dc.creator | de Souza-Santos M.L. | |
dc.date | 2007 | |
dc.date | 2015-06-30T18:47:27Z | |
dc.date | 2015-11-26T14:35:38Z | |
dc.date | 2015-06-30T18:47:27Z | |
dc.date | 2015-11-26T14:35:38Z | |
dc.date.accessioned | 2018-03-28T21:39:03Z | |
dc.date.available | 2018-03-28T21:39:03Z | |
dc.identifier | | |
dc.identifier | Fuel. , v. 86, n. Dez/13, p. 1684 - 1709, 2007. | |
dc.identifier | 162361 | |
dc.identifier | 10.1016/j.fuel.2006.12.001 | |
dc.identifier | http://www.scopus.com/inward/record.url?eid=2-s2.0-34248664680&partnerID=40&md5=01e4b9c211848f8615e9675d0d19ad72 | |
dc.identifier | http://www.repositorio.unicamp.br/handle/REPOSIP/104802 | |
dc.identifier | http://repositorio.unicamp.br/jspui/handle/REPOSIP/104802 | |
dc.identifier | 2-s2.0-34248664680 | |
dc.identifier.uri | http://repositorioslatinoamericanos.uchile.cl/handle/2250/1248426 | |
dc.description | A comprehensive simulation program for fluidised bed equipment (CSFB) has been improved and is now able to predict operational conditions of bubbling and circulating fluidised bed equipment such as boilers, gasifiers, dryers, shale-retorting reactors, and pyrolysers with various designs and consuming a wide range of feedstock. This paper concentrates on the improvements on the original bubbling model. Comparisons between simulation results and real equipment operational conditions under bubbling fluidised bed techniques are presented. Since those comparisons showed relatively low deviations, it is believed that CSFB is useful for improving operational conditions of existing industrial units and as auxiliary tool for designing of new equipment. © 2007 Elsevier Ltd. All rights reserved. | |
dc.description | 86 | |
dc.description | Dez/13 | |
dc.description | 1684 | |
dc.description | 1709 | |
dc.description | de Souza-Santos, M.L., Comprehensive modelling and simulation of bed-bed boilers and gasifiers (1989) Fuel, 68, pp. 1507-1521 | |
dc.description | de Souza-Santos, M.L., Application of comprehensive simulation to pressurized fluidised bed hydroretorting of shale (1994) Fuel, 73 (9), pp. 1459-1465 | |
dc.description | de Souza-Santos, M.L., Application of comprehensive simulation of bed-bed reactors to the pressurized gasification of biomass (1994) J. Brazilian Soc Mech Sci, XVI (4), pp. 376-383 | |
dc.description | de Souza-Santos, M.L., (1998) Chapter of the vol. 4 of the Book on combustion technologies for a clean environment, , Gordon and Breach Publishers, Amsterdam, Holland | |
dc.description | de Souza-Santos, M.L., A feasibility study on an alternative power generation system based on biomass gasification/gas turbine concept (1999) Fuel, 78, pp. 529-538 | |
dc.description | Costa, A.M.S., de Souza-Santos, M.L., Studies on the mathematical modeling of circulation rate of particles in bubbling fluidised beds (1999) Powder Technol, 103, pp. 110-116 | |
dc.description | Rabi, J.A., de Souza-Santos, M.L., Incorporation of a two-flux model for radiative heat transfer in a comprehensive fluidised bed simulator. Part I: Preliminary theoretical investigations (2003) Thermal Eng, 3, pp. 64-70 | |
dc.description | Rabi, J.A., de Souza-Santos, M.L., Incorporation of a two-flux model for radiative heat transfer in a comprehensive fluidised bed simulator. Part II: numerical results and assessment (2004) Thermal Eng, 4, pp. 49-54 | |
dc.description | van den Enden, P.J., Lora, E.S., Design approach for a biomass fed fluidised bed gasifier using the simulation software CSFB (2004) Biomass Bioenergy, 26, pp. 281-287 | |
dc.description | de Souza-Santos, M.L., (2004) Solid fuels combustion and gasification: modeling, simulation, and equipment operation, , Marcel Dekker Inc., New York, USA. 0-8247-0971-3 | |
