微重力条件下上面级贮箱液体推进剂自由界面变形数值模拟研究

Numerical simulation of free interface deformation of liquid propellant in upper stage tank under microgravity condition

  • 摘要: 上面级在滑行期间经历微重力环境,其贮箱内的液体推进剂若管理失当,将影响主发动机的再次启动。文章采用流体体积法对微重力条件下某上面级液氧贮箱内自由界面变形问题进行数值模拟,并与理论分析值进行对比。研究结果表明,数值模拟计算得到的液体爬升高度和表面张力波传播速度与流体力学理论符合较好,证明该方法能够预示微重力条件下上面级液氧贮箱内的流体运动特性,可为后续上面级推进剂管理技术方案的制定及相关试验验证提供参考。

     

    Abstract: The upper stage tank is in a microgravity environment during the inertial flight. If the liquid propellant in the tank is not well managed, the normal restart of the main engine would be affected. In this paper, the Volume of Fluid method is adopted to simulate the free interface deformation of the propellant in an upper stage tank under the microgravity condition, and the results are compared with the theoretical analysis results. It is shown that the liquid climbing height and the surface tension wave propagation velocity obtained by the numerical simulation are in good agreement with the values from the fluid mechanics theory, indicating that the calculation method can be used for predicting the fluid motion characteristics of the upper stage liquid oxygen tank under the microgravity condition, to provide a reference for the propellant management of the subsequent upper stage as well as a support for the related test verification work.

     

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