COSAL: A black-box compressible stability analysis code for transition prediction in three-dimensional boundary layers
Mujeeb Rehman Malik
Abstract
Open-access reader
Mujeeb Rehman Malik
Abstract
Open-access reader
A fast computer code COSAL for transition prediction in three dimensional boundary layers using compressible stability analysis is described. The compressible stability eigenvalue problem is solved using a finite difference method, and the code is a black box in the sense that no guess of the eigenvalue is required from the user. Several optimization procedures were incorporated into COSAL to calculate integrated growth rates (N factor) for transition correlation for swept and tapered laminar flow control wings using the well known e to the Nth power method. A user's guide to the program is provided.
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A fast computer code COSAL for transition prediction in three dimensional boundary layers using compressible stability analysis is described. The compressible stability eigenvalue problem is solved using a finite difference method, and the code is a black box in the sense that no guess of the eigenvalue is required from the user. Several optimization procedures were incorporated into COSAL to calculate integrated growth rates (N factor) for transition correlation for swept and tapered laminar flow control wings using the well known e to the Nth power method. A user's guide to the program is provided.
Key concepts: Stability (learning theory), Boundary (topology), Compressibility, Laminar flow, Eigenvalues and eigenvectors, Code (set theory), Mathematics, Compressible flow