Abstract
With the rapid development of the Computational Fluid Dynamics (CFD), Accurate computing hypersonic heating is in a high demand for the design of the new generation reusable space vehicle to conduct deep space exploration. In the past years, most researchers try to solve this problem by concentrating on the choice of the upwind schemes or the definition of the cell Reynolds number. However, the cell Reynolds number dependencies and limiter dependencies of the upwind schemes, which are of great importance to their performances in hypersonic heating computations, are concerned by few people. In this paper, we conduct a systematic study on these properties respectively. Results in our test cases show that SLAU (Simple Low-dissipation AUSM-family) is with a much higher level of accuracy and robustness in hypersonic heating predictions. Also, it performs much better in terms of the limiter dependency and the cell Reynolds number dependency.
Original language | English |
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Pages (from-to) | 412-420 |
Number of pages | 9 |
Journal | Acta Astronautica |
Volume | 147 |
DOIs | |
State | Published - Jun 2018 |
Keywords
- Cell Reynolds number dependency
- Hypersonic heating
- Limiter dependency
- Reusable space vehicle
- SLAU