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Leak Mitigation in Mechanically Pumped Fluid Loops for Long Duration Space Missions

机译:机械泵送流体回路中的泄漏缓解功能,可长时间执行太空任务

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Mechanically pumped fluid loops (MPFLs) are increasingly considered for spacecraft thermal control. A concern for long duration space missions is the leak of fluid leading to performance degradation or potential loop failure. An understanding of leak rate through analysis, as well as destructive and non-destructive testing, provides a verifiable means to quantify leak rates. The system can be appropriately designed to maintain safe operating pressures and temperatures throughout the mission. Two MPFLs on the Mars Science Laboratory Spacecraft, launched November 26, 2011, maintain the temperature of sensitive electronics and science instruments within a -40°C to 50°C range during launch, cruise, and Mars surface operations. With over 100 meters of complex tubing, fittings, joints, flex lines, and pumps, the system must maintain a minimum pressure through all phases of the mission to provide appropriate performance. This paper describes the process of design, qualification, test, verification, and validation of the components and assemblies employed to minimize risks associated with excessive fluid leaks from pumped fluid loop systems.
机译:对于航天器的热控制,越来越多地考虑采用机械泵送流体回路(MPFL)。长时间执行太空任务时要注意的是液体泄漏会导致性能下降或潜在的回路故障。通过分析以及破坏性和非破坏性测试对泄漏率的了解,提供了一种可验证的量化泄漏率的方法。该系统可以进行适当设计,以在整个任务期间维持安全的工作压力和温度。 2011年11月26日发射的火星科学实验室航天器上的两个MPFL在发射,巡航和火星表面操作期间将敏感电子和科学仪器的温度保持在-40°C至50°C的范围内。凭借超过100米的复杂油管,配件,接头,挠性管线和泵,系统必须在任务的所有阶段保持最低压力,以提供适当的性能。本文介绍了设计,鉴定,测试,验证和确认所使用的组件和组件的过程,以最大程度地减少与泵送流体回路系统中的过多流体泄漏相关的风险。

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