Publications

U. Afzal, C. Merten, M. Aleysa, and A. Oleynikov. Application of Computational Fluid Dynamics to predict the distribution of gaseous emissions in the indoor environment of a process industry. Jahrestreffen der ProcessNet-Fachgemeinschaften "Prozess-, Apparate- und Anlagentechnik" sowie „Werkstoffe, Konstruktion, Lebensdauer“, 20.11.-21.11.2017, Würzburg, Germany, 2017. [PUMA: afzal icvt merten oleynikov poster]

U. Afzal, C. Merten, and M. Aleysa. Using Computational Fluid Dynamics to predict the distribution of gaseous emissions in the plastic manufacturing indoor environment. Proceedings of the 25. Stuttgarter Kunststoffkolloquium, 22.03.-23.03.2017, Germany, Stuttgart, 2017. [PUMA: afzal icvt merten proceedings]

U. Afzal, C. Merten, and M. Aleysa. Vorhersage gasförmiger Emissionen bei der Kunststoffherstellung. 25. Stuttgarter Kunststoffkolloquium, 22.03.-23.03.2017, Stuttgart, Germany, 2017. [PUMA: afzal icvt vortrag]

U. Afzal, C. Merten, and M. Aleysa. Development and experimental validation of a CFD simulation model to determine the distribution of gaseous emissions in the industrial indoor environment. Jahrestreffen der Fachgemeinschaft Prozess-, Apparate- und Anlagentechnik, 14.11.-15.11.2016, Karlsruhe, Germany, 2016. [PUMA: afzal icvt merten poster]

U. Afzal, C. Merten, and M. Aleysa. Experimental method and CFD simulation model to determine the spatial and temporal distribution of gaseous emissions in the industrial indoor environment. 34. CADFEM ANSYS Simulation Conference, 05.10.–07.10.2016, NCC Ost, Messe Nürnberg, Germany, 2016. [PUMA: afzal icvt vortrag]

U. Afzal, C. Merten, and M. Aleysa. A benchmark test model for the validation of the CFD simulations to predict the distribution of gaseous emissions in the indoor environment. International Journal of Heat and Mass Transfer, (55):1985--1993, 2019. [PUMA: afzal icvt journal merten] URL

U. Afzal, C. Merten, and M. Aleysa. A benchmark test model for the validation of the CFD simulations to predict the distribution of gaseous emissions in the indoor environment. Proceedings of the 3rd Iranian Conference on Heat and Mass Transfer - ICHMT2017, 22.11 - 23.11.2017, Babol, Iran, 2017. [PUMA: afzal icvt merten proceedings]

U. Afzal, D. Shala, and C. Merten. CFD simulation of the distribution of VOC emissions in the clean room. Jahrestreffen der ProcessNet Fachgruppen MPH, WSUE, CFD, HTT, AuW, KRI, PMT, 06.03. - 09.03.2018, Bremen, 2018. [PUMA: afzal icvt merten poster]

U. Afzal, N. Akbary, and J. Rudyk. Kombinationsverfahren zur Abgasbehandlung bei Verbrennungsanlagen zur Verfeuerung fester Brennstoffe. 6. Fachkolloquium Effiziente und Schadstoffarme Verbrennungstechnologien für Biomasse, 12.05.2015, Stuttgart, 2015. [PUMA: afzal icvt poster]

U. Afzal, and C. Merten. Experimental validation of a CFD simulation model to determine the distribution of gaseous emissions in the industrial indoor environment. 4th International Conference on Sustainability in Process Industries, 24.10. – 25.10.2018, UET Peshawar, Pakistan, 2018. [PUMA: afzal icvt vortrag]

U. Afzal, and C. Merten. CFD simulation of distribution of gaseous emissions in the plastic manufacturing indoor environment. National Conference on World Environment Day, 23.06.2018, Lahore, Pakistan, 2018. [PUMA: afzal icvt vortrag]