Twenty-three peer-reviewed contributions, books and chapters, a dissertation, and active preprints. Filters work without leaving the page; every DOI and arXiv link remains a direct source.
36 records
Parasitic-current response and velocity field used to assess force balance on non-orthogonal meshes. Source: arXiv 2402.04043, figures/parasiticCurrent.pdf.
J12026Journal
A residual-based non-orthogonality correction for force-balanced unstructured volume-of-fluid methods
J. Liu, T. Tolle, and T. Marić
European Physical Journal Special Topics 235, 317–347
A deterministic residual-based non-orthogonality correction restores surface-tension and gravity force balance near linear-solver tolerance on polyhedral meshes.
Experiment, three-dimensional simulation, and tracked interface profiles for filling regime F. Source: arXiv 2407.18068, Figure_9_review.png.
J52025Journal
Experimental and numerical study of microcavity filling regimes for Lab-on-a-Chip applications
L. Nagel, A. Lippert, R. Leonhardt, T. Tolle, H. Zhang, and T. Marić
International Journal of Multiphase Flow 188, 105208
High-speed experiments and three-dimensional geometric-VOF simulations identify distinct microcavity-filling regimes and the conditions controlling gas entrapment.
Geometric reconstruction of a viscoelastic two-phase interface on an unstructured mesh. Source: arXiv 2311.10872, figures/viscoel-vof-af-reconstructed.pdf.
J62025Journal
An unstructured geometrical un-split VOF method for viscoelastic two-phase flows
M. Niethammer, M. H. Asghar, D. Bothe, and T. Marić
Computer Physics Communications 309, 109475
A geometric VOF framework extends interface-resolved simulation to viscoelastic two-phase flows on unstructured meshes.
Experimental and simulated interface progression through a three-by-three microcavity array. Source: arXiv 2306.11532, Figures/06_results/anim_3x3cav_CA90-120_AVI0_wispTol0_2.png.
J72024Journal
Stabilizing the unstructured Volume-of-Fluid method for capillary flows in microstructures using artificial viscosity
L. Nagel, A. Lippert, T. Tolle, R. Leonhardt, H. Zhang, and T. Marić
Experimental and Computational Multiphase Flow 6(2), 140–153
Targeted artificial interface viscosity reduces parasitic currents by about one order of magnitude while retaining the measured interface progression in capillary microstructures.
Three-dimensional jet breakup used to test consistent mass and momentum transport at high density ratio. Source: Local article source, 2024-article-inter-densityratio/2024-article-inter-densityratio-source/figures/Jet_3D.0023.png.
J82024Journal
Inconsistencies in unstructured geometric volume-of-fluid methods for two-phase flows with high density ratios
J. Liu, T. Tolle, D. Zuzio, J.-L. Estivalèzes, S. M. Damian, and T. Marić
Computers & Fluids 281, 106375
The analysis identifies how discrete phase-volume, mass, and momentum fluxes lose equivalence, then verifies two consistent geometric-VOF remedies through density ratio 10^6 and viscosity ratio 10^5.
Automated contact-angle extraction from a curved-microchannel experiment. Source: arXiv 2403.09246, figures/imageAnalysis/contact_angles_127.jpg.
J102024Journal
Experimental study of dynamic wetting behavior through curved microchannels with automated image analysis
H. Zhang, A. Lippert, R. Leonhardt, T. Tolle, L. Nagel, M. Fricke, and T. Marić
Experiments in Fluids 65(6), 95
A validated automated image-analysis workflow quantifies interface motion and dynamic contact angles in curved microchannels and tests competing wetting models.
Inconsistent and rhoLENT-consistent interface transport at high density ratio. Source: arXiv 2109.01595, figures/rholent-translating-droplet-interface.png.
J132023Journal
An unstructured finite-volume level set/front tracking method for two-phase flows with large density ratios
J. Liu, T. Tolle, D. Bothe, and T. Marić
Journal of Computational Physics 493, 112426
rhoLENT couples a geometric face-centred mass flux with an auxiliary mass equation, maintaining stable mass-momentum transport through density and viscosity ratios of 10^4.
Model geometry for fast stretching of a liquid bridge between moving and stationary substrates. Source: Local author manuscript, article-liquid-bridge-stretching.pdf, page 2.
J142023Journal
Asymmetry During Fast Stretching of a Liquid Bridge
M. H. Asghar, P. Brockmann, X. Dong, M. Niethammer, T. Marić, I. Roisman, and D. Bothe
Chemical Engineering & Technology 46(9), 1800–1807
Experiments and simulations examine symmetry breaking during rapid extension of a liquid bridge.
