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Number of items: 19.

Agrebi, Senda ; Dreßler, Louis ; Nicolai, Hendrik ; Ries, Florian ; Nishad, Kaushal ; Sadiki, Amsini (2022):
Analysis of Local Exergy Losses in Combustion Systems Using a Hybrid Filtered Eulerian Stochastic Field Coupled with Detailed Chemistry Tabulation: Cases of Flames D and E. (Publisher's Version)
In: Energies, 14 (19), MDPI, e-ISSN 1996-1073,
DOI: 10.26083/tuprints-00019974,
[Article]

Dressler, Louis ; Nicolai, Hendrik ; Agrebi, Senda ; Ries, Florian ; Sadiki, Amsini (2022):
Computation of Entropy Production in Stratified Flames Based on Chemistry Tabulation and an Eulerian Transported Probability Density Function Approach. (Publisher's Version)
In: Entropy, 24 (5), MDPI, e-ISSN 1099-4300,
DOI: 10.26083/tuprints-00021282,
[Article]

Sadiki, Amsini ; Agrebi, Senda ; Ries, Florian (2022):
Entropy Generation Analysis in Turbulent Reacting Flows and Near Wall: A Review. (Publisher's Version)
In: Entropy, 24 (8), MDPI, e-ISSN 1099-4300,
DOI: 10.26083/tuprints-00022314,
[Article]

Dressler, Louis ; Sacomano Filho, Fernando Luiz ; Ries, Florian ; Nicolai, Hendrik ; Janicka, Johannes ; Sadiki, Amsini (2022):
Numerical Prediction of Turbulent Spray Flame Characteristics Using the Filtered Eulerian Stochastic Field Approach Coupled to Tabulated Chemistry. (Publisher's Version)
In: Fluids, 6 (2), MDPI, e-ISSN 2311-5521,
DOI: 10.26083/tuprints-00017828,
[Article]

Li, Yongxiang ; Rico Cortes, Luis Felipe ; Hamel, Hardy ; Nishad, Kaushal ; Biondo, Luigi ; Ries, Florian (2022):
Prediction of Heat Transfer and Fluid Flow Effects on Entropy Generation in a Monolithic Catalytic Converter Using Large-Eddy Simulation. (Publisher's Version)
In: Entropy, 24 (5), MDPI, e-ISSN 1099-4300,
DOI: 10.26083/tuprints-00021283,
[Article]

Li, Yongxiang ; Ries, Florian ; Leudesdorff, Wibke ; Nishad, Kaushal ; Pati, A. ; Hasse, C. ; Janicka, J. ; Jakirlić, Suad ; Sadiki, Amsini (2021):
Non-equilibrium wall functions for large Eddy simulations of complex turbulent flows and heat transfer.
In: International Journal of Heat and Fluid Flow, 88, p. 108758. Elsevier, ISSN 0142-727X,
DOI: 10.1016/j.ijheatfluidflow.2020.108758,
[Article]

Li, Yongxiang ; Ries, Florian ; Nishad, Kaushal ; Sadiki, Amsini (2021):
Predictions of Conjugate Heat Transfer in Turbulent Channel Flow Using Advanced Wall-Modeled Large Eddy Simulation Techniques. (Publisher's Version)
In: Entropy, 23 (6), MDPI, e-ISSN 1099-4300,
DOI: 10.26083/tuprints-00019367,
[Article]

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), pp. 733-752. Springer, ISSN 1386-6184,
DOI: 10.1007/s10494-020-00201-6,
[Article]

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), p. 43. MDPI, ISSN 2079-3197,
DOI: 10.3390/computation8020043,
[Article]

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), MDPI, ISSN 2079-3197,
DOI: 10.25534/tuprints-00013372,
[Article]

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), p. 2620. MDPI, ISSN 1996-1073,
DOI: 10.3390/en12132620,
[Article]

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), p. 2600. MDPI, ISSN 1996-1073,
DOI: 10.3390/en12132600,
[Article]

Ries, Florian ; Li, Yongxiang ; Nishad, Kaushal ; Janicka, Johannes ; Sadiki, Amsini (2019):
Entropy Generation Analysis and Thermodynamic Optimization of Jet Impingement Cooling Using Large Eddy Simulation.
In: Entropy, 21 (2), p. 129. MDPI, ISSN 1099-4300,
DOI: 10.3390/e21020129,
[Article]

Ziefuss, Matthias ; Karimi, Nader ; Ries, Florian ; Sadiki, Amsini ; Mehdizadeh, Amirfarhang (2019):
Entropy Generation Assessment for Wall-Bounded Turbulent Shear Flows Based on Reynolds Analogy Assumptions.
In: Entropy, 21 (12), MDPI, ISSN 1099-4300,
DOI: 10.25534/tuprints-00011397,
[Article]

Ries, Florian (2019):
Numerical Modeling and Prediction of Irreversibilities in Sub- and Supercritical Turbulent Near-Wall Flows.
Darmstadt, Technische Universität,
[Ph.D. Thesis]

Ries, Florian ; Li, Yongxiang ; Klingenberg, Dario ; Nishad, Kaushal ; Janicka, J. ; Sadiki, Amsini (2018):
Near-Wall Thermal Processes in an Inclined Impinging Jet: Analysis of Heat Transport and Entropy Generation Mechanisms.
In: Energies, 11 (6), p. 1354. ISSN 1996-1073,
DOI: 10.3390/en11061354,
[Article]

Ries, Florian ; Janicka, J. ; Sadiki, Amsini (2017):
Thermal Transport and Entropy Production Mechanisms in a Turbulent Round Jet at Supercritical Thermodynamic Conditions.
In: Entropy, 19 (8, 404), MDPI, ISSN 1099-4300,
DOI: 10.3390/e19080404,
[Article]

Ries, Florian (2003):
Modellierung und Implementierung der p-Version zur adaptiven Finite-Element-Simulation für kontinuumsmechanische Ingenieurprobleme.
TU Darmstadt,
[Seminar paper (Midterm)]

Ries, Florian (2003):
Umsetzung der voll adaptiven p-Version zur transienten Finite-Element-Simulation von Mehrkomponenten-Problemen.
TU Darmstadt, [Diploma Thesis or Magisterarbeit]

This list was generated on Sat Oct 1 01:54:18 2022 CEST.