Conference Agenda

Overview and details of the sessions of this conference. Please select a date or location to show only sessions at that day or location. Please select a single session for detailed view (with abstracts and downloads if available).

 
 
Session Overview
Session
S3-4: Fluidization
Time:
Monday, 12/May/2025:
4:40pm - 6:20pm

Session Chair: Simon Schneiderbauer
Location: Spot


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Presentations
4:40pm - 5:00pm

Modeling hydrogen combustion in fluidized beds using three-dimensional Euler-Euler numerical simulations

Vincent Baruzzini1, Ivan Girault1, Lucas Sanchez1, Enrica Masi1, Olivier Simonin1, Jérôme Laviéville2, Maxime Pigou1, Hervé Neau1, Amine Chadil3

1IMFT, France; 2EDF R&D, France; 3MSME, France

Baruzzini-Modeling hydrogen combustion in fluidized beds using three-dimensional Euler-Euler-1209.pdf


5:00pm - 5:20pm

Closing the metal fuel cycle: Enhanced iron oxide powder reduction via fluidized bed operations across different regimes

Nicole C. Stevens1, Niels G. Deen1,2, Giulia Finotello1,2

1Department of Mechanical Engineering, Power&Flow group, Eindhoven University of Technology, The Netherlands; 2Eindhoven Institute for Renewable Energy Systems (EIRES), Eindhoven University of Technology, The Netherlands

Stevens-Closing the metal fuel cycle-159.pdf


5:20pm - 5:40pm

Effect of agglomeration in iron powder reduction – A CFD-DEM approach

J.G. {Juan} Ramírez1, N.C. {Nicole} Stevens2, Y. {Yali} Tang2,3, M. {Martin} van Sint Annaland1,3, N.G. {Niels} Deen2,3, I. {Ivo} Roghair1,3

1Chemical Process Intensification, Deparment of Chemical Engineering and Chemistry, Eindhoven University of Technology, Eindhoven, the Netherlands; 2Power and Flow Group, Department of Mechanical Engineering, Eindhoven University of Technology, Eindhoven, the Netherlands; 3Eindhoven Institute for Renewable Energy Systems (EIRES), Eindhoven University of Technology, Eindhoven, the Netherlands

Ramírez-Effect of agglomeration in iron powder reduction – A CFD-DEM approach-584.pdf


5:40pm - 6:00pm

A Efficient Numerical Model for Dense Particulate Multiphase Flows with Chemical Reactions

Yuki Yakata1, Takuya Tsuji1, Kimiaki Washino1, Toshitsugu Tanaka1, Ryoichi Kurose2

1University of Osaka; 2Kyoto University

Yakata-A Efficient Numerical Model for Dense Particulate Multiphase Flows with Chemical-1063.pdf


 
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