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- W3180799486 endingPage "107066" @default.
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- W3180799486 abstract "The hydrocyclone is a separation device that is widely used in the mineral industry for various applications, including classification, thickening, and desliming. The design of this device differs depending on the application. Thus, for the use of hydrocyclone in thickening operations, an appropriate geometry is required. In this work, an optimization study was performed using a differential evolution algorithm (DE) to find geometric configurations that maximize its thickening potential. A bibliographical survey of 56 geometric configurations of hydrocyclones developed between 2000 and 2018 at our laboratory (LASER/UFU) provided a database for the optimization study. Three optimal hydrocyclone configurations (HA, HB, and HC) were obtained, and they were later compared numerically and experimentally to the device that had the lowest Euler number in the LASER/UFU database (hydrocyclone E45). The new devices HA, HB, and HC showed an underflow-to-throughput ratio 35%, 30%, and 87% smaller than E45, respectively. In addition, the HA hydrocyclone showed an overall separation efficiency 4% higher than the E45. The HC hydrocyclone increased the concentration of the initially diluted current (1.0% v/v) to about 45% v/v with low energy consumption (Eu = 1279). Therefore, this device (HC) was the best thickener hydrocyclone ever developed by our research group." @default.
- W3180799486 created "2021-07-19" @default.
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- W3180799486 date "2021-08-01" @default.
- W3180799486 modified "2023-10-17" @default.
- W3180799486 title "Optimization study of thickener hydrocyclones" @default.
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- W3180799486 doi "https://doi.org/10.1016/j.mineng.2021.107066" @default.
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