Volume-fraction initialization on a complex triangulated surface. Source: Local article source, 2019-article-vofinit/socialmedia/volume-fractions-brain_cropped.png.
J162022Journal
triSurfaceImmersion: Computing volume fractions and signed distances from triangulated surfaces immersed in unstructured meshes
T. Tolle, D. Gründing, D. Bothe, and T. Marić
Computer Physics Communications 273, 108249
A reusable algorithm calculates signed distances and cell volume fractions from triangulated surfaces in general meshes.
Front representation in the updated multiphase pressure–velocity coupling. Source: arXiv 2001.09775, figures/plots/stationary_droplet_numeric_curvature/t20_front_n16_new_lent.png.
J212020Journal
SAAMPLE: A segregated accuracy-driven algorithm for multiphase pressure-linked equations
T. Tolle, D. Bothe, and T. Marić
Computers & Fluids 200, 104450
An accuracy-driven pressure–velocity algorithm targets solver error directly in multiphase calculations.
Flux polyhedra formed during three-dimensional interface advection. Source: Local article source, 2017-article-10-jcomp-ufvfc/figures/flux-polyhedra-shear-front.png.
J232018Journal
An enhanced un-split face-vertex flux-based VoF method
T. Marić, H. Marschall, and D. Bothe
Journal of Computational Physics 371, 967–993
A face-vertex flux formulation advances conservative unsplit VOF transport on unstructured meshes.
Original lentFoam interface representation in a stationary-droplet test. Source: Related author manuscript arXiv 2001.09775, figures/plots/stationary_droplet_numeric_curvature/t20_front_n16_old_lent.png.
J242015Journal
lentFoam—A hybrid Level Set/Front Tracking method on unstructured meshes
T. Marić, H. Marschall, and D. Bothe
Computers & Fluids 113, 20–31
The original lentFoam method combines level-set representation with front tracking on general meshes.
OpenFOAM finite-volume workflow from mesh and fields to discretization, solution, and verification. Source: Site asset, assets/images/publication-openfoam-primer.svg.
B42021Book
The OpenFOAM Technology Primer, Edition OpenFOAM-v2012
T. Marić, J. Höpken, and K. G. Mooney
Figshare
An open technical introduction to OpenFOAM architecture, numerical workflows, and extensible solver development.
Three-dimensional interface after severe deformation on an unstructured mesh. Source: Local dissertation research source, voFoam-hex-deformation3D-SwartzNew-2-1-30-30-T3-N128-t15.png.
D12017Dissertation
Lagrangian/Eulerian numerical methods for fluid interface advection on unstructured meshes
T. Marić
Technische Universität Darmstadt
Doctoral research on geometric interface advection and hybrid Eulerian–Lagrangian methods for unstructured meshes.
Multiphase CFDNumerical methods
Localized pressure-projection domain around a resolved free surface. Source: Local preprint source, 2026-article-VoF-LPPM-BOSCH/method_sketch.pdf.
P12026Preprint
Interface-following localized pressure projection in volume-of-fluid methods for incompressible free-surface flows
J. Rettig, A. Lippert, and T. Marić
Under review at Computers & Fluids
A localized pressure-projection strategy follows the interface in free-surface VOF calculations.
Multiphase CFDNumerical methods
Predicted bubble shapes for Newtonian and viscoelastic configurations. Source: Local preprint source, 2026-article-DeboRheoV2.0/Figures/Shape2DNNNV.png.
P22026Preprint
A robust un-split geometrical VOF approach for viscoelastic two-phase flows
D. Izbassarov, M. Niethammer, R. Subburaj, D. Bothe, F. Romanò, R. Hao, M. Muradoglu, and T. Marić
In preparation for Computer Physics Communications
Ongoing work extends robust unsplit geometric VOF transport to viscoelastic multiphase applications.
Multiphase CFDRheology
Surface concentration after ten time steps in the two-sided subgrid-scale model. Source: arXiv 2505.17036, figures__res__risContBubble3D__New_Cs_after10TS_cIni0-05.png.
P32025Preprint
A two-sided subgrid-scale model for mass transfer across fluid interfaces
M. Schwarzmeier, T. Marić, Ž. Tuković, and D. Bothe
Under review at Journal of Computational Physics
A two-sided subgrid model represents unresolved interfacial mass-transfer boundary layers.