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This book presents systematic research results on curved shock
wave-curved compression surface applied to the compression surface
design of supersonic-hypersonic inlet, which is a brand new inlet
design. The concept of supersonic inlet curved compression
discussed originated from the author's research at the Deutsches
Zentrum fur Luft- und Raumfahrt (DLR SM-ES) in the early 1990s.
This book introduces the research history, working characteristics,
performance calculation and aerodynamic configuration design method
of this compression mode in detail. It also describes method of
estimating the minimum drag in inlet and drag reduction effect of
curved compression and proposes a new index for evaluating unit
area compression efficiency of the inlet. Further, it reviews the
relevant recent research on curved compression. As such it is a
valuable resource for students, researchers and scientists in the
fields of hypersonic propulsion and aeronautics.
This book presents systematic research results on curved shock
wave-curved compression surface applied to the compression surface
design of supersonic-hypersonic inlet, which is a brand new inlet
design. The concept of supersonic inlet curved compression
discussed originated from the author's research at the Deutsches
Zentrum fur Luft- und Raumfahrt (DLR SM-ES) in the early 1990s.
This book introduces the research history, working characteristics,
performance calculation and aerodynamic configuration design method
of this compression mode in detail. It also describes method of
estimating the minimum drag in inlet and drag reduction effect of
curved compression and proposes a new index for evaluating unit
area compression efficiency of the inlet. Further, it reviews the
relevant recent research on curved compression. As such it is a
valuable resource for students, researchers and scientists in the
fields of hypersonic propulsion and aeronautics.
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