logo
ResearchBunny Logo
Machine learning-assisted discovery of flow reactor designs

Engineering and Technology

Machine learning-assisted discovery of flow reactor designs

T. Savage, N. Basha, et al.

Discover how a team of researchers, including Tom Savage, Nausheen Basha, and Omar Matar, employs machine learning and additive manufacturing to revolutionize chemical reactor design. Their innovative approach led to a remarkable 60% improvement in plug flow performance, showcasing the synergy between advanced manufacturing and augmented intelligence.

00:00
00:00
~3 min • Beginner • English
Abstract
Additive manufacturing has enabled the fabrication of advanced reactor geometries, permitting larger, more complex design spaces. Identifying promising configurations within such spaces presents a significant challenge for current approaches. Furthermore, existing parameterizations of reactor geometries are low dimensional with expensive optimization, limiting more complex solutions. To address this challenge, we have established a machine learning-assisted approach for the design of new chemical reactors, combining the application of high-dimensional parameterizations, computational fluid dynamics and multi-fidelity Bayesian optimization. We associate the development of mixing-enhancing vortical flow structures in coiled reactors with performance and used our approach to identify the key characteristics of optimal designs. By appealing to the principles of fluid dynamics, we rationalized the selection of design features that lead to experimental plug flow performance improvements of ~60% compared with conventional designs. Our results demonstrate that coupling advanced manufacturing techniques with ‘augmented intelligence’ approaches can give rise to reactor designs with enhanced performance.
Publisher
Nature Chemical Engineering
Published On
Aug 05, 2024
Authors
Tom Savage, Nausheen Basha, Jonathan McDonough, James Krassowski, Omar Matar, Ehecatl Antonio del Rio Chanona
Tags
additive manufacturing
chemical reactors
machine learning
Bayesian optimization
plug flow performance
CFD
design features
Listen, Learn & Level Up
Over 10,000 hours of research content in 25+ fields, available in 12+ languages.
No more digging through PDFs, just hit play and absorb the world's latest research in your language, on your time.
listen to research audio papers with researchbunny