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Development of Passively Actuated Thermal Control Valves for Passive Control of Mechanically Pumped Single-Phase Fluid Loops for Space Applications

机译:用于空间应用的机械泵浦单相流体环路被动控制的被动控制热控制阀的开发

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Passively activated thermal control valves were developed for use in a mechanically pumped single-phase fluid liquid loop (MPFL) of the Mars Science Laboratory (MSL) rover. A key approach to the thermal control of the rover with the fluid loop is to control the flow through the rover's heat-generating or heat-rejecting components. This is achieved by either splitting or mixing the fluid stream coming from different branches of the system at different temperatures; actively or passively controlled flow valves are typically used for such purposes. To meet the thermal control requirements of the Mars Science Laboratory (MSL) rover, a splitting and a mixing thermal control valves with gradual control capabilities using a linear thermal actuator and a spool was developed at Jet Propulsion Laboratory (JPL). The key feature of these control valves is the balancing of the flow through the various branches of the fluid loop in order to balance the heat loads of the whole thermal system. This paper describes the general design and testing used in the development of the valves.
机译:开发了被动激活的热控制阀,用于MARS科学实验室(MSL)流动站的机械泵送的单相流体液环(MPFL)。利用流体回路的流动控制的热控制的关键方法是控制流动罗孚的发热或散热部件的流动。这是通过在不同温度下分裂或混合来自系统的不同分支的流体流来实现;主动或被动控制的流动阀通常用于这种目的。为了满足火星科学实验室(MSL)流动站的热控制要求,在喷射推进实验室(JPL)开发了使用线性热致动器和阀芯的分裂和具有渐进控制能力的分裂和混合热控制阀。这些控制阀的关键特征是通过流体回路的各种分支的流动的平衡,以便平衡整个热系统的热负荷。本文介绍了在阀门开发中使用的一般设计和测试。

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