CFD-PBM simulation of power law fluid in a bubble column reactor

Author:

Duan Meng-Qiang1,Li Shao-Bai2ORCID,Bhusal Manju L.1,Zhang Wei1,Ding Yu-Huan1

Affiliation:

1. College of Energy and Environment , 66284 Shenyang Aerospace University , 110136 Shenyang , China

2. School of Chemistry and Chemical Engineering , 47874 Guangxi Minzu University , 530006 Nanning , China

Abstract

Abstract A computational fluid dynamics coupled population balance model (CFD-PBM) was used to numerically simulate the fluid dynamics of bubble swarms in a bubble column containing non-Newtonian fluids. The effects of superficial gas velocity (U g ), the consistency index (K), and the flow index (n) on bubble size distribution (BSD), gas holdup, and fluid dynamic viscosity in a bubble column were analyzed at both local and overall scales. As U g increases, the bubble breakup occurs excessively, the gas holdup increases, and the dynamic viscosity decreases. K and n were used to characterize the rheological properties of power law fluid. As K increases, fluid viscosity increases, bubble breakup rate decreases, gas holdup in the top zone is slightly lower than in the middle zone, and dynamic viscosity increases. Within the range of n from 0.45 to 1.07, when n is smallest, the relative frequency of bubbles smaller than the initial size is relatively large, and the overall and local gas holdup are the highest. When n = 1.07, the fluid exhibits shear-thickening properties, and the dynamic viscosity variations are significant.

Funder

National Science Foundation of Liaoning Province

National Natural Science Foundation of China

Publisher

Walter de Gruyter GmbH

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