Publication | Closed Access
Under-Track CFD-Based Shape Optimization for a Low-Boom Demonstrator Concept
52
Citations
31
References
2015
Year
AeroacousticsEngineeringCruise TrimAerospace EngineeringSonic Boom LoudnessAerospace TechnologyMechanical SystemsShape OptimizationAerodynamicsComputer-aided DesignStructural OptimizationAircraft Design ProcessMach 1.6Low-boom Demonstrator Concept
The detailed outer mold line shaping of a Mach 1.6, demonstrator-sized low-boom concept is presented. Cruise trim is incorporated a priori as part of the shaping objective, using an equivalent-area-based approach. Design work is performed using a gradient-driven optimization framework that incorporates a three-dimensional, nonlinear flow solver, a parametric geometry modeler, and sensitivities derived using the adjoint method. The shaping effort is focused on reducing the under-track sonic boom level using an inverse design approach, while simultaneously satisfying the trim requirement. Conceptual-level geometric constraints are incorporated in the optimization process, including the internal layout of fuel tanks, landing gear, engine, and crew station. Details of the model parameterization and design process are documented for both flow-through and powered states, and the performance of these optimized vehicles presented in terms of inviscid L/D, trim state, pressures in the near-field and at the ground, and predicted sonic boom loudness.
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