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Daniel Schanz
Daniel Schanz
Deutsches Zentrum für Luft- und Raumfahrt, Dept. of Experimental Methods
Verified email at dlr.de
Title
Cited by
Cited by
Year
Shake-The-Box: Lagrangian particle tracking at high particle image densities
D Schanz, S Gesemann, A Schröder
Experiments in fluids 57, 1-27, 2016
6932016
Non-uniform optical transfer functions in particle imaging: calibration and application to tomographic reconstruction
D Schanz, S Gesemann, A Schröder, B Wieneke, M Novara
Measurement Science and Technology 24 (2), 024009, 2012
1842012
Acoustic cavitation, bubble dynamics and sonoluminescence
W Lauterborn, T Kurz, R Geisler, D Schanz, O Lindau
Ultrasonics sonochemistry 14 (4), 484-491, 2007
1582007
From noisy particle tracks to velocity, acceleration and pressure fields using B-splines and penalties
S Gesemann, F Huhn, D Schanz, A Schröder
18th international symposium on applications of laser and imaging techniques …, 2016
1552016
Comparative assessment of pressure field reconstructions from particle image velocimetry measurements and Lagrangian particle tracking
PL Van Gent, D Michaelis, BW Van Oudheusden, PÉ Weiss, R de Kat, ...
Experiments in Fluids 58, 1-23, 2017
1282017
‘Shake The Box’: A highly efficient and accurate Tomographic Particle Tracking Velocimetry (TOMO-PTV) method using prediction of particle positions
D Schanz, A Schröder, S Gesemann, D Michaelis, B Wieneke
1132013
Lagrangian 3D particle tracking in high-speed flows: Shake-The-Box for multi-pulse systems
M Novara, D Schanz, N Reuther, CJ Kähler, A Schröder
Experiments in fluids 57, 1-20, 2016
872016
Advances of PIV and 4D-PTV” Shake-The-Box” for turbulent flow analysis–the flow over periodic hills
A Schröder, D Schanz, D Michaelis, C Cierpka, S Scharnowski, CJ Kähler
Flow, Turbulence and Combustion 95, 193-209, 2015
612015
Molecular dynamics simulations of cavitation bubble collapse and sonoluminescence
D Schanz, B Metten, T Kurz, W Lauterborn
New Journal of Physics 14 (11), 113019, 2012
542012
Multi-exposed recordings for 3D Lagrangian particle tracking with multi-pulse Shake-The-Box
M Novara, D Schanz, R Geisler, S Gesemann, C Voss, A Schröder
Experiments in Fluids 60, 1-19, 2019
482019
Shake The Box’-a 4D PTV algorithm: Accurate and ghostless reconstruction of Lagrangian tracks in densely seeded flows
D Schanz, A Schröder, S Gesemann
472014
Experimental study of secondary vortex structures in a rotor wake
CC Wolf, C Schwarz, K Kaufmann, AD Gardner, D Michaelis, J Bosbach, ...
Experiments in Fluids 60 (11), 175, 2019
432019
The complex aerodynamic footprint of desert locusts revealed by large-volume tomographic particle image velocimetry
P Henningsson, D Michaelis, T Nakata, D Schanz, R Geisler, A Schröder, ...
Journal of the Royal Society Interface 12 (108), 20150119, 2015
432015
3D Lagrangian particle tracking in fluid mechanics
A Schröder, D Schanz
Annual Review of Fluid Mechanics 55, 511-540, 2023
422023
Large-scale volumetric flow measurement in a pure thermal plume by dense tracking of helium-filled soap bubbles
F Huhn, D Schanz, S Gesemann, U Dierksheide, R van de Meerendonk, ...
Experiments in Fluids 58, 1-19, 2017
412017
Acoustic cavitation and bubble dynamics
W Lauterborn, K Thomas, R Mettin, K Philipp, D Kroeninger, D Schanz
Archives of Acoustics 33 (4), 609–617, 2008
412008
Experimental Investigation of the Log-Law for an Adverse Pressure Gradient Turbulent Boundary Layer Flow at Re θ  = 10000
T Knopp, D Schanz, A Schröder, M Dumitra, C Cierpka, R Hain, CJ Kähler
Flow, turbulence and combustion 92, 451-471, 2014
402014
Investigation of scaling laws in a turbulent boundary layer flow with adverse pressure gradient using PIV
T Knopp, NA Buchmann, D Schanz, B Eisfeld, C Cierpka, R Hain, ...
Journal of Turbulence 16 (3), 250-272, 2015
392015
Advanced iterative particle reconstruction for Lagrangian particle tracking
T Jahn, D Schanz, A Schröder
Experiments in Fluids 62, 2021
38*2021
FFT integration of instantaneous 3D pressure gradient fields measured by Lagrangian particle tracking in turbulent flows
F Huhn, D Schanz, S Gesemann, A Schröder
Experiments in Fluids 57 (9), 151, 2016
362016
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