NASA NTRS · 20230015940
Aviary: An Open-Source Multidisciplinary Design, Analysis, and Optimization Tool for Modeling Aircraft With Analytic Gradients
Abstract
Demands on aircraft design methods in recent years have begun to require increasingly higher amounts of coupling between disciplines and have also begun to require optimization in order to satisfy competing objectives involving large numbers of parameters that define unconventional configurations. These expanding requirements have amplified a need for new and improved aircraft design, analysis, and optimization codes that are capable of performing coupled design exploiting analytic gradients where possible. Aviary is a multidisciplinary design optimization and analysis framework which allows for tightly coupled simultaneous aircraft and subsystem design using analytic gradients. Aviary has employed the methods of two legacy aircraft analysis tools to provide native analytically differentiated calculations for five different disciplines, and it also has the ability to couple in external discipline analysis tools, whether or not those tools can provide analytic gradients. Preliminary examples and modeling efforts have shown Aviary’s ability to effectively model novel concepts and explore large and non-intuitive design spaces. Finally, a multi-level user interface in Aviary creates an easy entry point for users with any level of multidisciplinary design, analysis, and optimization experience.
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Jennifer Gratz, Jason Kirk, Carl Recine, John Jasa, Eliot Aretskin-Hariton, Kenneth Moore, Darrell Caldwell, Kenneth Lyons, Sydney Schnulo, Robert Falck, Herb Schilling, Erik Olson, Dahlia Pham, Xun Jiang, Samara Murri, Ben Margolis, Eric Hendricks, Justin Gray, Bret Naylor, Kiran Marfatia, Greg Wrenn, Benjamin Doyle Phillips, Joseph A Garcia. Aviary: An Open-Source Multidisciplinary Design, Analysis, and Optimization Tool for Modeling Aircraft With Analytic Gradients. https://ntrs.nasa.gov/citations/20230015940
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