Idealized tip-to-tail waverider modelThe flow field of an idealized cone-derived waverider is axisymmetric. This forebody feature is preserved for the rest of the vehicle, including the inlet, cowl, combustor, and nozzle. There is thus an inviscid, tip-to-tail model in which both the external and internal flows are axisymmetric. The assumption of axial symmetry provides a major simplification for the analysis and allows for a systematic integration of the propulsion unit with the aerodynamics. The code is an initial formulation that provides only the most basic engineering data, such as lift, thrust, drag, and fuel consumption for a point-designed vehicle that may be cruising at a low hypersonic Mach number. The user may specify flight altitude and Mach number, a multiple shock configuration for the inlet, a few basic geometric parameter, H2 or CH4 as fuel, the fuel/air ratio, etc. A new design concept is used for the nozzle that avoids shock waves, minimizes the nozzle length, and may maximize its thrust. A general description of the model is provided with emphasis on the design of the nozzle and fins. Preliminary results are presented that compare the cruise flight range using H2 or CH4 as the fuel.
Document ID
19910041132
Acquisition Source
Legacy CDMS
Document Type
Conference Paper
Authors
Emanuel, G. (Oklahoma, University Norman, United States)
Park, H.-K. (Oklahoma Univ. Norman, OK, United States)
Date Acquired
August 14, 2013
Publication Date
January 1, 1990
Subject Category
Launch Vehicles And Space Vehicles
Meeting Information
Meeting: International Hypersonic Waverider Symposium