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Publishing Language: Chinese | Open Access

Investigation on Fluid Retention Stability of Propellant Management Devices in Cryogenic Liquid Hydrogen Tank under Microgravity Conditions

Yunlong Wang1Yuan Ma1,2( )Rongda Zhang1Kang Wang1Yanzhong Li1
School of Energy and Power Engineering, Xi′an Jiaotong University, Xi′an, 710049, China
MOE Key Laboratory of Cryogenic Technology and Equipment, Xi′an Jiaotong University, Xi′an, 710049, China
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Abstract

This study investigates the in-orbit liquid hydrogen management capability of screen channel tanks in cryogenic propulsion systems by developing a three-dimensional multiphysics model that integrates filling ratios (5%-50%) and microgravity disturbances(10-3 g). The competition mechanism between capillary and inertial forces, as well as the fluid retention stability during tank reorientation, was systematically analyzed. The key findings include the following. The fluid retention capability was attributed to the structural synergy between liquid collection channels and tank walls, ensuring continuous liquid coverage at the channel inlets under all operating conditions. At low filling ratios, surface tension dominated the phase distribution with a quasi-static interfacial evolution. Increased filling enhanced inertial forces, inducing phase oscillations via momentum transport. The directional sensitivity analysis revealed that bottom acceleration induced the largest centroid depression, top acceleration had a minimal impact on the relative centroid height, and lateral disturbances caused larger centroid oscillation amplitudes and higher frequencies than oblique lateral disturbances.

CLC number: TK91; V19; V421.33 Document code: A Article ID: 0253-4339(2025)05-0039-08

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Journal of Refrigeration
Pages 39-46

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Cite this article:
Wang Y, Ma Y, Zhang R, et al. Investigation on Fluid Retention Stability of Propellant Management Devices in Cryogenic Liquid Hydrogen Tank under Microgravity Conditions. Journal of Refrigeration, 2025, 46(5): 39-46. https://doi.org/10.12465/j.issn.0253-4339.2025.05.039

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Received: 07 May 2025
Revised: 23 May 2025
Accepted: 26 May 2025
Published: 16 October 2025
© 2025 The Editorial Office of Journal of Refrigeration

This is an open access article under the terms of the Creative Commons Attribution 4.0 International License (CC BY 4.0, http://creativecommons.org/licenses/by/4.0/).