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Anne Gerdes geb. Lincke
Department of Mathematics Center for Optimization and Approximation Bundesstraße 55 (Geomatikum) 20146 Hamburg Room 140 phone: +49 40 42838-5122 telefax: +49 40 42838-5117 email: anne.gerdes (at) uni-hamburg.de |
I am a PhD student under the supervision of Prof. Hinze from Universität Hamburg and Prof. Rung from Hamburg University of Technology. I am working on adjoint optimization of heating, ventilation and air-conditioning components of aircrafts. I am a member of the Lothar Collatz School.
Office hour at Geomatikum (Room 140):
by appointment
Office hour at TUHH (SBC 3-E, Room 3.080):
Thu 9:45-10:45 (26.10., 09.11., 23.11., 07.12., 21.12., 18.01., 01.02.)
Publications
A. Gerdes, M. Hinze, T. Rung
Enhancement of adjoint topology optimization by approximated L¹-regularization for promotion of sparse distributed control.
Proceedings in Applied Mathematics and Mechanics, Volume 16, Issue 1, pages 637-638, October 2016.
DOI: 10.1002/pamm.201610307
A. Gerdes, M. Hinze, T. Rung
An efficient line search technique and its application to adjoint topology optimisation.
Proceedings in Applied Mathematics and Mechanics, Volume 14, Issue 1, pages 719-720, December 2014.
DOI: 10.1002/pamm.201410342
A. Lincke, G. Lauenroth, T. Rung, C. Wagner
Fluid-Dynamic Optimization of the Cabin Air Outlet Do728-KLA with Adjoint Sensitivity Analysis.
New Results in Numerical and Experimental Fluid Mechanics IX,
Notes on Numerical Fluid Mechanics and Multidisciplinary Design, Volume 124, pages 75-82, January 2014.
DOI: 10.1007/978-3-319-03158-3\_8
A. Lincke, A. Stück, T. Rung
Derivation of an adjoint high-Reynolds number model for thermally driven flows.
Proceedings in Applied Mathematics and Mechanics, Volume 12, Issue 1, pages 681-682, December 2012.
DOI: 10.1002/pamm.201210329
A. Lincke, T. Rung
Adjoint-Based Sensitivity Analysis for Buoyancy-Driven Incompressible Navier-Stokes Equations with Heat Transfer.
Proceedings of the Eighth International Conference on Engineering Computational Technology, Paper 100, Dubrovnik, Croatia, September 2012.
DOI: 10.4203/ccp.100.100
Thesis
Diploma Thesis Verification and Validation of von Kármán Length Scale for Identification of Turbulent Structures, Universität Göttingen, 2009
Workshops and Conferences
Young Researchers Meeting & CSE Workshop, March 21 - 24, 2017, Plön, Germany.
Talk: Fluid Dynamic Optimization of
HVAC-Components with Adjoint Methods.
Young Researchers Meeting & CSE Workshop, March 21 - 24, 2016, Plön, Germany.
Talk: Enhancement of adjoint topology optimization by
approximated L¹ -regularization for promotion of
sparse distributed control.
Joint Annual Meeting of DMV and GAMM, March 07 - 11, 2016, Braunschweig, Germany.
Talk: Enhancement of adjoint topology optimization by
approximated L¹ -regularization for promotion of
sparse distributed control.
Young Researchers Meeting & CSE Workshop, May 24 - 28, 2014, Plön, Germany.
Talk: An efficient line search technique and its
application to adjoint topology optimization.
85. Annual Meeting of GAMM, March 10 - 14, 2014, Erlangen-Nürnberg, Germany.
Talk: An efficient line search technique and its
application to adjoint topology optimization.
European Conference on Computational Optimization, July 17 - 19, 2013, Chemnitz, Germany.
Talk: Discretization scheme for advection term in
hybrid-adjoint Reynolds-averaged
Navier-Stokes-Fourier equations.
Lothar Collatz School Workshop for Young Scientists, May 22 - 24, 2013, Plön, Germany.
Talk: Fluid-dynamic Optimization of
HVAC-Components with Adjoint Methods.
18. DGLR-Fach-Symposium der STAB, November 06 - 07, 2012, Stuttgart, Germany.
Talk: Strömungstechnische Optimierung des Kabinenluftauslasses
Do728-KLA mit adjungierter Sensitivitätsanalyse.
The Eighth International Conference
on Engineering Computational Technology, September 04 - 07, 2012, Dubrovnik, Croatia.
Talk: Adjoint-Based Sensitivity Analysis for
Buoyancy-Driven Incompressible Navier-Stokes
Equations with Heat Transfer.
83. Annual Meeting of GAMM, March 26 - 30, 2012, Darmstadt, Germany.
Talk: Derivation of an adjoint high-Reynolds number model for thermally driven flows.
Teaching
WiSe 2017/2018: Exercise class in Analysis III (TUHH)
SoSe 2017: Exercise class in Analysis II (TUHH)
WiSe 2016/2017: Exercise class in Analysis I (TUHH)