Development of Efficient UQ and RO Methods

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Details

The application and use of aeronautical components such as engines, wings, or complete airplanes are all subject to uncertainties. These uncertainties can have an important effect on the performance (output) of these components. Polynomial chaos is a recent methodology to account for uncertainties that can be described by a distribution function. The method allows to obtain the distribution of the output for given input distributions. A problem of the method is the so-called curse-of-dimensionality. In the present work a cure is proposed based on a reduced basis approach. By simulations on a coarse grid the covariance of the output in stochastic space is determined, allowing to find a reduced basis via a proper orthogonal decomposition. The methodology is applied to a 2D airfoil and a 3D transonic compressor. This work also deals with robust, gradient based, shape optimization. The required gradients of the mean objective and of the variance of the objective can be determined via a polynomial chaos expansion of the gradient. Because of the high number of design variables, typical for shape optimization, an adjoint methodology is used.

Autorentext

Dinesh Kumar obtained his degree in Aerospace Engineering from Indian Institute of Technology Kanpur (IIT Kanpur), India. In January 2017 he defended his PhD, entitled: "Development of Efficient Uncertainty Quantification and Robust Optimization Methods for Advanced Applications in Computational Fluid Dynamics" from VUB Belgium.

Weitere Informationen

  • Allgemeine Informationen
    • GTIN 09783330046559
    • Genre Mechanical Engineering
    • Sprache Englisch
    • Anzahl Seiten 196
    • Herausgeber LAP LAMBERT Academic Publishing
    • Größe H220mm x B150mm x T13mm
    • Jahr 2017
    • EAN 9783330046559
    • Format Kartonierter Einband
    • ISBN 3330046554
    • Veröffentlichung 17.02.2017
    • Titel Development of Efficient UQ and RO Methods
    • Autor Dinesh Kumar
    • Untertitel With CFD Applications
    • Gewicht 310g

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