dc.description | Toomey, R.D., Johnstone, H.F., Gaseous fluidization of solid particles (1952) Chem Eng Prog, 48 (5), pp. 220-226 | |
dc.description | Sit, S.P., Grace, J.R., Effect of bubble interaction on the interphase mass transfer in gas fluidised beds (1981) Chem Eng Sci, 36, pp. 327-335 | |
dc.description | La Nause, R.D., Jung, K., Kastl, J., Mass transfer to large particles in fluidised beds of small particles (1984) Chem Eng Sci, 39, pp. 1623-1633 | |
dc.description | Kunii, D., Levenspiel, O., (1991) Fluidization engineering. 2nd ed., , Wiley, New York | |
dc.description | Horio, M., Nonaka, A., A generalized bubble diameter correlation for gas-solid fluidised beds (1987) AIChE J, 33 (11), pp. 1865-1872 | |
dc.description | Delvosalle, C., Vanderschuren, J., Gas-to-particles and particle-to-particle heat transfer in fluidised beds of large particles (1985) Chem Eng Sci, 40 (5), pp. 769-779 | |
dc.description | Xavier, A.M., Davidson, J.F., (1978) Fluidization, p. 333. , Davidson J.F., and Keairns D.L. (Eds), Cambridge University Press, Cambridge | |
dc.description | Reid, C.R., Prausnitz, J.M., Poling, B.E., (1987) The properties of gases and liquids. 4thh ed., , McGraw-Hill, New York | |
dc.description | Karapetyants, M.K., (1978) Chemical thermodynamics, , Mir, Moscow | |
dc.description | Soo, S.L., Note on motions of phases in a fluidised bed (1986) Power Technol, 45, pp. 169-172 | |
dc.description | Soo, S.L., Average circulatory motion of particles in fluidised beds (1989) Power Technol, 57, pp. 107-117 | |
dc.description | Soo, S.L., (1989) Multiphase fluid dynamics, , Hemisphere, New York | |
dc.description | Loison, R., Chauvin, R., Pyrolyse rapide du charbon (1964) Chim Ind, 91, p. 3 | |
dc.description | Niksa, S., Kerstein, A.R., On the role of macromolecular configuration in rapid coal devolatilization (1987) Fuel, 66, pp. 1389-1399 | |
dc.description | Niksa, S., Rapid coal devolatilization as an equilibrium flash distillation (1988) AIChE J, 34, pp. 790-802 | |
dc.description | Solomon, P.R., Colket, M.B., (1979) Seventeenth symposium (international) on combustion, , The Combustion Institute, Pittsburgh (PA) p. 131 | |
dc.description | Solomon, P.R., Serio, M.A., Carangelo, R.M., Markham, J.R., Very rapid coal pyrolysis (1986) Fuel, 65, pp. 182-193 | |
dc.description | Serio, M.A., Hamblen, D.G., Markham, J.R., Solomon, P.R., Kinetics of volatile evolution in coal pyrolysis: experiment and theory (1987) Energy Fuels, 1, pp. 138-152 | |
dc.description | Solomon, P.R., Hamblen, D.G., Carangelo, R.M., Serio, M.A., Deshpande, G.V., General model of coal devolatilization (1988) Energy Fuels, 2, pp. 405-422 | |
dc.description | Nienow, A.W., Rowe, P.N., Cheung, L.Y.L., The mixing/segregation behaviour of a dense powder with two sizes of a lighter one in a gas fluidised bed (1978) Fluidization, p. 146. , Davidson J.F., and Keairns D.L. (Eds), Cambridge University Press, Cambridge | |
dc.description | Bouillard, J.X., Lyczkowski, R.W., Folga, S., Gidaspow, D., Berry, G.F., Hydrodynamics of erosion of heat exchanger tubes in fluidised bed combustors (1989) Canad J Chem Eng, 67, pp. 218-229 | |
dc.description | Bouillard, J.X., Lyczkowski, R.M., On the erosion of heat exchanger tube banks in bed-bed combustors (1991) Powder Technol, 68, pp. 37-51 | |
dc.description | Wen, C.Y., Chen, L.H., Fluidised bed freeboard phenomena: entrainment and elutriation (1982) AIChE J, 28, p. 117 | |
dc.description | Geldart, D., (1986) Gas fluidization technology, , Wiley, Chichester, UK | |
dc.description | | |
dc.language | en | |
dc.publisher | | |
dc.relation | Fuel | |
dc.rights | fechado | |
dc.source | Scopus | |
dc.title | A New Version Of Csfb, Comprehensive Simulator For Fluidised Bed Equipment | |
dc.type | Artículos de revistas | |