Numerical study on performance optimization and flow mechanism of a new cyclone separator
Author:
Funder
National Natural Science Foundation of China
Publisher
Elsevier BV
Reference41 articles.
1. A hybrid CFD-Deep learning methodology for improving the accuracy of pressure drop prediction in cyclone separators;Le;Chem. Eng. Res. Des.,2023
2. A novel centrifugal gas liquid pipe separator for high velocity wet gas separation;Wei;Int. J. Multiphas. Flow,2020
3. CFD modeling of gas-solid cyclone separators at ambient and elevated temperatures;Nakhaei;Processes,2020
4. Dust control in industry-2;Swift;Steam Heat. Engr.,1969
5. Internal components optimization in cyclone separators: systematic classification and meta-analysis;Gao;Separ. Purif. Rev.,2021
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1. Numerical Investigation of Inlet Height and Width Variations on Separation Performance and Pressure Drop of Multi-Inlet Cyclone Separators;Processes;2024-08-27
2. Cyclone Shapes for Sand and Microplastic Separation: Efficiency and Reynolds Number Relationships;Separations;2024-07-23
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