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- W4317568957 abstract "The implementation and validation of a thermodynamic nonequilibrium and weakly ionized plasma flow modeling capability in the Loci/CHEM solver is discussed herein. Park's two-temperature model is used to enable simulation of thermodynamic nonequilibrium, and plasma modeling is accomplished through the development of collision-integral-based transport properties suitable for high temperatures and charged species, as well as a modified Fick's law with an ambipolar diffusion assumption to ensure charge neutrality within the plasma. Validation is achieved via solver-to-solver comparison of four cases of increasing complexity: dissociated nitrogen in a shock tube, the canonical 25-degree/55-degree double-cone, the RAM-C II flight-test, and the Stardust sample return capsule. The capability developed in the present work extends the Loci/CHEM solver to a new class of simulations, including hypersonic vehicles and planetary-reentry flows." @default.
- W4317568957 created "2023-01-21" @default.
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- W4317568957 date "2023-01-19" @default.
- W4317568957 modified "2023-09-23" @default.
- W4317568957 title "Development of a Thermodynamic Nonequilibrium and Weakly Ionized Plasma Flow Modeling Capability in Loci/CHEM" @default.
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- W4317568957 doi "https://doi.org/10.2514/6.2023-0074" @default.
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