首页> 外文会议>Cryogenic Engineering Conference >EXPERIMENTAL AND NUMERICAL INVESTIGATION OF REDUCED GRAVITY SLOSH DYNAMICS FOR THE CHARACTERIZATION OF CRYOGENIC LAUNCH AND SPACE VEHICLE PROPELLANTS
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EXPERIMENTAL AND NUMERICAL INVESTIGATION OF REDUCED GRAVITY SLOSH DYNAMICS FOR THE CHARACTERIZATION OF CRYOGENIC LAUNCH AND SPACE VEHICLE PROPELLANTS

机译:减重钢筋动力学对低温发射及太空车辆推进剂表征的实验和数值研究

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As space programs increasingly investigate various options for long duration space missions the accurate prediction of propellant behavior over long periods of time in microgravity environment has become increasingly imperative. This has driven the development of a detailed, physics-based understanding of the slosh behavior of cryogenic propellants over a range of conditions and environments that are relevant for rocket and space storage applications. Recent advancements in computational fluid dynamics (CFD) models and hardware capabilities have enabled the modeling of complex fluid behavior in microgravity environment. Historically, launch vehicles with moderate duration upper stage coast periods have contained very limited instrumentation to quantify propellant stratification and boil-off in these environments, thus the ability to benchmark these complex computational models is of great consequence. To benchmark enhanced CFD models, recent work focuses on establishing an extensive experimental database of liquid slosh under a wide range of relevant conditions. This publication will summarize the various experimental programs established to produce this comprehensive database and unique flight measurement techniques.
机译:随着空间计划越来越多地研究了长期空间任务的各种选项,微匍匐环境长时间长时间的推进剂行为的准确预测变得越来越迫切。这使得在与火箭和空间存储应用相关的一系列条件和环境中,对低温推进剂的Slosh行为进行了详细的,基于物理的理解的发展。计算流体动力学(CFD)模型和硬件能力的最新进步使得在微匍匐环境中的复杂流体行为的建模使得。从历史上看,具有中等持续的上阶段海岸时期的发射车辆已经包含了非常有限的仪器,可以在这些环境中量化推进剂分层和蒸发,因此基准这些复杂的计算模型的能力具有很大的后果。为了获得基准增强的CFD模型,最近的工作侧重于在各种相关条件下建立广泛的液体钢管实验数据库。本出版物将总结为生产该综合数据库和独特的飞行测量技术而建立的各种实验计划。

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