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- W4226128045 abstract "Gas–solid flow is critically important to several chemical processes such as polymerization, crude oil cracking, mineral processing, waste treatment, biomass pyrolysis, etc. Gas–solid flows manifest complex phenomena at different time and length scales. At a particle scale, interface transport and interparticle interactions govern a process, whereas at a larger scale, flow structures induced by equipment boundaries influence a process. To understand such complex nature of gas–solid flows, extensive experimental and computational studies have been carried out. This chapter includes four case studies to demonstrate the use of experimental measurements and computational modeling of gas–solid flows to bring process innovations. Through these case studies, an effort is made to connect different aspects such as (i) current understanding of gas–solid flows, (ii) computational modeling of gas–solid flows, (iii) multiscale modeling approaches, and (iv) use experimental data and simulation predictions to bring process innovations." @default.
- W4226128045 created "2022-05-05" @default.
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- W4226128045 date "2022-04-01" @default.
- W4226128045 modified "2023-10-16" @default.
- W4226128045 title "Enabling Process Innovations via Mastering Multiphase Flows: Gas–Solid Processes" @default.
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- W4226128045 doi "https://doi.org/10.1002/9783527812066.ch6" @default.
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