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Einträge mit Organisationseinheit "DFG-Sonderforschungsbereiche (inkl. Transregio) > Transregios > TRR 150 Turbulent chemisch reagierende Mehrphasenströmungen in Wandnähe"

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Es werden nur Einträge angezeigt, bei denen keine untergeordnete Organisationseinheit ausgewählt wurde. Anzahl: 19.

B

Brockmann, Philipp ; Symanczyk, Christoph ; Ennayar, Hatim ; Hussong, Jeanette (2022)
Utilizing APTV to investigate the dynamics of polydisperse suspension flows beyond the dilute regime.
In: Experiments in Fluids, 63 (8)
doi: 10.1007/s00348-022-03464-z
Artikel, Bibliographie

Bender, Achim ; Stephan, Peter ; Gambaryan-Roisman, Tatiana (2020)
A fully coupled numerical model for deposit formation from evaporating urea-water drops.
In: International Journal of Heat and Mass Transfer, 159
doi: 10.1016/j.ijheatmasstransfer.2020.120069
Artikel, Bibliographie

D

Dadvand, Abdolrahman ; Bagheri, Milad ; Samkhaniani, Nima ; Marschall, Holger ; Wörner, Martin (2021)
Advected phase-field method for bounded solution of the Cahn–Hilliard Navier-Stokes equations.
In: Physics of Fluids, 33 (5)
doi: 10.1063/5.0048614
Artikel, Bibliographie

Dressler, L. ; Sacomano Filho, F. L. ; Sadiki, A. ; Janicka, J. (2020)
Influence of Thickening Factor Treatment on Predictions of Spray Flame Properties Using the ATF Model and Tabulated Chemistry.
In: Flow, Turbulence and Combustion, 2020
doi: 10.1007/s10494-020-00149-7
Artikel, Bibliographie

E

Ennayar, Hatim ; Brockmann, Philipp ; Hussong, Jeanette (2023)
LIF-based quantification of the species transport during droplet impact onto thin liquid films.
In: Experiments in Fluids, 64 (9)
doi: 10.1007/s00348-023-03688-7
Artikel, Bibliographie

G

Geschwindner, Christopher ; Westrup, Katharina ; Dreizler, Andreas ; Böhm, Benjamin (2022)
Ultra-high-speed time-resolved PIV of turbulent flows using a continuously pulsing fiber laser.
In: Experiments in Fluids, 63 (4)
doi: 10.1007/s00348-022-03424-7
Artikel, Bibliographie

H

Haussmann, Marc ; Ries, Florian ; Jeppener-Haltenhoff, Jonathan B. ; Li, Yongxiang ; Schmidt, Marius ; Welch, Cooper ; Illmann, Lars ; Böhm, Benjamin ; Nirschl, Hermann ; Krause, Mathias J. ; Sadiki, Amsini (2020)
Evaluation of a Near-Wall-Modeled Large Eddy Lattice Boltzmann Method for the Analysis of Complex Flows Relevant to IC Engines.
In: Computation, 8 (2)
doi: 10.3390/computation8020043
Artikel, Bibliographie

Hänichen, Philipp ; Eyk, Maximilian van ; Stephan, Peter (2018)
Experimental investigations of fuel film evaporation with deposit formation.
In: International Journal of Heat and Fluid Flow, 70
doi: 10.1016/j.ijheatfluidflow.2018.02.001
Artikel, Bibliographie

M

Mildenberger, Moritz ; Schumacher, Olaf ; Stein, Marcus ; Stephan, Peter ; Gambaryan-Roisman, Tatiana (2022)
Numerical simulation of the evaporation process of pinned urea-water droplets in cavities.
In: International Journal of Heat and Fluid Flow, 95
doi: 10.1016/j.ijheatfluidflow.2022.108970
Artikel, Bibliographie

N

Nishad, Kaushal ; Ries, Florian ; Li, Yongxiang ; Sadiki, Amsini (2019)
Numerical Investigation of Flow through a Valve during Charge Intake in a DISI -Engine Using Large Eddy Simulation.
In: Energies, 12 (13)
doi: 10.3390/en12132620
Artikel, Bibliographie

