This book offers a unique perspective on the intersection of supersonic intake design, formal optimization methods, and the use of computational fluid dynamics (CFD) for evaluating the performance of intakes. Details of the meta-model and optimization scheme, as well the CFD solvers used at each stage of the optimization process, are presented.
Additionally, for a balanced perspective, a separate chapter presents a faster, lower-fidelity alternative to RANS computation, complemented by its illustrative application to hypersonic intakes.
Key Features:
- Discusses multi-objective design of supersonic intakes using formal optimization tools such as Kriging/MOGA.
- Leverages advancement in CFD methods and optimization techniques for practical supersonic intake design.
- Covers reduced-order analysis of supersonic intake.
- Focuses on the intricate aspects of cowl design and throat shaping.
- Presents conical intake design with geometric constraints and TPR-drag trade-offs
This book is aimed at graduate students, researchers, and professionals in aircraft propulsion, intake design, and aerospace engineering.
Pay easily by card, Klarna, Apple Pay or Google Pay. Not happy? You always have a 14-day money-back guarantee. Read more in our terms. If you have any questions, email us at hello@memmo.org.
Memmo makes studying easier – wherever you are in the world. We bring your course books and smart study tools together in one place: summaries, quizzes, podcasts and flashcards. Plus Ted, your study buddy who answers anything you wonder. Over 50,000 students already study here – built to help you learn faster and stress less.