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Thermodynamic performance predictions for the low temperature micro-gravity physics facility

机译:低温微重力物理设施的热力学性能预测

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The Low Temperature Micro-gravity Physics Facility (LTMPF) designed by Ball Aerospace & Technologies Corp. contains a 180-1 superfluid helium dewar for conducting fundamental physics experiments. The dewar and ancillary experiment electronics will be located on the Japanese experiment module-exposed facility (JEM-EF), a module of the International Space Station. The helium is expected to deplete over approximately 5 months, after which the facility will be returned for new experiments, refurbished, refilled and relaunched on a projected 22-month cycle time. Because of the JEM-EF envelope constraints, the dewar has a unique ob-round cross section. The strut-mounted helium tank has provisions to accommodate two separate experiments, one at each end of the tank. Until the cryostat is constructed and tested, assessments of cryostat performance must be accomplished with analytic models. This paper documents the predicted thermal/thermodynamic performance of the cryostat from final launch top-off operations, through post-launch transients, to steady-state on-orbit performance.
机译:Ball Aerospace&Technologies Corp.设计的低温微重力物理设施(LTMPF)包含一个180-1超流体氦杜瓦瓶,用于进行基础物理实验。杜瓦瓶和辅助实验电子设备将位于日本实验模块暴露设施(JEM-EF)上,该设施是国际空间站的一个模块。预计氦气将在大约5个月内耗尽,此后,该设备将按计划的22个月的循环时间返回进行新的实验,翻新,重新填充和重新启动。由于JEM-EF包络线的限制,杜瓦瓶具有独特的椭圆形横截面。安装在支柱上的氦气罐可容纳两个单独的实验,每个实验在罐的两端。在构造和测试低温恒温器之前,必须使用分析模型来完成低温恒温器性能的评估。本文记录了低温恒温器从最终的发射自上而下运行到启动后的瞬态直至稳态在轨性能的预测热/热力学性能。

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