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DOE OSTI · 1812412

Analysis of Hydrocyclone Geometry via Rapid Optimization Based on Computational Fluid Dynamics

Abstract

Abstract Hydrocyclones exploit density gradients for the centrifugal separation of dispersions in a continuous liquid. Selection of the geometrics for optimal separation is case specific, like the media characteristics. The existing optimization method based on computational fluid dynamics (CFD) provides a powerful analytical tool but requires long computational times. The most common praxis for CFD optimization is via the single‐factor optimization method (SFOM). In this study, a novel approach is presented as an improved rapid optimization method that implements a dynamic‐mesh and user‐defined function optimization method (DUOM). The DUOM adapts the dynamic‐mesh approach from other applications to the optimization analysis of hydrocyclones. The DUOM reduced the computational time by 31.1 %, compared to the SFOM.

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BibTeXRIS

Liu, Lin, Zhao, Lixin, Reifsnyder, Samuel, Gao, Sheng, Jiang, Minzheng, Huang, Xueqiang, Jiang, Minghu, Liu, Yang, Rosso, Diego. 2021-08-09. Analysis of Hydrocyclone Geometry via Rapid Optimization Based on Computational Fluid Dynamics. https://doi.org/10.1002/ceat.202100121

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