Measured and predicted heating distributions for biconics at Mach 10

Laminar heating distributions have been measured on a 1.9 percent scale model of a generic aeroassisted vehicle taking the shape of a spherically blunted, 13-deg/7-deg biconic whose forecone section is bent upward (by 7 deg) to furnish self-trim capability at a 20-deg angle-of-attack. The results th...

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Veröffentlicht in:Journal of spacecraft and rockets 1986-05, Vol.23 (3), p.251-258
Hauptverfasser: Miller, Charles G, Gnoffo, Peter A, Wilder, Sue E
Format: Artikel
Sprache:eng
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Zusammenfassung:Laminar heating distributions have been measured on a 1.9 percent scale model of a generic aeroassisted vehicle taking the shape of a spherically blunted, 13-deg/7-deg biconic whose forecone section is bent upward (by 7 deg) to furnish self-trim capability at a 20-deg angle-of-attack. The results thus obtained were compared with data gathered for a straight biconic. While no Reynolds number effect on heating was noted on the windward side of the forecone, the opposite was true of the leeward side, where a Reynolds number increase caused circumferential flow separation at lower angles of attack. Generally, windward heating was predicted to within 10 percent with a computer code solving the steady, three-dimensional parabolized Navier-Stokes equations.
ISSN:0022-4650
1533-6794
DOI:10.2514/3.25803