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Propellant Sloshing Parameter Extraction from CFD Analysis

机译:从CFD分析中提取推进剂晃荡参数

摘要

Propellant slosh is a potential source of disturbance critical to the stability of space vehicle. The sloshing dynamics is typically represented by a mechanical model of spring mass damper. This mechanical model is then included in the equation of motion of the entire vehicle for Guidance, Navigation and Control analysis. The typical parameters required by the mechanical model include natural frequency of the sloshing, sloshing mass, sloshing mass center coordinates, and critical damping coefficient. During the 1960 s US space program, these parameters were either computed from analytical solution for simple geometry or by experimental testing for the sub-scaled configurations. The purpose of this work is to demonstrate the soundness of a CFD approach in modeling the detailed fluid dynamics of tank sloshing and the excellent accuracy in extracting mechanical properties for different tank configurations and at different fill levels. The validation studies included straight cylinder against analytical solution, and sub-scaled Centaur LOX and LH2 tanks with and without baffles against experimental results. This effort shows that CFD technology can provide accurate mechanical parameters for any tank configuration, and is especially valuable to the future design of propellant tanks, as there is no previous experimental data available for the same size and configuration.
机译:推进剂晃动是潜在干扰源,对航天器的稳定性至关重要。晃动动力学通常由弹簧质量阻尼器的机械模型表示。然后将该机械模型包括在整个车辆的运动方程中,以进行制导,导航和控制分析。力学模型所需的典型参数包括晃动的固有频率,晃动质量,晃动质量中心坐标和临界阻尼系数。在1960年代的美国太空计划中,这些参数要么是通过简单几何形状的解析解计算出来的,要么是通过小规模配置的实验测试得出的。这项工作的目的是证明CFD方法在模拟油箱晃动的详细流体动力学方面的正确性,以及在提取不同油箱配置和不同填充水平的机械性能时的出色精度。验证研究包括针对分析溶液的直圆柱体,以及根据实验结果对带有或不带有挡板的半尺寸Centaur LOX和LH2储罐进行了验证。这项工作表明,CFD技术可以为任何储罐配置提供准确的机械参数,并且对于推进剂储罐的未来设计特别有价值,因为以前没有针对相同尺寸和配置的实验数据。

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  • 作者

    Peugeot John; Yang H. Q.;

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  • 年度 2010
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