509.604 PEOPLE
| People | Locations | Statistics |
|---|---|---|
| Mouftah, Hussein T. |
| |
| Dugay, Fabrice |
| |
| Rettenmeier, Max |
| |
| Tomasch, Ernst | Graz |
|
| Cornaggia, Greta |
| |
| Palacios-Navarro, Guillermo |
| |
| Uspenskyi, Borys V. |
| |
| Khan, Baseem |
| |
| Fediai, Natalia |
| |
| Derakhshan, Shadi |
| |
| Somers, Bart | Eindhoven |
|
| Anvari, B. |
| |
| Kraushaar, Sabine | Vienna |
|
| Kehlbacher, Ariane |
| |
| Das, Raj |
| |
| Werbińska-Wojciechowska, Sylwia |
| |
| Brillinger, Markus |
| |
| Eskandari, Aref |
| |
| Gulliver, J. |
| |
| Loft, Shayne |
| |
| Kud, Bartosz |
| |
| Matijošius, Jonas | Vilnius |
|
| Piontek, Dennis |
| |
| Kene, Raymond O. |
| |
| Barbosa, Juliana |
|
Rendall, Thomas C. S.
University of Bristol
in Cooperation with on an Cooperation-Score of 37%
Topics
Publications (36/36 displayed)
- 2024Modeling Aircraft Fuel Jettison Using Smoothed Particle Hydrodynamics on Finite-Volume Meshes
- 2023Fuel sloshing-induced effects on the dynamic response of a scaled research wing demonstratorcitations
- 2023Fuel sloshing-induced effects on the dynamic response of a scaled research wing demonstratorcitations
- 2023Design of a collector for sampling volcanic ash using unmanned aerial systemscitations
- 2022Initial Experimental Analysis of Damping due to Liquid Sloshing in a Scaled Aircraft Wing Model
- 2022Initial Experimental Analysis of Damping due to Liquid Sloshing in a Scaled Aircraft Wing Model
- 2022Nonlinear Identification of Transient Tank Vertical Sloshing Motions
- 2022Nonlinear Identification of Transient Tank Vertical Sloshing Motions
- 2021Gust Loads Alleviation Using Sloshing Fuelcitations
- 2021Gust Loads Alleviation Using Sloshing Fuelcitations
- 2021Sloshing induced damping in vertically vibrating systemscitations
- 2021Sloshing induced damping in vertically vibrating systemscitations
- 2021Analysis of Damping From Vertical Sloshing in a SDOF Systemcitations
- 2021Analysis of Damping From Vertical Sloshing in a SDOF Systemcitations
- 2020Sloshing fluid-structure interaction and induced damping effects: modelling and experimental analysis
- 2020Sloshing fluid-structure interaction and induced damping effects: modelling and experimental analysis
- 2019Efficient Aero-Structural Wing Optimization Using Compact Aerofoil Decompositioncitations
- 2018Comparison of Point Design and Range-Based Objectives for Transonic Aerofoil Optimization
- 2018Acoustic Reflectometry for Pitot Tube Blockage Detectioncitations
- 2017Acoustic reflectometry for pitot tube blockage detectioncitations
- 2017A Gust Reconstruction Framework Applied to a Nonlinear Reduced Order Model of a Wing Typical Sectioncitations
- 2017Adaptive Surrogate-Based Optimization of Vortex Generators for a Tiltrotor Geometrycitations
- 2017Objective Function and Constraints for Robust Transonic Aerofoil Optimizationcitations
- 2017Reconstruction of Gust Velocity Profiles via Potential Flow, CFD and ROM Techniques
- 2016Gust reconstruction from digital flight data recorder via numerical optimisationcitations
- 2013CFD-based optimization of hovering rotors using radial basis functions for shape parameterization and mesh deformationcitations
- 2011Aerodynamic shape optimisation of hovering rotors using compressible CFD
- 2010Aerodynamic shape optimization of hovering rotors using compressible CFD
- 2010High-fidelity aerodynamic shape optimization of modern transport wing using efficient hierarchical parameterizationcitations
- 2010CFD-based twist optimization of hovering rotors
- 2010CFD-based shape optimization of hovering rotors using global and local parameters
- 2009Point selection approaches for reduced surface representation in mesh motion
- 2009CFD-based aerodynamic shape optimization of hovering rotors
- 2009Aerodynamic shape optimisation of a modern transport wing using only planform variationscitations
- 2009Domain-element method for aerodynamic shape optimization applied to a modern transport wingcitations
- 2008Multi-dimensional aircraft surface pressure interpolation using radial basis functionscitations
Places of action
| Organizations | Location | People |
|---|