Download e-book for iPad: Advances in Engineering Fluid Mechanics: Multiphase Reactor by Nicholas P. Cheremisinoff (Eds.)

By Nicholas P. Cheremisinoff (Eds.)

ISBN-10: 0884154971

ISBN-13: 9780884154976

Content material:
Contributors to this volume

, Pages viii-x
About the editor

, Page xi

, Page xii, Nicholas P. Cheremisinoff
Chapter 1 - The viscosity of liquid hydrocarbons and their mixtures

, Pages 1-23, Stanley I. Sandler, Hasan Orbey
Chapter 2 - Experimental stories for characterization of combining mechanisms

, Pages 25-47, Jin Kuk Kim
Chapter three - actual modeling of axial blending in slugging gas-liquid columns

, Pages 49-65, J.R.F. Guedes de Carvalho, J.B.L.M. Campos, J.A.S. Teixeira
Chapter four - Numerical answer of the permeation, sorption, and desorption expense curves incorporating the dual-mode sorption and delivery model

, Pages 67-78, Keio Toi
Chapter five - Kinematic viscosity and viscous circulation in binary combinations containing ethane-1,2-diol

, Pages 79-104, Lorenzo Tassi
Chapter 6 - response of a continual blend in a effervescent fluidized bed

, Pages 105-117, R. Aris
Chapter 7 - Fluid dynamics of coarse dispersions

, Pages 119-166, Y.A. Buyevich, S.K. Kapbasov
Chapter eight - Combustion of unmarried coal debris in turbulent fluidized beds

, Pages 167-191, Prabir Kumar Halder
Chapter nine - circulation of solids and slurries in rotary drums

, Pages 193-253, H.A. Nasr-El-Din, A. Afacan, J.H. Masliyah
Chapter 10 - fuel part hydrodynamics in circulating fluidized mattress risers

, Pages 255-296, Gregory S. endurance, Jamal Chaouki, Franco Berruti
Chapter eleven - Boundary stipulations required for the CFD simulation of flows in stirred tanks

, Pages 297-316, Suzanne M. Kresta
Chapter 12 - function of interfacial shear modelling in predicting balance of stratified two-phase flow

, Pages 317-378, N. Brauner, D. Moalem Maron
Chapter thirteen - Water stream via helical coils in turbulent condition

, Pages 379-403, Sudip Kumar Das
Chapter 14 - Modeling coalescence of bubble clusters emerging freely in low-viscosity liquids

, Pages 405-429, C.W. Stewart
Chapter 15 - Oxygen move in non-newtonian fluids stirred with a helical ribbon screw impeller

, Pages 431-453, A. Tecante, E. Brito de l. a. Fuente, L. Choplin, P.A. Tanguy
Chapter sixteen - Modeling of the hydrodynamic habit of hugely viscous fluids in stirred tanks outfitted with two-blade impellers

, Pages 455-485, Catherine Xuereb, Mohammed Abid, Bertrand Joël
Chapter 17 - Non-newtonian liquid stream via globe and gate valves

, Pages 487-505, Sudip Kumar Das
Chapter 18 - comparability of numerical and experimental rheological information of homogeneous non-newtonian suspensions

, Pages 507-524, V. Nassehi
Chapter 19 - focus forcing of isothermal plug-flow reactors for autocatalytic reactions

, Pages 525-538, M. Chidambaram
Chapter 20 - Non-newtonian results in bubble columns

, Pages 539-570, R.P. Chhabra, U.K. Ghosh, Y. Kawase, S.N. Upadhyay
Chapter 21 - reviews in supported titanium catalyst procedure utilizing magnesium dichloride-alcohol adduct

, Pages 571-581, V.K. Gupta, Shashikant, M. Ravindranathan
Chapter 22 - Plasticizing polyesters of dimer acids and 1,4-butanediol

, Pages 583-597, U.D.N. Bajpai, Nivedita
Chapter 23 - Viscoelastic homes of version silicone networks with pendant chains

, Pages 599-614, M.A. Villar, E.M. Vallés
Chapter 24 - Rheology of water-soluble polymers used for greater oil recovery

, Pages 615-668, H.A. Nasr-El-Din, K.C. Taylor
Chapter 25 - Relation of rheological homes of UV-cured movies with glass transition temperatures in response to fox equation

, Pages 669-681, M. Azam Ali, M.A. Kahn, K.M. Irdriss Ali
Chapter 26 - Prediction and calculation of the shear creep habit of amorphous polymers lower than innovative actual aging

, Pages 683-709, R.O.E. Greiner, J. Kaschta
Chapter 27 - Die extrusion habit of carbon black-filled block copolymer thermoplastic elastomers

, Pages 711-736, Jin Kuk Kim, Min Hyeon Han
Chapter 28 - Polysulfides

, Pages 737-746, C.P. Tsonis
Chapter 29 - homes and purposes of thermoplastic polyurethane blends

, Pages 747-761, M. Yue, K.S. Chian

, Pages 763-772

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Additional resources for Advances in Engineering Fluid Mechanics: Multiphase Reactor and Polymerization System Hydrodynamics. Advances in Engineering Fluid Mechanics Series

Example text

Computed isobars on R-R screw rotors from Kim et al. theory together with experimental results of this paper [21]. ' ;•'/ Figure 10b. Computed isobars on R-L screw rotors from Kim et al. theory together with experimental results of this paper [21]. 5 FILL FACTOR Figure 10c. Connputed isobars on double-flighted rotors fronn Kinn et al. theory together with experimental results of this paper [21]. 6 1 ... 0 Figure 11. Experimental circulation time in an internal mixer as a function of fill factor.

The torque was measured as a function of time. 0 Experimental Studies for Characterization of Mixing Mechanisms 29 Heater K;J Heater HAAKE INTERNAL MIXER (Rheomlx 750) NORMAL VIDEO CAMERA VIDEO RECORDER Figure 1. The schennatic view of trhe system for flow visualization in an internal mixer. the temperatures increased to 150°C to vulcanize the rubber compounds. The apparatus was subsequently cooled down, the rotors removed, and the disposition of the rubber determined. Other experiments were carried out to determine the circulation time within the mixer.

60 Advances in Engineering Fluid Mechanics Some curves from the model are given in Figures 8 to 11, alongside the experimental data; each figure reports data for one value of the liquid flowrate and three values of the gas flowrate. The theoretical lines corresponding to liquid progression in plug flow (B), perfectly mixed flow (D), and laminar flow with a parabolic velocity profile (A) also are represented. In each of the four figures it may be seen that the injection of gas at the lowest flowrates reduces dispersion in the liquid significantly below that observed with no gas injection.

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Advances in Engineering Fluid Mechanics: Multiphase Reactor and Polymerization System Hydrodynamics. Advances in Engineering Fluid Mechanics Series by Nicholas P. Cheremisinoff (Eds.)

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