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Mathias Lemke (Dr.-Ing.)

Mathias Lemke
Lupe [1]

mathias.lemke@tnt.tu-berlin.de
+49 (0)30 314 24339 (Tel)
+49 (0)30 314 22638 (Fax)

Office: VWS 122
Post: TU-Berlin, Sekr. MB1
Müller-Breslau-Straße 15
10623 Berlin

Research

Research interests:

  • Data Assimilation
  • Adjoint methods
  • Reactive flows / Chemical kinetics
  • Sound reinforcement
  • Compressible flows
  • Particle Image Velocimetry / Schlieren

Own Projects:

  • Optimal Soundfield Generation for Sound Reinforcement in Time and Frequency Domain [2]
    (2018 - today)

Projects:

  • NIOPLEX [3]
    (2013 - 2016)
  • SFB 1029 - TurbIn [4]
    (2012 - today)

Scientific Contributions

<< previous [5]
next >> [12]

Lemke, M., Cai, L., Reiss, J., Pitsch, H. and Sesterhenn, J. (2019). Adjoint-based sensitivity analysis of quantities of interest of complex combustion models [16]. Combustion Theory and Modelling. Taylor & Francis, 180-196.


Lemke, M., Straube, F., Stein, L. and Weinzierl, S. (2019). Optimized Sound Field Generation in the Time Domain - Validation for Source Arrays in 2D [17]. Fortschritte der Akustik - DAGA 2019. Deutsche Gesellschaft für Akustik e.V., 1442–1445.


Schwarz, P., Lemke, M. and Sesterhenn, J. (2019). Adjoint-based Data Assimilation for a Compressible Jet using PIV [18]. 13th International Symposium on Particle Image Velocimetry – ISPIV 2019, Munich, Germany, July 22-24


Stein, L., Straube, F., Sesterhenn, J., Weinzierl, S. and Lemke, M. (2019). Adjoint-based optimization of sound reinforcement including non-uniform flow [19]. The Journal of the Acoustical Society of America, 1774-1785.


Stein, L., Straube, F., Sesterhenn, J., Weinzierl, S. and Lemke, M. (2019). Adjoint-based sound reinforcement in the time domain [20]. Proceedings of the 23rd International Congress on Acoustics


<< previous [21]
next >> [28]

google scholar [29]

Teaching (Selected)

  • Einführung in die Informationstechnik für Ingenieure (EDV 1) [30]
  • Projekt: Numerische Simulation fluiddynamischer Systeme (CFDe) [31]
  • Projekt: Numerische Thermo- und Fluiddynamik - Wissenschaftliche Vertiefungen (CFD3) [32]
  • Numerische Aeroakustik (CAA) [33]
  • Strömungsakustik 1 (SA1) [34]
  • Strömungsakustik 2 (SA2) [35]
  • Strömungsmechanisches Projekt (SMP) [36]

Personal Information

Education:

  • Graduation (Dr.-Ing.) at TU Berlin,
    Adjoint based data assimilation in compressible flows with application to pressure determination from PIV data [37](Prof. Dr. sc. techn. habil. J. Sesterhenn, Dr. F. Giannetti, PD Dr. rer. nat. K. Ehrenfried)
  • Diploma (Dipl.-Ing.) at TU Berlin,
    Untersuchung von Interpolationsmethoden für bewegte Gitter
    (Analysis of interpolation methods for moving grids) (Prof. Dr.-Ing. F. Thiele)

 

 

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