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Search results for: AERODYNAMIC WING DESIGN

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Search results for: AERODYNAMIC WING DESIGN

  • GUT LightLab [Laboratorium badawcze światła]

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    TBC Celem Laboratorium Światła (z ang. GUT LightLab), jako placówki międzydyscyplinarnej, jest prowadzenie na wysokim poziomie badań podstawowych oraz badań stosowanych z pogranicza wielu dziedzin, w aspekcie odziaływania Światła, takich jak: Ochrona Środowiska, Medycyna, Zrównoważony Rozwój, Architektura Budowli, Architektura Dziedzictwa, Architektura Krajobrazu, Urbanistyka, Architektura Wnętrz, System znajdowania drogi (z ang....

  • Laboratorium Automatyki Napędu Elektrycznego

    Programowalne układy napędowe zasilane przekształtnikowo ze sterowaniem mikroprocesorowym

  • Pracownia Fotogrametrii i Teledetekcji Niskiego Pułapu

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    W pracowni prowadzone są badania naukowe oraz zajęcia dydaktyczne z zakresu fotogrametrii cyfrowej i teledetekcji, szczególnie z niskiego pułapu czyli z bezzałogowych statków powietrznych. W ramach działań pracowni prowadzone są pomiary terenowe z użyciem nowoczesnych technik pomiarowych i bezzałogowych statków powietrznych, szkolenie lotnicze operatorów bezzałogowych statków powietrznych. Prace kameralne realizowane są na nowoczesnym...

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Search results for: AERODYNAMIC WING DESIGN

  • Multi-fidelity robust aerodynamic design optimization under mixed uncertainty

    Publication
    • H. Shah
    • S. Hosder
    • S. Kozieł
    • Y. Tesfahunegn
    • L. Leifsson

    - AEROSPACE SCIENCE AND TECHNOLOGY - Year 2015

    The objective of this paper is to present a robust optimization algorithm for computationally efficient airfoil design under mixed (inherent and epistemic) uncertainty using a multi-fidelity approach. This algorithm exploits stochastic expansions derived from the Non-Intrusive Polynomial Chaos (NIPC) technique to create surrogate models utilized in the optimization process. A combined NIPC expansion approach is used, where both...

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  • Variable-fidelity CFD models and co-Kriging for expedited multi-objective aerodynamic design optimization

    Publication

    - ENGINEERING COMPUTATIONS - Year 2016

    Purpose – Strategies for accelerated multi-objective optimization of aerodynamic surfaces are investigated, including the possibility of exploiting surrogate modeling techniques for computational fluid dynamic (CFD)-driven design speedup of such surfaces. The purpose of this paper is to reduce the overall optimization time. Design/methodology/approach – An algorithmic framework is described that is composed of: a search space reduction,...

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  • Multi-fidelity aerodynamic design trade-off exploration using point-by-point Pareto set identification

    Publication

    - AEROSPACE SCIENCE AND TECHNOLOGY - Year 2018

    Aerodynamic design is inherently a multi-objective optimization (MOO) problem. Determining the best possible trade-offs between conflicting aerodynamic objectives can be computationally challenging when carried out directly at the level of high-fidelity computational fluid dynamics simulations. This paper presents a computationally cheap methodology for exploration of aerodynamic design trade-offs. In particular, point-by-point...

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  • The Motion Analysis of Attacus Atlas Rigid Wing

    Publication

    - International Review of Aerospace Engineering (IREASE) - Year 2022

    The remarkable aerodynamic efficiency of flapping insect wings has fascinated researchers for many years. Butterfly wings are distinguished by a much larger lifting surface, and thus, a different style of flapping flight. The considerations described in the article are an introduction to a fully flexible analysis of the wing in motion. The study of the rigid wing gives the basic knowledge necessary in the further process. The yaw,...

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  • Fast Low-fidelity Wing Aerodynamics Model for Surrogate-Based Shape Optimization

    Publication

    Variable-fidelity optimization (VFO) can be efficient in terms of the computational cost when compared with traditional approaches, such as gradient-based methods with adjoint sensitivity information. In variable-fidelity methods, the directoptimization of the expensive high-fidelity model is replaced by iterative re-optimization of a physics-based surrogate model, which is constructed from a corrected low-fidelity model. The success...

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