Thermal protection mechanism of heat pipe in leading edge under hypersonic conditions
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Jiaqi Zhu | Wengen Peng | Yurong He | Xinzhi Wang | Jiecai Han | Jiecai Han | Yurong He | Jiaqi Zhu | Xinzhi Wang | Wengen Peng
[1] Neil Mudford,et al. Leading-Edge Bluntness Effects in High Enthalpy, Hypersonic Compression Corner Flow , 1996 .
[2] K. Sutton,et al. A general stagnation-point convective heating equation for arbitrary gas mixtures , 1971 .
[3] Dan D. Edie,et al. Carbon-Carbon Materials and Composites , 1994 .
[4] Christopher E. Glass,et al. Airframe Research and Technology for Hypersonic Airbreathing Vehicles , 2002 .
[5] Eswar Josyula,et al. Numerical study of hypersonic dissociated air past blunt bodies , 1991 .
[6] Paul A. Libby,et al. SYNOPTIC : Analysis of an Active Thermal Protection System for High-Altitude Flight , 1970 .
[7] G. A. NlBLOCK,et al. Four Space Shuttle Wing Leading Edge Concepts , 1974 .
[8] Randall T. Voland,et al. X-43A Hypersonic vehicle technology development , 2006 .
[9] G. P. Peterson,et al. An Introduction to Heat Pipes: Modeling, Testing, and Applications , 1994 .
[10] W. H. Giedt,et al. Heat Transfer, Recovery Factor, and Pressure Distributions Around a Circular Cylinder, Normal to a Supersonic Rarefied-Air Stream , 1960 .
[11] J. E. Kemme,et al. STATUS REPORT ON THEORY AND EXPERIMENTS ON HEAT PIPES AT LOS ALAMOS , 1965 .
[12] L. Lees. Laminar Heat Transfer Over Blunt-Nosed Bodies at Hypersonic Flight Speeds , 1956 .
[13] R. Graves,et al. Aerodynamic performance of osculating-cones waveriders at high altitudes , 1999 .
[14] R. Cummings,et al. Fifty years of hypersonics: where we've been, where we're going , 2003 .
[15] R. Svehla,et al. Estimated Viscosities and Thermal Conductivities of Gases at High Temperatures , 1962 .
[16] T. P. Cotter,et al. Theory of Heat Pipes , 1965 .
[17] G. T. Colwell,et al. Heat pipe and surface mass transfer cooling of hypersonic vehicle structures , 1992 .
[18] Didier F. G. Rault. Aerodynamic characteristics of a hypersonic viscous optimized waverider at high altitudes , 1992 .
[19] F. R. Riddell,et al. Theory of Stagnation Point Heat Transfer in Dissociated Air , 1958 .
[20] J. T. Sena,et al. Analytical and experimental studies of heat pipe radiation cooling of hypersonic propulsion systems , 1992 .
[21] E. Sogame,et al. Radiative transfer in the low Reynolds number, blunt-body stagnationregion at hypersonic speeds. , 1969 .
[22] K. H. Wilson,et al. Viscous, Radiating Shock Layer about a Blunt Body , 1965 .
[23] Donald Johnson,et al. CONFIGURATION DEVELOPMENT FOR A HYDROCARBON FUELED HYPERSONIC CRUISE VEHICLE , 2001 .
[24] Wilson F. N. Santos,et al. Leading-Edge Bluntness Effects on Aerodynamic Heating and Drag of Power Law Body in Low-Density Hypersonic Flow , 2005 .
[25] L. T. Nguyen,et al. NASA hypersonic flight demonstrators—overview, status, and future plans , 2004 .
[26] T. P. Cotter,et al. Structures of Very High Thermal Conductance , 1964 .
[27] I. Ishii,et al. Two-dimensional material response of a transpiration-cooled system in a radiative/convective environment , 1984 .
[28] nasa,et al. U.S. Standard Atmosphere, 1976 , 2015 .
[29] Michael E. Tauber,et al. A review of high-speed, convective, heat-transfer computation methods , 1989 .
[30] E. David,et al. Fabrication and Testing of a Leading-Edge-Shaped Heat Pipe , 1998 .
[31] Haibo Lu,et al. Investigation of thermal protection system by forward-facing cavity and opposing jet combinatorial configuration , 2013 .
[32] Masataka Yamamoto,et al. Development of the hypersonic flight experimental vehicle , 1997 .
[33] Didier F. G. Rault,et al. Aerodynamic Characteristics of a Hypersonic Viscous Optimized Waverider at High Altitudes , 1994 .