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Recent Advances in Experimental Techniques for Flow and Mass Transfer Analyses in Thermal Separation Systems
Chemie Ingenieur Technik ( IF 1.5 ) Pub Date : 2020-06-16 , DOI: 10.1002/cite.202000076
Uwe Hampel 1, 2 , Markus Schubert 1 , Alexander Döß 1 , Johanna Sohr 2 , Vineet Vishwakarma 1, 2 , Jens‐Uwe Repke 3 , Sören J. Gerke 3 , Hannes Leuner 3 , Matthias Rädle 4 , Viktoria Kapoustina 4 , Lucas Schmitt 4 , Marcus Grünewald 5 , Jost H. Brinkmann 5 , Dominik Plate 5 , Eugeny Y. Kenig 6 , Nicole Lutters 6 , Lukas Bolenz 6 , Felix Buckmann 6 , Dominique Toye 7 , Wolfgang Arlt 8 , Thomas Linder 8 , Rainer Hoffmann 9 , Harald Klein 10 , Sebastian Rehfeldt 10 , Thomas Winkler 10 , Hans‐Jörg Bart 11 , Dominic Wirz 11 , Jonas Schulz 11 , Stephan Scholl 12 , Wolfgang Augustin 12 , Katharina Jasch 12 , Florian Schlüter 12 , Natalie Schwerdtfeger 12 , Stefan Jahnke 12 , Andreas Jupke 13 , Christoph Kabatnik 13 , Andreas Siegfried Braeuer 14 , Mirko D'Auria 14 , Thomas Runowski 15 , Maria Francisco Casal 15 , Karsten Becker 15 , Anna‐Lena David 15 , Andrzej Górak 16 , Mirko Skiborowski 16 , Kai Groß 16 , Hina Qammar 16
Affiliation  

Modelling flow and mass transfer of thermal separation equipment constitutes one of the most challenging tasks in fluids process engineering. The difficulty of this task comes from the multiscale multiphase flow phenomena in rather complex geometries. Both analysis of flow and mass transfer on different scales as well as validation of models and simulation results require advanced experimental and measurement techniques. As a follow‐up to intensive discussions during the 2019 Tutzing Symposium “Separation Units 4.0” a wide set of available modern experimental technologies is presented.

中文翻译:

热分离系统中流动与传质分析实验技术的最新进展

对热分离设备的流量和传质进行建模是流体过程工程中最具挑战性的任务之一。这项任务的困难来自几何形状相当复杂的多尺度多相流现象。在不同规模上进行流量和质量传递的分析以及模型和仿真结果的验证都需要先进的实验和测量技术。作为2019年图钦专题讨论会“分离单元4.0”中的深入讨论的后续,将介绍一系列可用的现代实验技术。
更新日期:2020-06-16
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