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Publications

Following the links below you find a continuously updated publication list of our group. In order to have an overview of our current publications please visit d|b|t|a's page on ResearchGate: Fachgebiet Dynamik und Betrieb technischer Anlagen [1]

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Rosa, L. P., Pontes, K. V., Costa, G. M., Penteado, A. T., Esche, E. and Repke, J.-U. (2020). An equation-oriented novel approach for modeling the falling film absorber using rigorous thermodynamic and transport description [19]. Chemical Engineering Research and Design. Elsevier BV, 179–194.


Sacher, J. and Repke, J.-U. (2019). Development of a mesoscale model for the gas phase fluid dynamics in structured packings based on fundamental experiments and CFD investigations [20]. Chemical Engineering Research and Design. Elsevier BV, 430–442.


Hoffmann, A., Ausner, I., Repke, J.-.. and Wozny, G. (2006). Detailed Investigation of Multiphase (GastextendashLiquid and GastextendashLiquidtextendashLiquid) Flow Behaviour on Inclined Plates [21]. Chemical Engineering Research and Design. Elsevier BV, 147–154.


Sebastia-Saez, D., Gu, S., Könözsy, L., Repke, J.-U. and Arellano-Garc'ia, H. (2018). On the effect of the Froude number on the interface area of gravity-driven liquid rivulets [22]. Chemical Engineering Research and Design. Elsevier BV, 208–218.


Stünkel, S., Drescher, A., Wind, J., Brinkmann, T., Repke, J.-U. and Wozny, G. (2011). Carbon dioxide capture for the oxidative coupling of methane process – A case study in mini-plant scale [23]. Chemical Engineering Research and Design. Elsevier BV, 1261–1270.


Thiele, R., Faber, R., Repke, J.-U., Thielert, H. and Wozny, G. (2007). Design of Industrial Reactive Absorption Processes in Sour Gas Treatment Using Rigorous Modelling and Accurate Experimentation [24]. Chemical Engineering Research and Design. Elsevier BV, 74–87.


Kapoustina, V., Ross-Jones, J., Hitschler, M., Rädle, M. and Repke, J.-U. (2015). Direct spatiotemporally resolved fluorescence investigations of gas absorption and desorption in liquid film flows [25]. Chemical Engineering Research and Design. Elsevier BV, 248–255.


Kapoustina, V., Guffart, J., Hien, A., Strischakov, J., Medina, I., Rädle, M. and Repke, J.-U. (2019). Influence of a single microstructure on local mass transfer in liquid film flows [26]. Chemical Engineering Research and Design. Elsevier BV, 352–362.


Wendt, M., Königseder, R., Li, P. and Wozny, G. (2003). Theoretical and experimental studies on startup strategies for a heat-integrated distillation column system [27]. Chemical Engineering Research and Design. Elsevier, 153–161.


Wilhelm, R., Esche, E., Guetta, Z., Menzel, J., Morstein, O. v., Thielert, H. and Repke, J.-U. (2019). A Framework for the Experimental Characterisation of Novel Solvents in a Pilot-plant Scale CO2 Capture Process under Industrial Conditions Using a Data-driven Modelling Approach [28]. Chemical Engineering Research and Design. Elsevier BV, 190–200.


Kohrt, M., Ausner, I., Wozny, G. and Repke, J.-U. (2011). Texture influence on liquid-side mass transfer [29]. Chemical Engineering Research and Design. Elsevier BV, 1405–1413.


Lausch, H.-R., Wozny, G., Wutkewicz, M. and Wendeler, H. (1998). Plant-Wide Control of an Industrial Process [30]. Chemical Engineering Research and Design. Elsevier BV, 185–192.


Leuner, H., Gerstenberg, C., Lechner, K., McHardy, C., Rauh, C. and Repke, J.-U. (2020). Overcoming unwanted foam in industrial processes of the chemical and food industry textendash an ongoing survey [31]. Chemical Engineering Research and Design. Elsevier BV, 281–294.


Lorenz, H.-M., Otte, D., Staak, D. and Repke, J.-U. (2015). Increasing the efficiency of existing complex downstream processes by plant-wide retrofit [32]. Chemical Engineering Research and Design. Elsevier BV, 199–207.


Müller, D., Minh, D. H., Merchan, V. A., Arellano-Garcia, H., Kasaka, Y., Müller, M., Schomäcker, R. and Wozny, G. (2014). Towards a novel process concept for the hydroformylation of higher alkenes: Mini-plant operation strategies via model development and optimal experimental design [33]. Chemical Engineering Science. Elsevier BV, 127–138.


Obermeier, A., Windmeier, C., Esche, E. and Repke, J.-U. (2019). A discrete-time scheduling model for power-intensive processes taking fatigue of equipment into consideration [34]. Chemical Engineering Science. Elsevier BV, 904–920.


Reepmeyer, F., Repke, J.-U. and Wozny, G. (2004). Time optimal start-up strategies for reactive distillation columns [35]. Chemical Engineering Science. Elsevier BV, 4339–4347.


Esche, E., Müller, D., Kraus, R. and Wozny, G. (2014). Systematic approaches for model derivation for optimization purposes [36]. Chemical Engineering Science. Elsevier BV, 215–224.


Hoffmann, C., Weigert, J., Esche, E. and Repke, J.-U. (2020). Towards demand-side management of the chlor-alkali electrolysis: Dynamic, pressure-driven modeling and model validation of the 1,2-dichloroethane synthesis [37]. Chemical Engineering Science. Elsevier BV, 115358.


Javso, S., Godini, H., Arellano-Garcia, H., Omidkhah, M. and Wozny, G. (2010). Analysis of attainable reactor performance for the oxidative methane coupling process [38]. Chemical Engineering Science. Elsevier BV, 6341–6352.


Misra, A., Souza, L. d., Illner, M., Hohl, L., Kraume, M., Repke, J.-U. and Thévenin, D. (2017). Simulating separation of a multiphase liquid-liquid system in a horizontal settler by CFD [39]. Chemical Engineering Science. Elsevier BV, 242–250.


G., B., A., H., M., R. and J.-U., R. (2016). Analysis of the influence of turbulence on the heat transfer between spherical particles and planar surfaces [40]. Chemical Engineering Transactions. AIDIC: Italian Association of Chemical Engineering, 13-18.


E., E., H., A.-G., T., B. L. and G., W. (2012). Two-dimensional modeling of a packed-bed membrane reactor for the oxidative coupling of methane [41]. Chemical Engineering Transactions. AIDIC: Italian Association of Chemical Engineering, 1537-1542.


Soren, G., Hannes, L. and Jens-Uwe, R. (2018). Experimental investigation of local film thickness and velocity distribution inside falling liquid films on corrugated structured packings [42]. Chemical Engineering Transactions. AIDIC: Italian Association of Chemical Engineering, 1-6.


Sacher, J. and Repke, J.-U. (2018). Development of a mesoscale modeling approach for the gas phase fluid dynamics in structured packings [43]. Chemical Engineering Transactions. AIDIC: Italian Association of Chemical Engineering, 277-282.


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