Download e-book for iPad: Pneumatic Conveying of Solids by R. D. Marcus

By R. D. Marcus

ISBN-10: 9400904053

ISBN-13: 9789400904057

ISBN-10: 9401066698

ISBN-13: 9789401066693

When the 4 people determined to collaborate to jot down this e-book on pneumatic conveying, there have been features that have been of a few drawback. first of all, how may perhaps 4 humans, who continue to exist 4 diversified continents, write a booklet on a pretty advanced topic with such extensive strains of communications? Secondly, there has been the matter that of the authors are chemical engineers. it's been famous that most of chemical engineers who paintings within the box of pneumatic conveying study have spent so much in their time contemplating movement in vertical pipes. As such, there has been a few obstacle that the publication could be biased in the direction of vertical pneumatic conveying and that the horizontal facets (which are truly the main difficult!) will be a little overlooked. we are hoping that you simply, because the reader, are going to be happy with the truth that you may have a really foreign dissertation on pneumatic conveying and, additionally, that there's a good unfold among the theoretical and sensible elements of pneumatic conveying technology.

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20. ) is not used in MSU. 1000 1= 1 m 3 . 01 1000 10 9 100 REFERENCES 1. BHRA Fluid Engineering, Cranfield, Bedford, UK (1973) Pneumatic Transport of Solids in Pipes (lecture course). 2. A. and Haynes, W. (1979) Pneumatic transport of coal, paper A6, Proc. 3rd Int. Con! on Pneumatic Transport of Solids in Pipes, BHRA Fluid Engineering, Cranfield, Bedford, England. 3. J. (1982) Concept and results of pneumatic conveying of support materials in German underground mining, Proc. Pneuma tech I. International Conference of Pneumatic Conveying Technology, Powder Advisory Centre, London, 3-5 May.

A. F. (1960) Fluidisation and Fluid Particle Systems, Reinhold, New York. 6. Engineer Equipment Users Association (1963) Pneumatic Handling of Powdered Materials, Constable, London. 7. Kongskilde Maskinfarbrik Als, Denmark. 8. A. (1983) Pneumatic Conveying, John Wiley, New York, pp. 53-62. 9. Pfeffer, R. S. (1974) A review of drag reduction in dilute gas-solids suspension flow in tubes, Paper Fl, Proc. Int. Con! on Drag. Reduction, BHRA Fluid Engineering, Cranfield, UK. 10. D. (1978) An investigation into the influence of pressure pulsations on the flow characteristics of solids gaseous suspensions, PhD Thesis, University of the Witwatersrand, Johannesburg, South Africa.

45) Note that AL = 4fv A set of curves (Fig. 44) provides a quick method of obtaining the pressure loss for various air flow rates. IIII_: :1 2 3 I. nt top I L 2 3 I. 3 A set of curves produced using the Blasius equation. can be carried by various sizes of pipes at given velocities. (It is common practice to size compressed air mains in a velocity range 6- 9 m/s). 4. Resistance due to pipe fittings In a system layout where a complex pipe layout is required, it is essential that the pressure losses generated by pipe fittings are taken into account.

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Pneumatic Conveying of Solids by R. D. Marcus


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