80 km的高度在探测火箭上运行

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We demonstrate that a channel electron multiplier (CEM) can be operated on a sounding rocket in the pulse-counting mode from 120. km to 80. km altitude without the cryogenic evacuation used in the past. Evacuation of the CEM is provided only by aerodynamic flow around the rocket. This demonstration is motivated by the need for additional flights of mass spectrometers to clarify the fate of metallic compounds and ions ablated from micrometeorites and their possible role in the nucleation of noctilucent clouds. The CEMs were flown as guest instruments on two sounding rockets to the mesosphere. Modeling of the aerodynamic flow around the payload with Direct Simulation Monte-Carlo (DSMC) code showed that the pressure is reduced below ambient in the void behind (relative to the direction of motion) an aft-facing surface. An enclosure containing the CEM was placed forward of an aft-facing deck and a valve was opened during flight to expose the CEM to the aerodynamically evacuated region behind it. The CEM operated successfully from apogee down to ~80. km. A Pirani gauge confirmed pressures reduced to as low as 20% of ambient with the extent of reduction dependent upon altitude and velocity. Additional DSMC simulations indicate that there are alternate payload designs with improved aerodynamic pumping for forward mounted instruments such as mass spectrometers.
机译:我们证明了通道电子倍增器(CEM)可以在从120. km到80. km高度的脉冲计数模式下在探空火箭上运行,而无需使用过去的低温疏散。 CEM的撤离仅由火箭周围的空气动力学流动提供。进行此演示的动机是需要进行额外的质谱仪飞行,以阐明由微陨石消融的金属化合物和离子的命运以及它们在夜光云成核中的可能作用。 CEM作为客用仪器在两枚探空火箭上飞向中层。使用直接模拟蒙特卡罗(DSMC)代码对有效载荷周围的空气动力流进行建模的结果表明,朝后的表面后面(相对于运动方向)的空隙中的压力降低到低于环境压力。将装有CEM的机壳放置在面向后甲板的前方,并在飞行过程中打开一个阀门,以将CEM暴露在其后部的空气动力学排气区域中。 CEM从最高点成功运行到80左右。公里皮拉尼压力计确认压力降低到环境压力的20%,降低的程度取决于高度和速度。 DSMC的其他仿真表明,对于诸如质谱仪之类的前装式仪器,还有其他替代的有效载荷设计,它们具有改进的气动泵送功能。

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