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Hydrodynamic performance on sloshing process in a liquid oxygen tank under intermittent excitation

机译:间歇激发下液氧罐中晃动过程的流体动力学性能

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摘要

Fluid sloshing in cryogenic fuel storage tanks, is harmful to effective management and safe storage of cryogens, it is necessary to understand the nature of fluid sloshing in depth. In the present study, a numerical model is built to research the hydrodynamic performance in a liquid oxygen tank under an intermittent sloshing excitation. The external heat inputs are considered, and the intermittent excitation is compiled by user-defined functions and implanted into the numerical model. The mesh motion treatment is specially adopted to predict fluctuations of the free surface, coupled with the volume of fluid method. Validated against the sloshing experiments, the present numerical model was proven to have accurate predicting ability on fluid sloshing in cryogenic storage tanks. Based on the developed numerical model, both the sloshing force and moment are monitored. The liquid and vapor phase distributions and pressure distribution are well predicted. Variations of vapor and liquid pressures are analyzed. The dynamic variations of the interfacial monitors are greatly predicted. Finally, the performance comparison between the continuous and intermittent sloshing excitations is made. With some valuable conclusions achieved, the present study could supply some effective references for fluid sloshing suppression under irregular excitations.
机译:低温燃料储罐中的液体晃动,有害于有效的管理和安全储存冷冻剂,有必要了解流体晃动深度的性质。在本研究中,建立了一种数值模型,以在间歇晃动激发下研究液氧罐中的流体动力学性能。考虑外部热输入,并且通过用户定义的功能编制间歇激励并植入数值模型。特别采用网格运动处理来预测自由表面的波动,与流体方法的体积相结合。针对晃动实验验证,证明了本数值模型在低温储罐中具有准确的预测能力。基于所开发的数值模型,监测晃动力和时刻。预测液体和气相分布和压力分布。分析了蒸汽和液体压力的变化。大大预测了界面监测器的动态变化。最后,制造连续和间歇性晃动激发之间的性能比较。随着一些有价值的结论,本研究可以在不规则激发下提供一些有效的流体晃动抑制的参考。

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