prof. dr. Yi Ouyang
- ORCID iD
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0000-0002-1950-4538
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Revolution of coarse-grained CFD-DEM technology and its application in fluidized beds : a comprehensive review
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- Journal Article
- A1
- open access
Integrating electrochemical CO2 reduction technology for smart, sustainable, and stable in-situ resource utilization for outer-space applications
(2025) ENGINEERING. -
Direct air capture : novel contactor designs and intensification strategies
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Data across the scales : data-driven multiphase flow reactor modeling
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Low-order modeling of a shock wave turboreactor for steam cracking
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Process intensification of solid-based direct air capture with a novel vortex contactor
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Particle-scale modeling of Joule heating in electrified fluidized beds
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Enhancing direct air capture with a novel stator-rotor vortex chamber
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Multi-stage gas-liquid vortex reactor with cyclone separator for process intensification : CFD-based mass transfer and separation design
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Electrochemical CO2 reduction to CO for in-situ resource utilisation on Mars