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Estimation of optimum fluid velocity in high gradient magnetic

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dc.contributor.author Abbasov, T
dc.contributor.author Ceylan, K
dc.date.accessioned 2022-10-19T12:48:40Z
dc.date.available 2022-10-19T12:48:40Z
dc.date.issued 1998
dc.identifier.uri http://hdl.handle.net/11616/84957
dc.description.abstract A high gradient magnetic cleaning process is favored by several branches of industry for the high purification of various technological fluids involving magnetic(ferro, para, or diamagnetic) particles. This paper presents a theoretical study about the effects of the parameters of a magnetic filtration system on the fluid velocity to be chosen. A model is presented to estimate the optimum filtration velocity needed to satisfy a predefined filter performance. The model is applicable for magnetic filter systems with packing fractions of up to 0.62 and for fluids containing magnetic particles. It is essentially based on the balance of moments acting on particles captured and accumulated in the magnetic filter. The boundary layer approach is used in the development of the model. The results indicate that the optimum filtration velocity depends on the properties of the fluid and on the parameters of the filter system. Model predictions and experimental data given in the literature are in a good agreement.
dc.description.abstract C1 Inonu Univ, Dept Chem Engn, Malatya, Turkey.
dc.description.abstract Inonu Univ, Elect Elect Engn Dept, Malatya, Turkey.
dc.source SEPARATION SCIENCE AND TECHNOLOGY
dc.title Estimation of optimum fluid velocity in high gradient magnetic
dc.title filtration


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