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Effective adjoint approaches for computational fluid dynamics
The adjoint method is used for high-fidelity aerodynamic shape optimization and is an
efficient approach for computing the derivatives of a function of interest with respect to a …
efficient approach for computing the derivatives of a function of interest with respect to a …
Multidisciplinary design optimization: a survey of architectures
JRRA Martins, AB Lambe - AIAA journal, 2013 - arc.aiaa.org
Multidisciplinary design optimization is a field of research that studies the application of
numerical optimization techniques to the design of engineering systems involving multiple …
numerical optimization techniques to the design of engineering systems involving multiple …
OpenMDAO: An open-source framework for multidisciplinary design, analysis, and optimization
Multidisciplinary design optimization (MDO) is concerned with solving design problems
involving coupled numerical models of complex engineering systems. While various MDO …
involving coupled numerical models of complex engineering systems. While various MDO …
Multipoint high-fidelity aerostructural optimization of a transport aircraft configuration
This paper presents multipoint high-fidelity aerostructural optimizations of a long-range wide-
body transonic transport aircraft configuration. The aerostructural analysis employs Euler …
body transonic transport aircraft configuration. The aerostructural analysis employs Euler …
Review and unification of methods for computing derivatives of multidisciplinary computational models
This paper presents a review of all existing discrete methods for computing the derivatives of
computational models within a unified mathematical framework. This framework hinges on a …
computational models within a unified mathematical framework. This framework hinges on a …
Dafoam: An open-source adjoint framework for multidisciplinary design optimization with openfoam
The adjoint method is an efficient approach for computing derivatives that allow gradient-
based optimization to handle systems parameterized with a large number of design …
based optimization to handle systems parameterized with a large number of design …
Scalable parallel approach for high-fidelity steady-state aeroelastic analysis and adjoint derivative computations
Aeroelastic systems achieve the best performance when the aerodynamic shape and
structural sizing are optimized concurrently, but such an optimization is challenging when …
structural sizing are optimized concurrently, but such an optimization is challenging when …
[KIRJA][B] Computational approaches for aerospace design: the pursuit of excellence
A Keane, P Nair - 2005 - books.google.com
Over the last fifty years, the ability to carry out analysis as a precursor to decision making in
engineering design has increased dramatically. In particular, the advent of modern …
engineering design has increased dramatically. In particular, the advent of modern …
Numerical sensitivity analysis for aerodynamic optimization: A survey of approaches
The calculation of the derivatives of output quantities of aerodynamic flow codes, commonly
known as numerical sensitivity analysis, has recently become of increased importance for a …
known as numerical sensitivity analysis, has recently become of increased importance for a …
Review and prospect of supersonic business jet design
Y Sun, H Smith - Progress in Aerospace Sciences, 2017 - Elsevier
This paper reviews the environmental issues and challenges appropriate to the design of
supersonic business jets (SSBJs). There has been a renewed, worldwide interest in …
supersonic business jets (SSBJs). There has been a renewed, worldwide interest in …