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微重力工况低温液氢晃动力学特性

朱洪来 程灵艳 季沈蕊 刘展

空间控制技术与应用(中英文)2026,Vol.52Issue(2):110-121,12.
空间控制技术与应用(中英文)2026,Vol.52Issue(2):110-121,12.DOI:10.3969/j.issn.1674-1579.2026.02.011

微重力工况低温液氢晃动力学特性

Sloshing Mechanic Characteristics of Cryogenic Liquid Hydrogen Under Microgravity

朱洪来 1程灵艳 2季沈蕊 2刘展2

作者信息

  • 1. 北京控制工程研究所,北京 100094
  • 2. 中国矿业大学,徐州 221116
  • 折叠

摘要

Abstract

Based on the volume of fluid(VOF)method and dynamic mesh technology,a three-dimensional fluid sloshing numerical model is developed and solved by considering vapor-liquid two-phase flow,phase change,surface tension,external excitation,and wall heat leakage.The sloshing behavior of a liquid hydrogen tank is systematically investigated under five typical excitation conditions:lateral excitation,longitudinal excitation,uniform acceleration,uniform deceleration,and self-rotation.The main quantitative findings are as follows:under lateral excitation,the liquid center of mass drifted negatively by about 50 mm within 12 s,and the moment of inertia increased from 4.31 kg·m2 to 4.48 kg·m2;longitudinal excitation triggered Faraday instability,leading to the formation of standing waves that are amplified over time;in variable-speed conditions,uniform acceleration caused liquid settling toward the tank bottom accompanied by bubble entrainment,with the centroid lifting more than 30 mm along the motion direction,while uniform deceleration induces a forward surge of about 500 mm within 3 s and a peak moment of inertia of approximately 6.1 kg·m2;in self-rotation excitation,centrifugal effects dominated liquid redistribution,forming a bowl-shaped interface with sloshing forces approaching zero.These results reveal the dynamic responses and instability mechanisms of liquid hydrogen sloshing under microgravity,providing technical reference for the structural safety design of cryogenic propulsion systems.

关键词

微重力/低温液氢贮箱/晃动特性/气液两相流

Key words

microgravity/cryogenic liquid hydrogen tank/sloshing characteristics/vapor-liquid two-phase flow

分类

航空航天

引用本文复制引用

朱洪来,程灵艳,季沈蕊,刘展..微重力工况低温液氢晃动力学特性[J].空间控制技术与应用(中英文),2026,52(2):110-121,12.

基金项目

北京控制工程研究所开放基金课题资助(LabASP-2024-06) Open Fund of Beijing Institute of Control Engineering(LabASP-2024-06) (LabASP-2024-06)

空间控制技术与应用(中英文)

1674-1579

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