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NASA NTRS · 20030066212

A Generalized Multi-Phase Framework for Modeling Cavitation in Cryogenic Fluids

Abstract

A generalized multi-phase formulation for cavitation in fluids operating at temperatures elevated relative to their critical temperatures is presented. The thermal effects and the accompanying property variations due to phase change are modeled rigorously. Thermal equilibrium is assumed and fluid thermodynamic properties are specified along the saturation line using the NIST-12 databank. Fundamental changes in the physical characteristics of the cavity when thermal effects become pronounced are identified; the cavity becomes more porous, the interface less distinct, and has increased entrainment when temperature variations are present. Quantitative estimates of temperature and pressure depressions in both liquid nitrogen and liquid hydrogen were computed and compared with experimental data of Hord for hydrofoils. Excellent estimates of the leading edge temperature and pressure depression were obtained while the comparisons in the cavity closure region were reasonable. Liquid nitrogen cavities were consistently found to be in thermal equilibrium while liquid hydrogen cavities exhibited small, but distinct, non-equilibrium effects.

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BibTeXRIS

Dorney, Dan, Hosangadi, Ashvin, Ahuja, Vineet. 2003-06-13. A Generalized Multi-Phase Framework for Modeling Cavitation in Cryogenic Fluids. https://ntrs.nasa.gov/citations/20030066212

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