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Validation of Slosh Model Parameters and Anti-Slosh Baffle Designs of Propellant Tanks by Using Lateral Slosh Testing

机译:通过使用横向扫描测试验证推进剂箱的钢板模型参数和防斜挡板设计

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The slosh dynamics of propellant tanks can be represented by an equivalent mass-pendulum-dashpot mechanical model. The parameters of this equivalent model, identified as slosh mechanical model parameters, are slosh frequency, slosh mass, and pendulum hinge point location. They can be obtained by both analysis and testing for discrete fill levels. Anti-slosh baffles are usually needed in propellant tanks to control the movement of the fluid inside the tank. Lateral slosh testing, involving both random excitation testing and free-decay testing, are performed to validate the slosh mechanical model parameters and the damping added to the fluid by the anti-slosh baffles. Traditional modal analysis procedures were used to extract the parameters from the experimental data. Test setup of sub-scale tanks will be described. A comparison between experimental results and analysis will be presented.
机译:推进剂罐的Slosh动态可以由等效的质量摆动机械模型表示。识别为Slosh Mechanical Model参数的该等效模型的参数是Slosh频率,Slosh质量和摆锤铰接点位置。它们可以通过分析和测试来获得离散填充水平。在推进剂罐中通常需要防滑挡板,以控制流体在罐内的流动。涉及随机励磁测试和自由衰减测试的横向斜槽测试以验证斜槽机械模型参数,并通过防斜挡板添加到流体中的阻尼。传统的模态分析程序用于从实验数据中提取参数。将描述亚尺度坦克的测试设置。将提出实验结果与分析之间的比较。

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