| [24] | Thomik, M., Gruber, S., Kaestner, A., Foerst, P., Tsotsas, E., & Vorhauer-Huget, N. (2022). Experimental Study of the Impact of Pore Structure on Drying Kinetics and Sublimation Front Patterns. Pharmaceutics, 14(8), 1538 doi.org/10.3390/pharmaceutics14081538 |
| [23] | Briest, L., Wagner, R., Tretau, A., Tsotsas, E., & Vorhauer-Huget, N. (2022). Microwave-assisted drying of clay roof tiles. Drying Technology, 40(9), 1804–1818 doi.org/10.1080/07373937.2021.1878369 |
| [22] | Thomik, M., Gruber, S., Foerst, P., Tsotsas, E., & Vorhauer-Huget, N. (2022). Determination of 3D pore network structure of freeze-dried maltodextrin. Drying Technology, 40(4), 748 – 766 doi.org/10.1080/07373937.2021.1966030 |
| [21] | Vorhauer-Huget, N., & Shokri, N. (2022). 30 Years of pore network modeling in drying. Drying Technology, 40(4), 689 – 690 doi.org/10.1080/07373937.2022.2033422 |
| [20] | Bhaskaran, S., Pandey, D., Panda, D., Paliwal, S., Vorhauer, N., Tsotsas, E., & Surasani, V.K. (2022). Study on film effects during isothermal drying of square capillary tube using Lattice Boltzmann method. Drying Technology, 40(4), 735 – 747 doi.org/10.1080/07373937.2021.1898417 |
| [19] | Canedo, M.S., Figueiredo, M.F.S., Thomik, M., Vorhauer-Huget, N., Tsotsas, E., & Thoméo, J.C. (2021). Porosity and pore size distribution of beds composed by sugarcane bagasse and wheat bran for solid-state cultivation. Powder Technology, 386, 166 – 175 doi.org/10.1016/j.powtec.2021.03.039 |
| [18] | Gruber, S., Vorhauer-Huget, N., & Foerst, P. (2021). In situ micro-computed tomography to study microstructure and sublimation front during freeze-drying. Food Structure, 29, 100213 doi.org/10.1016/j.foostr.2021.100213 |
| [17] | Paliwal, S., Panda, D., Bhaskaran, S., Vorhauer-Huget, N., Tsotsas, E., & Surasani, V.K. (2021). Lattice Boltzmann method to study the water-oxygen distributions in porous transport layer (PTL) of polymer electrolyte membrane (PEM) electrolyser. International Journal of Hydrogen Energy, 46(44), 22747 – 22762 doi.org/10.1016/j.ijhydene.2021.04.112 |
| [16] | Vorhauer-Huget, N., Altaf, H., Dürr, R., Tsotsas, E., & Vidaković-Koch, T. (2020). Computational Optimization of Porous Structures for Electrochemical Processes. Processes, 8(10), 1205 doi.org/10.3390/pr8101205 |
| [15] | Vorhauer-Huget, N., Mannes, D., Hilmer, M., Gruber, S., Strobl, M., Tsotsas, E., & Foerst, P. (2020). Freeze-Drying with Structured Sublimation Fronts—Visualization with Neutron Imaging. Processes, 8(9), 1091 doi.org/10.3390/pr8091091 |
| [14] | Foerst, P., Gruber, S., Schulz, M., Vorhauer, N., & Tsotsas, E. (2020). Characterization of Lyophilization of Frozen Bulky Solids. Chemical Engineering & Technology, 43(5), 789 – 796 doi.org/10.1002/ceat.201900500 |
| [13] | Altaf, H., Vorhauer, N., Tsotsas, E., & Vidaković-Koch, T. (2020). Steady-State Water Drainage by Oxygen in Anodic Porous Transport Layer of Electrolyzers: A 2D Pore Network Study. Processes, 8(3), 362 doi.org/10.3390/pr8030362 |
| [12] | Gruber, S., Vorhauer, N., Schulz, M., Hilmer, M., Peters, J., Tsotsas, E., & Foerst, P. (2020). Estimation of the local sublimation front velocities from neutron radiography and tomography of particulate matter. Chemical Engineering Science, 211, 115268 doi.org/10.1016/j.ces.2019.115268 |
| [11] | Hilmer, M., Peters, J., Schulz, M., Gruber, S., Vorhauer, N., Tsotsas, E., & Foerst, P. (2020). Development of an experimental setup for in situ visualization of lyophilization using neutron radiography and computed tomography. Review of Scientific Instruments, 91(1), 014102 doi.org/10.1063/1.5126927 |
| [10] | Geistlinger, H., Ding, Y., Apelt, B., Schlüter, S., Küchler, M., Reuter, D., Vorhauer, N., & Vogel, H. (2019). Evaporation Study Based on Micromodel Experiments: Comparison of Theory and Experiment. Water Resources Research, 55(8), 6653 – 6672 doi.org/10.1029/2018WR024647 |
| [9] | Vorhauer, N., Altaf, H., Tsotsas, E., & Vidakovic-Koch, T. (2019). Pore Network Simulation of Gas-Liquid Distribution in Porous Transport Layers. Processes, 7(9), 558 doi.org/10.3390/pr7090558 |
| [8] | Vorhauer, N., Tretau, A., Bück, A., & Prat, M. (2019). Microwave drying of wet clay with intermittent heating. Drying Technology, 37(5), 664 – 678 doi.org/10.1080/07373937.2018.1547740 |
| [7] | Vorhauer, N., Tsotsas, E., & Prat, M. (2018). Temperature gradient induced double stabilization of the evaporation front within a drying porous medium. Physical Review Fluids, 3(11), 114201 doi.org/10.1103/PhysRevFluids.3.114201 |
| [6] | Vorhauer, N., Tsotsas, E., & Prat, M. (2018). Drying of thin porous disks from pore network simulations. Drying Technology, 36(6), 651 – 663 doi.org/10.1080/07373937.2017.1319853 |
| [5] | Küter, A., Reible, S., Geibig, T., Nüßler, D., & Pohl, N. (2018). THz imaging for recycling of black plastics. tm - Technisches Messen, 85(3), 191 – 201 doi.org/10.1515/teme-2017-0062 |