Aerothermodynamic Study of Ultrahigh-Temperature Ceramic Winglet for Atmospheric Reentry Test
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[1] C. F. Curtiss,et al. Molecular Theory Of Gases And Liquids , 1954 .
[2] Raffaele Savino,et al. BLUNTED CONE-FLARE IN HYPERSONIC FLOW , 2005 .
[3] Bridget R. Rogers,et al. Catalytic Atom Recombination on ZrB2/SiC and HfB2/SiC Ultrahigh-Temperature Ceramic Composites , 2004 .
[4] R. Savino,et al. Aerothermal analysis of an advanced hot structure for hypersonic flight tests , 2004 .
[5] Roger C. Millikan,et al. Systematics of Vibrational Relaxation , 1963 .
[6] S. O’Byrne,et al. Fluorescence Visualization of Hypersonic Flow Establishment over a Blunt Fin , 2001 .
[7] Michael E. Tauber,et al. A review of high-speed, convective, heat-transfer computation methods , 1989 .
[8] R. Savino,et al. Stability of ultra-high-temperature ZrB2–SiC ceramics under simulated atmospheric re-entry conditions , 2007 .
[9] Raffaele Savino,et al. Aerothermodynamic Study of an Advanced Thermal Protection System , 2003 .
[10] Giorgio Saccoccia,et al. Preparing for atmospheric reentry with EXPERT's help - an aerothermodynamic in-flight research programme , 2003 .
[11] Graham V. Candler,et al. Review of Chemical-Kinetic Problems of Future NASA Missions, II: Mars Entries , 1993 .
[12] Raffaele Savino,et al. Aerothermodynamic study of UHTC-based thermal protection systems , 2005 .