Publications

Daniel Loureiro, Jonathan Reutzsch, Andreas Kronenburg, Bernhard Weigand, und Konstantina Vogiatzaki. Towards full resolution of spray break-up in flash atomization conditions using DNS. In W. E. Nagel, D. H. Kröner, und Resch M. M. (Hrsg.), High Performance Computing in Science and Engineering '19, Springer, 2020. [PUMA: dns droplet evaporation fs3d imported itlr myown vof]

Jonas Steigerwald, Jonathan Reutzsch, Matthias Ibach, Martina Baggio, Adrian Seck, Brian Haus, und Bernhard Weigand. Direct Numerical Simulation of a Wind-generated Water Wave. In W. E. Nagel, D. H. Kröner, und Resch M. M. (Hrsg.), High Performance Computing in Science and Engineering '19, Springer, 2020. [PUMA: dns droplet fs3d itlr myown]

Karin Schlottke, Jonathan Reutzsch, Corine Kieffer-Roth, und Bernhard Weigand. Direct Numerical Simulations of Evaporating Droplets at Higher Temperatures: Application of a Consistent Numerical Approach. In Grazia Lamanna, Simona Tonini, Gianpietro Elvio Cossali, und Bernhard Weigand (Hrsg.), Droplet Interactions and Spray Processes, 287--299, Springer International Publishing, Cham, 2020. [PUMA: dns droplet evaporation fs3d itlr myown vof]

Jonathan Reutzsch, Corine Kieffer-Roth, und Bernhard Weigand. A consistent method for direct numerical simulation of droplet evaporation. Journal of Computational Physics, (413):109455, Elsevier BV, Juli 2020. [PUMA: VOF consistent dns droplet evaporation fs3d itlr method myown numerical simulation] URL

Jonathan Reutzsch, Moritz Ertl, Martina Baggio, Adrian Seck, und Bernhard Weigand. Towards a Direct Numerical Simulation of Primary Jet Breakup with Evaporation. In W. E. Nagel, D. H. Kröner, und Resch M. M. (Hrsg.), High Performance Computing in Science and Engineering '18, 243-257, Springer, Cham, Juni 2019. [PUMA: VOF dns droplet evaporation fs3d itlr jet myown primary]

Weibo Ren, Jonathan Reutzsch, und Bernhard Weigand. Direct Numerical Simulation of Water Droplets in Turbulent Flow. Fluids, (5)3:158, MDPI AG, September 2020. [PUMA: DNS VOF droplet fs3d itlr myown numerical rain simulation speed] URL

C. Steinhausen, J. Reutzsch, G. Lamanna, B. Weigand, R. Stierle, J. Gross, A. Preusche, und A. Dreizler. Droplet Evaporation under High Pressure and Temperature Conditions: A Comparison of Experimental Estimations and Direct Numerical Simulations. Proceedings ILASS–Europe 2019. 29th Conference on Liquid Atomization and Spray Systems, 2019. [PUMA: DNS VOF droplet evaporation fs3d itlr myown]

D. D. Loureiro, Jonathan Reutzsch, A. Kronenburg, B. Weigand, und K. Vogiatzaki. Primary breakup regimes for cryogenic flash atomization. International Journal of Multiphase Flow, (132):103405, 2020. [PUMA: breakup cryogenic droplet evaporation flash fs3d itlr myown] URL

Daniel Loureiro, Jonathan Reutzsch, Andreas Kronenburg, Bernhard Weigand, und Konstantina Vogiatzaki. Resolving breakup in flash atomization conditions using DNS. Proceedings ICMF 2019. 10th International Conference on Multiphase Flow, Juni 2019. [PUMA: atomization breakup droplet evaporation flash fs3d itlr myown]

D. Loureiro, J. Reutzsch, D. Dietzel, A. Kronenburg, B. Weigand, und K. Vogiatzaki. DNS of Multiple Bubble Growth and Droplet Formation in Superheated Liquids. Proceedings ICLASS 2018, 14th Triennial International Conference on Liquid Atomization and Spray Systems, Juli 2018. [PUMA: droplet evaporation itlr myown]

Moritz Ertl, Jonathan Reutzsch, A. Nägel, G. Wittum, und Bernhard Weigand. Towards the Implementation of a New Multigrid Solver in the DNS Code FS3D for Simulations of Shear-Thinning Jet Break-Up at Higher Reynolds Numbers. High Performance Computing in Science and Engineering '17, 269-287, Springer, 2017. [PUMA: DNS FS3D VOF droplet evaporation itlr myown]

Stefano Ruberto, Jonathan Reutzsch, Norbert Roth, und Bernhard Weigand. A systematic experimental study on the evaporation rate of supercooled water droplets at subzero temperatures and varying relative humidity. Experiments in Fluids, (58)5:55, 11.04.2017. [PUMA: DNS Evaporation FS3D VOF droplet experiment itlr levitation myown] URL

Stefano Ruberto, Jonathan Reutzsch, und Bernhard Weigand. Experimental investigation of the evaporation rate of supercooled water droplets at constant temperature and varying relative humidity. International Communications in Heat and Mass Transfer, (77):190--194, Elsevier BV, Oktober 2016. [PUMA: Evaporation Experiment Optical Supercooled Water droplet itlr levitation myown] URL