Correlations for the Interphase Drag in the Two-Fluid Model of Gas--Liquid Flows through Packed-Bed Reactors
arXiv:2409.10674 · doi:10.1021/acs.iecr.4c04147
Abstract
Experiments conducted by NASA measured the pressure drop due to gas--liquid flow through a packed-bed reactor under microgravity conditions. From these experiments, we develop correlations for the gas--liquid interphase drag in a two-fluid model (TFM). We use an Ergun-type closure for liquid--solid drag. Then, under a 1D flow assumption, is the only unknown in the TFM. Using a data-driven approach, we determine and correlate it (via composite fits) with the liquid and gas Reynolds numbers, and , respectively, and the Suratman number . To validate the proposed closure, we perform two-dimensional transient simulations at microgravity conditions using ANSYS Fluent and employing an Euler--Euler formulation. We find good agreement between the simulations based on the proposed closure and the experimental data.
26 pages, 5 figures, preprint mode; v2: minor updates/enhancements; v3: minor updates, accepted for puplication in I&ECR