Two-Phase Flow Modeling of Cryogenic Loading Operations

Ekaterina Ponizovskaya Devine, D. Luchinsky, M. Foygel, V. Hafiychuk, M. Khasin, J. Sass, Barbara Brown
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Abstract

We consider problem of modeling and controlling two-phase cryogenic flows during ground loading operations. We introduce homogeneous moving front and separated two-phase flow solvers that are capable of fast and accurate online predictions of flow dynamics during chilldown and transfer under nominal conditions and in the presence of faults. Concise sets of cryogenic correlations are proposed in each case. We present results of application of proposed solvers to the analysis of chilldown in large-scale experimental cryogenic transfer line build in Kennedy Space Center. We discuss optimization of parameters of cryogenic models obtained using general inferential framework and an application of the solvers to the fault detection and evaluation based on D-matrix approach. It is shown that solver ’ s predictions are in good agreement with experimental data obtained for liquid nitrogen flow in nominal regime and in the presence of faults.
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低温加载操作的两相流模型
研究了地面加载过程中两相低温流的建模与控制问题。我们介绍了均匀移动锋和分离的两相流求解器,它们能够快速准确地在线预测在额定条件下和存在故障的冷却和转移过程中的流动动力学。在每种情况下都提出了简明的低温相关集。本文介绍了所提出的求解方法在肯尼迪航天中心大型实验低温传输线冷却分析中的应用结果。讨论了利用一般推理框架得到的低温模型参数的优化问题,以及求解器在基于d -矩阵方法的故障检测与评估中的应用。结果表明,求解器的预测结果与液氮在名义状态下和存在断层时的流动实验数据吻合较好。
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