Nishad, Kaushal ; Stein, Marcus ; Ries, Florian ; Bykov, Viatcheslav ; Maas, Ulrich ; Deutschmann, Olaf ; Janicka, Johannes ; Sadiki, Amsini (2019)
Thermal Decomposition of a Single AdBlue® Droplet Including Wall–Film Formation in Turbulent Cross-Flow in an SCR System.
In: Energies, 12 (13)
doi: 10.3390/en12132600
Artikel, Bibliographie

R

Ries, Florian ; Li, Yongxiang ; Nishad, Kaushal ; Dressler, Louis ; Ziefuss, Matthias ; Mehdizadeh, Amirfarhang ; Hasse, C. ; Sadiki, Amsini (2020)
A wall-adapted anisotropic heat flux model for large eddy simulations of complex turbulent thermal flows.
In: Flow, Turbulence and Combustion, 106 (2)
doi: 10.1007/s10494-020-00201-6
Artikel, Bibliographie

S

Schumacher, Olaf ; Sielaff, Axel ; Stephan, Peter (2023)
Evaporation and residue formation of dimethyl carbonate droplets on hot walls.
17th International Heat Transfer Conference. Cape Town, South Africa (14.-18.08.2023)
doi: 10.1615/ihtc17.130-10
Konferenzveröffentlichung, Bibliographie

Schumacher, Olaf ; Mildenberger, Moritz ; Gambaryan-Roisman, Tatiana ; Stephan, Peter (2021)
Wetting and evaporation of pinned urea–water-droplets on substrates of different wettability.
In: International Journal of Heat and Fluid Flow, 92
doi: 10.1016/j.ijheatfluidflow.2021.108886
Artikel, Bibliographie

Schmidt, Anna ; van der Kley, Sani ; Wagner, Steven (2020)
Optically accessible generic exhaust gas test bench for the investigation of fundamental SCR-relevant processes.
In: Applied Optics, 59 (23)
doi: 10.1364/AO.397574
Artikel, Bibliographie

Steinhausen, M. ; Luo, Y. ; Popp, S. ; Strassacker, C. ; Zirwes, T. ; Kosaka, H. ; Zentgraf, F. ; Maas, U. ; Sadiki, A. ; Dreizler, A. ; Hasse, C. (2020)
Numerical investigation of local heat-release rates and thermo-chemical states in side-wall quenching of laminar methane and dimethyl ether flames.
In: Flow, Turbulence and Combustion, 106 (2)
doi: 10.1007/s10494-020-00146-w
Artikel, Bibliographie

Schweigert, David ; Damson, Bjoern ; Lueders, Hartmut ; Stephan, Peter ; Deutschmann, Olaf (2020)
The effect of wetting characteristics, thermophysical properties, and roughness on spray-wall heat transfer in selective catalytic reduction systems.
In: International Journal of Heat and Mass Transfer, 152
doi: 10.1016/j.ijheatmasstransfer.2020.119554
Artikel, Bibliographie

Sacomano Filho, Fernando Luiz ; Hosseinzadeh, Arash ; Sadiki, Amsini ; Janicka, Johannes (2020)
On the interaction between turbulence and ethanol spray combustion using a dynamic wrinkling model coupled with tabulated chemistry.
In: Combustion and Flame, 215
doi: 10.1016/j.combustflame.2020.01.038
Artikel, Bibliographie

Z

Zirwes, Thorsten ; Häber, Thomas ; Zhang, Feichi ; Kosaka, Hidemasa ; Dreizler, Andreas ; Steinhausen, Matthias ; Hasse, Christian ; Stagni, Alessandro ; Trimis, Dimosthenis ; Suntz, Rainer ; Bockhorn, Henning (2020)
Numerical Study of Quenching Distances for Side-Wall Quenching Using Detailed Diffusion and Chemistry.
In: Flow, Turbulence and Combustion, 106 (2)
doi: 10.1007/s10494-020-00215-0
Artikel, Bibliographie

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