Numerical analysis and experiment research on fluid orbital performance of vane type propellant management device

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Abstract

Vane type propellant management device (PMD) is one of the key components of the vane-type surface tension tank (STT), and its fluid orbital performance directly determines the STT's success or failure. In present paper, numerical analysis and microgravity experiment study on fluid orbital performance of a vane type PMD were carried out. By using two-phase flow model of volume of fluid (VOF), fluid flow characteristics in the tank with the vane type PMD were numerically calculated, and the rules of fluid transfer and distribution were gotten. A abbreviate model test system of the vane type PMD is established and microgravity drop tower tests were performed, then fluid management and transmission rules of the vane type PMD were obtained under microgravity environment. The analysis and tests results show that the vane type PMD has good and initiative fluid orbital management ability and meets the demands of fluid orbital extrusion in the vane type STT. The results offer valuable guidance for the design and optimization of the new generation of vane type PMD, and also provide a new approach for fluid management and control in space environment.

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Hu, Q., Li, Y., Pan, H. L., Liu, J. T., & Zhuang, B. T. (2015). Numerical analysis and experiment research on fluid orbital performance of vane type propellant management device. In IOP Conference Series: Materials Science and Engineering (Vol. 72). Institute of Physics Publishing. https://doi.org/10.1088/1757-899X/72/4/042042

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