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Space station thermal control system operating characteristics during equipment replacement

机译:空间站热控系统设备更换期间的操作特性

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The International Space Station thermal control system is a one-phase ammonia loop. However, under some operating conditions two-phase flow is introduced into the system. Safe equipment operating envelopes during the two-phase flow periods, which usually are transient in nature, must be established either experimentally or computationally. The computational methodology has been developed to a point to make the computational approach feasible and can be used to establish such operational envelopes. Two-phase flow analysis of the active thermal control system (ATCS) ammonia pump was conducted to determine the safe operating envelopes. Analysis was conducted to determine the pump dynamic environment under two operating conditions: (1) fill of the entire ammonia loop during the initial on-orbit system fill; (2) fill of a radiator Orbital Replacement Unit (ORU). Critical design parameters, such as pump pressure, void fraction, and mass flow rate, were calculated for candidate system-fill scenarios. The computations were performed with the FLOW-NET program, which was modified to accommodate a stalled pump condition caused by a pump upstream pressure decrease.
机译:国际空间站热控制系统是单相氨环。然而,在一些操作条件下,将两相流引入系统中。必须在实验或计算中,在两相流程期间操作信封在两相流动期间的安全设备必须进行实验或计算。已经开发了计算方法,以使计算方法可行并且可用于建立这种操作信封。进行了有源热控制系统(ATC)氨泵的两相流分析以确定安全的操作包络。进行分析以确定在两个操作条件下的泵动力环境:(1)在初始轨道系统填充期间整个氨环填充; (2)填充散热器轨道替换单元(ORU)。计算临界设计参数,例如泵压,空隙部分和质量流量,用于候选系统填充方案。使用流动网程序执行计算,该流量被修改以容纳由泵上游压力降低引起的停滞泵状态。

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