Pore‐to‐mesoscale network modeling of heat transfer and fluid flow in packed beds with application to process design

Author:

Qu Ming‐Liang1ORCID,Blunt Martin J.2ORCID,Fan Xiaolei34ORCID,Foroughi Sajjad2ORCID,Yu Zi‐Tao1,Lin Qingyang1ORCID

Affiliation:

1. State Key Lab of Clean Energy Utilization, State Environmental Protection Center for Coal‐Fired Air Pollution Control Zhejiang University Hangzhou China

2. Department of Earth Science and Engineering Imperial College London London UK

3. Department of Chemical Engineering, School of Engineering The University of Manchester Manchester UK

4. Nottingham Ningbo China Beacons of Excellence Research and Innovation Institute University of Nottingham Ningbo China Ningbo China

Abstract

AbstractA dual‐network model (DNM) representing the topological characteristics of both the pore space and solid fraction of a packed bed was developed to study coupled incompressible water flow and heat transport from the pore‐scale to mesoscale (μm‐cm) with the consideration of temperature‐dependent fluid viscosity. The DNM was validated and used to study the temperature and velocity at the pore scale and their effects on fluid flow and heat transfer. Then the pore volume of the DNM was varied to illustrate the effect of bed porosity on transport processes, quantifying the trade‐off between flow conditions and heat transfer. This work demonstrates the ability of the DNM to simulate pore‐scale fluid flow and heat transfer simultaneously, which can then be averaged over the entire simulation domain to approximate meso/macroscopic parameters efficiently in relation to the pore geometry.

Funder

European Commission

National Natural Science Foundation of China

Publisher

Wiley

Subject

General Chemical Engineering,Environmental Engineering,Biotechnology

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