Univ.-Prof. Dr.-Ing. habil. Michael Breuer

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Academic degrees
Univ.-Prof. Dr.-Ing. habil.
 
Full Name
Breuer, Michael
 
Credit Name
Univ.-Prof. Dr.-Ing. habil. Michael Breuer
 
Main Affiliation
 

Refined By:
Author:  De Nayer, Guillaume

Results 1-20 of 24 (Search time: 0.004 seconds).

Issue DateTitleAuthor(s) 
1Apr-2019Systematic evaluation of the interface description for fluid–structure interaction simulations using the isogeometric mortar-based mappingApostolatos, Andreas; De Nayer, Guillaume ; Bletzinger, Kai Uwe; Breuer, Michael ; Wüchner, Roland
22023Surrogate-based optimization for the worst-case prediction regarding a flexible structure impacted by wind gustsDe Nayer, Guillaume ; Breuer, Michael 
32020Numerical investigations on the dynamic behavior of a 2-DOF airfoil in the transitional Re number regime based on fully coupled simulations relying on an eddy-resolving techniqueDe Nayer, Guillaume ; Breuer, Michael ; Wood, Jens Nikolas 
4Dec-2014Numerical FSI investigation based on LES: Flow past a cylinder with a flexible splitter plate involving large deformations (FSI-PfS-2a)De Nayer, Guillaume ; Breuer, Michael 
52019Modeling of wind gusts for large-eddy simulations related to fluid-structure interactionsDe Nayer, Guillaume ; Breuer, Michael ; Perali, Paolo; Grollmann, Kai Michael
6Feb-2022FSI simulations of wind gusts impacting an air-inflated flexible membrane at Re = 100,000De Nayer, Guillaume ; Breuer, Michael ; Boulbrachene, Khaled 
72020FSI Investigations on a Flexible Air-Inflated Thin-Walled Structure: An LES Study with Experimental ValidationDe Nayer, Guillaume ; Wood, Jens Nikolas ; Apostolatos, Andreas; Breuer, Michael 
82014Fluid–Structure Interaction of Thin–Walled Structures in Turbulent FlowsBreuer, Michael ; De Nayer, Guillaume 
9Jul-2011Fluid–structure interaction of a flexible structure in a turbulent flow using LESBreuer, Michael ; De Nayer, Guillaume ; Münsch, Manuel
10Feb-2012Fluid-structure interaction using a partitioned semi-implicit predictor-corrector coupling scheme for the application of large-eddy simulationBreuer, Michael ; De Nayer, Guillaume ; Münsch, Manuel; Gallinger, Thomas Gottfried; Wüchner, Roland
11Dec-2012Fluid-structure interaction in turbulent flows: LES predictions and PIV measurementsDe Nayer, Guillaume ; Breuer, Michael ; Kalmbach, Andreas
122014Flow past a cylinder with a flexible splitter plate: A complementary experimental-numerical investigation and a new FSI test case (FSI-PfS-1a)De Nayer, Guillaume ; Kalmbach, Andreas; Breuer, Michael ; Sicklinger, Stefan; Wüchner, Roland
132018Experimental studies on the instantaneous fluidstructure interaction of an air-inflated flexible membrane in turbulent flowWood, Jens Nikolas ; Breuer, Michael ; De Nayer, Guillaume 
142020Experimental investigations on the dynamic behavior of a 2-DOF airfoil in the transitional Re number regime based on digital-image correlation measurementsWood, Jens Nikolas ; Breuer, Michael ; De Nayer, Guillaume 
151-Jul-2016Experimental Investigation and Large-Eddy Simulation of the Turbulent Flow past a Smooth and Rigid HemisphereWood, Jens Nikolas ; De Nayer, Guillaume ; Schmidt, Stephan; Breuer, Michael 
162018Enhanced injection method for synthetically generated turbulence within the flow domain of eddy-resolving simulationsDe Nayer, Guillaume ; Schmidt, Stephan; Wood, Jens Nikolas ; Breuer, Michael 
172018Coupled Simulations Involving Lightweight Structures within Turbulent Flows: A Complementary Experimental and Numerical ApplicationDe Nayer, Guillaume ; Wood, Jens Nikolas ; Breuer, Michael ; Apostolatos, Andreas; Wüchner, Roland
182018Coupled simulations involving light-weight structures within turbulent flows: FSI strategy and non-matching interface treatment for isogeometric b-rep analysisWüchner, Roland; Apostolatos, Andreas; De Nayer, Guillaume ; Breuer, Michael ; Bletzinger, Kai-Uwe
192016Complementary Experimental-Numerical Investigation of the Flow past a Rigid and a Flexible Hemisphere in Turbulent Flow : Part II: Numerical SimulationsBreuer, Michael ; Wood, Jens Nikolas ; De Nayer, Guillaume 
209-Oct-2021Assessment of two wind gust injection methods: Field velocity vs. split velocity methodBoulbrachene, Khaled ; De Nayer, Guillaume ; Breuer, Michael