タイトル | Fundamental Mixing and Combustion Experiments for Propelled Hypersonic Flight |
本文(外部サイト) | http://hdl.handle.net/2060/20030002220 |
著者(英) | Diskin, G. S.; Drummond, J. P.; Cutler, A. D.; Danehy, P. M. |
著者所属(英) | NASA Langley Research Center |
発行日 | 2002-01-01 |
言語 | eng |
内容記述 | Two experiments have been conducted to acquire data for the validation of computational fluid dynamics (CFD) codes used in the design of supersonic combustors. The first experiment is a study of a supersonic coaxial jet into stagnant air in which the center jet is of a light gas, the coflow jet is of air, and the mixing layer between them is compressible. The jet flow field is characterized using schlieren imaging, surveys with Pitot, total temperature and gas sampling probes, and RELIEF velocimetry. VULCAN, a structured grid CFD code, is used to solve for the nozzle and jet flow. The second experiment is a study of a supersonic combustor consisting of a diverging duct with single downstream-angled wall injector. Entrance Mach number is 2 and enthalpy is nominally that of Mach 7 flight. Coherent anti-Stokes Raman spectroscopy (CARS) has been used to obtain nitrogen temperature in planes of the flow, and surface pressures and temperatures have also been acquired. Modern-design-of-experiment techniques have been used to maximize the quality of the data set. |
NASA分類 | Inorganic, Organic and Physical Chemistry |
レポートNO | AIAA Paper 2002-3879 |
権利 | Copyright, Distribution as joint owner in the copyright |
URI | https://repository.exst.jaxa.jp/dspace/handle/a-is/90944 |
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