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Titlebook: Gas Cyclones and Swirl Tubes; Principles, Design, Alex C. Hoffmann,Louis E. Stein Book 2008Latest edition Springer-Verlag Berlin Heidelber

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https://doi.org/10.1007/978-3-642-69796-8e depends on the situation: the techniques giving the best results in the laboratory on relatively small-scale equipment under controlled conditions, may be quite different from those giving the best results in industrial equipment.
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https://doi.org/10.1007/978-94-009-2701-8yclone. In reality, the cyclone’s performance is just as good as its underflow design. It is the writers’ observation that about 90% of all cyclone related problems are due to problems associated with the inability of the ‘collected’ solids to properly discharge out the underflow. This can be due to
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Symbiont-Based Business Model Design, some guidelines for the choice of arrangement in a given application including a worked example given in Appendix 16A. In addition, we briefly describe how to apply the modeling equations outlined in previous chapters to multicyclone arrangements.
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Underflow Configurations and Considerations,lated problems are due to problems associated with the inability of the ‘collected’ solids to properly discharge out the underflow. This can be due to a blockage or bridge of some sort or, more often, gas leakage into the cyclone via the underflow piping because of a poor underflow seal.
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Design Aspects,f actually designing and constructing a cyclone or swirl tube we include some guidelines here. Although the majority of the discussion that follows directly pertains to “dedusting” cyclones and swirl tubes, most of it also applies equally well to demisting cyclones. Regarding the latter, see also Chap 13.
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