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Titolo: NUMERICAL-SIMULATION OF THE HEAD-ON REFLECTION OF A REGULAR REFLECTION
Autore: FALCOVITZ J; ALFANDARY G; BENDOR G;
- Indirizzi:
- TECHNION ISRAEL INST TECHNOL,FAC AEROSP ENGN HAIFA ISRAEL RAFAEL BALLIST CTR HAIFA ISRAEL BEN GURION UNIV NEGEV,PEARLSTONE CTR AERONAUT ENGN STUDIES,DEPT MECH ENGN BEER SHEVA ISRAEL
- Titolo Testata:
- International journal for numerical methods in fluids
fascicolo: 12,
volume: 17,
anno: 1993,
pagine: 1055 - 1077
- SICI:
- 0271-2091(1993)17:12<1055:NOTHRO>2.0.ZU;2-N
- Fonte:
- ISI
- Lingua:
- ENG
- Soggetto:
- DOUBLE WEDGE; SHOCK-WAVE; SCHEME;
- Keywords:
- COMPUTATIONAL FLUID DYNAMICS; SHOCK WAVE REFLECTIONS; REGULAR REFLECTION;
- Tipo documento:
- Article
- Natura:
- Periodico
- Settore Disciplinare:
- CompuMath Citation Index
- Science Citation Index Expanded
- Science Citation Index Expanded
- Citazioni:
- 7
- Recensione:
- Indirizzi per estratti:
-
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- Citazione:
- J. Falcovitz et al., "NUMERICAL-SIMULATION OF THE HEAD-ON REFLECTION OF A REGULAR REFLECTION", International journal for numerical methods in fluids, 17(12), 1993, pp. 1055-1077
Abstract
The head-on collision and subsequent reflection of a Regular Reflection (RR) from the end-wall of a shock tube has been investigated both experimentally and numerically for two different incident shock wave Mach numbers and two different reflecting wedge angles. The agreement between the double-exposure holographic interferograms and the numericalsimulations which were obtained using a GRP based numerical code, wasfound to be excellent in the RR region and very good behind the head-on reflected RR. The overall good agreement between the computed and experimental constant-density contours (isopycnics) constitutes a validation of the computational method, including the oblique-wall boundarycondition.
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Documento generato il 25/01/21 alle ore 16:02:56