Picture of Martin Bremm Copyright: © ILR

Person

Martin Bremm

M.Sc.
Chair and Institute of Aerospace Systems

Address

Building: 1320

Room: 305

Wüllnerstr. 7

52062 Aachen

Contact

WorkPhone
Phone: +49 241 80 91877
 

Publications

Source Author(s)
[Contribution to a conference proceedings]
Experiments to Investigate Lift Production Mechanisms on Oscillating Trailing-Edge Flaps
In: [33. Congress of the International Council of the Aeronautical Sciences, ICAS, 2022-09-04 - 2022-09-09, Stockholm, Sweden], 1-11, 2022
Bremm, Martin Josef
Hörnschemeyer, Ralf Gerd
Stumpf, Eike
[Contribution to a book, Contribution to a conference proceedings]
Dynamic Trailing-Edge Flap Movement as a Non-Conventional Aerodynamic Lift Mechanism
In: ICAS 2021 - 32nd Congress of the International Council of the Aeronautical Sciences : September 6-10, 2021, Pudong Shangri-La, Shanghai, China : CD-ROM proceedings, [1]-17, 2021
Bremm, Martin Josef
Stephan, Ralph
Hörnschemeyer, Ralf Gerd
Stumpf, Eike
[Contribution to a conference proceedings]
Influence of Dynamic Flap Movement on Maximum Lift and Wake Vortex Evolution
In: [Deutscher Luft- und Raumfahrtkongress 2019, DLRK2019, 2019-09-30 - 2019-10-02, Darmstadt, Germany], 2020
[DOI: 10.25967/490118]
Stephan, Ralph (Corresponding author)
Bremm, Martin Josef
Hörnschemeyer, Ralf Gerd
Stumpf, Eike
Schmidt, Hauke Gerjet
Schröder, Kai-Uwe
Ruhland, J.
Breitsamter, C.
 

Supervised Student Thesis

Source Author(s)
[Bachelor Thesis]
Investigation of circulatory and non-circulatory lift of an oscillating trailing-edge flap, 2023
Bathija, Manav
Bremm, Martin Josef (Consultant)
[Bachelor Thesis]
Experimentelle Untersuchung der instationären Grenzschichtablösung einer oszillierenden Wölbklappe eines NACA 2412 Flügelprofils im Wasserumlaufkanal, 2021
Dietz, Andre
Bremm, Martin Josef (Consultant)
[Master Thesis]
Experimental study of the effects of flap oscillation on lift, drag and pitching moment depending on oscillation frequency and flap angle, 2021
Starschenko, Michael
Bremm, Martin Josef (Consultant)
[Bachelor Thesis]
CFD-Analyse des dynamischen Auftriebverhaltens oszillierend bewegter Strömungsprofile mit SU2, 2019
Küpeli, Ahmet
Bremm, Martin Josef (Consultant)