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On-Demand Small Pay load Return Solution from ISS: Low-Temperature Passive Thermal Control Design

机译:ISS的按需小型有效载荷返回解决方案:低温被动式热控制设计

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The Small Payload Quick Return (SPQR) system would be the first vehicle to effectively parachute from space, permitting small payloads to be routinely delivered from the International Space Station (ISS). This innovative reentry system incorporates a passive thermal design simple enough to be low cost and light weight, making it one of the first feasible on-demand payload return capability solutions to be presented to the ISS program. The thermal analysis and control for the system can be broken down into 4 different regimes beginning with the drag-induced de-orbit system (Exo-brake) and ending with the recovery of the payload with a GPS-guided parafoil. The SPQR concept was created by researchers at NASA Ames Research Center, who are managing the incremental development flights. The first of these flights is scheduled for December 2011 with proposed follow-on tests to occur in 2012. The thermal control analysis for the SPQR vehicle was performed in part by Paragon Space Development Corporation, with the focus on the design and development of the Payload Containment and Thermal Control Unit (PCTCU). This system is capable of being maintained at 1 atm, and is shown to control internal payload temperature to less than 4℃ throughout the described re-entry phases.
机译:小有效载荷快速返回(SPQR)系统将是第一个有效地从太空降落伞的运载工具,允许从国际空间站(ISS)例行输送小有效载荷。这种创新的再入系统结合了一种被动式热设计,使其简单,成本低,重量轻,使其成为首个可行的按需有效载荷返回能力解决方案之一,该解决方案将提交给ISS计划。该系统的热分析和控制可以分为4种不同的状态,从阻力诱导的离轨系统(Exo-brake)开始,到以GPS引导的翼型件恢复有效载荷为止。 SPQR概念是由NASA Ames研究中心的研究人员创建的,他们正在管理增量开发飞行。这些飞行的第一批飞行定于2011年12月进行,拟议的后续测试将于2012年进行。SPQR车辆的热控制分析部分由Paragon Space Development Corporation进行,重点是有效载荷的设计和开发。密闭和热控制单元(PCTCU)。该系统能够维持在1个大气压下,并且在所述的重新进入阶段中,都可以将内部有效载荷温度控制在4℃以下。

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