Computing radial packing properties from the distribution of particle centers

The relationship between the distribution of particle centers in random beds of uniformly sized spheres and radial properties, in particular radial voidage profiles, is undertaken in this work. To this end, closed expressions for six geometrical quantities related to the intersection of spheres with...

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Autor principal: Mariani, N.J
Otros Autores: Martínez, O.M, Barreto, G.F
Formato: Capítulo de libro
Lenguaje:Inglés
Publicado: 2001
Acceso en línea:Registro en Scopus
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030 |a CESCA 
100 1 |a Mariani, N.J. 
245 1 0 |a Computing radial packing properties from the distribution of particle centers 
260 |c 2001 
270 1 0 |m Barreto, G.F.; Facultad de Ingeniería, Departamento Ingenieria Quimica, Universidad Nacional de La Plata, Calle 47 No. 257, La Plata 1900, Argentina; email: barreto@quimica.unlp.edu.ar 
506 |2 openaire  |e Política editorial 
504 |a Benenatti, R.F., Brosilov, C.B., Void fraction distribution in bed of spheres (1962) American Institute of Chemical Engineers Journal, 8 (3), pp. 359-361 
504 |a Bey, O., Eigenberger, G., Fluid flow through catalyst filled tubes (1997) Chemical Engineering Science, 52, pp. 1365-1376 
504 |a Cybulski, A., Eigenberger, G., Stainkiewicz, A., Operational and structural nonidealities in modelling and design multitubular catalytic reactors (1997) Industrial and Engineering Chemistry Research, 36, pp. 3140-3148 
504 |a Delmas, H., Froment, G.F., A simulation model accounting for structural radial nonuniformities in fixed beds reactors (1988) Chemical Engineering Science, 43, pp. 2281-2287 
504 |a Dixon, A.G., Welch, G.J., A structure-based model for heat transfer in low dt/dp fixed-bed reactor tubes (1987) The American Institute of Chemical Engineers Annual Meeting, , New York, USA 
504 |a Giese, M., Rottschäfer, K., Vortmeyer, D., Measured and modelled superficial flow profiles in packed beds with liquid flow (1998) American Institute of Chemical Engineers Journal, 44, pp. 484-490 
504 |a Govindarao, V.M.H., Froment, G.F., Voidage profiles in packed beds of spheres (1986) Chemical Engineering Science, 41, pp. 533-539 
504 |a Govindarao, V.M.H., Ramrao, K.V.S., Prediction of location of particles in the wall region of a randomly packed bed of spheres (1988) Chemical Engineering Science, 43, pp. 2544-2545 
504 |a Govindarao, V.M.H., Ramrao, K.V.S., Rao, A.V.S., Structural characteristics of packed beds of low aspect ratio (1992) Chemical Engineering Science, 47, pp. 2105-2109 
504 |a Kubie, J., Influence of containing walls on the distribution of voidage in packed beds of uniform spheres (1988) Chemical Engineering Science, 43, pp. 1403-1405 
504 |a Küfner, R., Hofmann, H., Implementation of radial porosity and velocity distribution in a reactor model for heterogeneous catalytic gas-phase reactions (torus-model) (1990) Chemical Engineering Science, 45, pp. 2141-2146 
504 |a Legawiec, B., Ziólkowski, D., Structure, voidage and effective thermal conductivity of solids within near-wall region of beds packed with spherical pellets in tubes (1994) Chemical Engineering Science, 49, pp. 2513-2520 
504 |a Mariani, N.J., Mazza, G.D., Martinez, O.M., Barreto, G.F., The distribution of particles in cylindrical packed beds (1998) Trends in Heat, Mass and Momentum Transfer, 4, pp. 95-114 
504 |a Mariani, N.J., Mazza, G.D., Martinez, O.M., Barreto, G.F., Evaluation of radial voidage profile in packed beds of low aspect ratios (2000) The Canadian Journal of Chemical Engineering, 78, pp. 1133-1137 
504 |a Mueller, G.E., Radial void fraction distributions in randomly packed fixed beds of uniformly sized spheres in cylindrical containers (1992) Powder Technology, 72, pp. 269-275 
504 |a Mueller, G.E., A radial void fraction correlation for packed bed tubes (1999) The Canadian Journal of Chemical Engineering, 77, pp. 132-135 
504 |a Papageorgiou, J.N., Froment, G.F., Simulation models accounting for radial voidage profiles in fixed-bed reactors (1995) Chemical Engineering Science, 50, pp. 3043-3056 
504 |a Press, W.H., Teukolsky, S.A., Vetterling, W.T., Flannery, B.P., (1992) Numerical Recipes in Fortran, , (2nd ed.). Cambridge, United Kingdom: Cambridge University Press 
504 |a Ridgway, K., Tarbuck, K.J., Voidage fluctuations in randomly-packed beds of spheres adjacent to a containing wall (1968) Chemical Engineering Science, 23, pp. 1147-1155 
504 |a Singleton, F.D., (1971) Dispersion of Mass in Packed Beds, , Ph.D. dissertation, University of Rochester 
504 |a Subagyo, S., Standish, N., Brooks, G.A., A new model of velocity distribution of a single-phase fluid flowing in packed beds (1998) Chemical Engineering Science, 53, pp. 1375-1385 
504 |a Toye, D., Marchot, P., Crine, M., Pelsser, A.M., L'Homme, G., Local measurements of void fraction and liquid holdup in packed columns using X-ray computed tomography (1998) Chemical Engineering and Processing, 37, pp. 511-520 
504 |a Winterberg, M., Tsotsas, E., Krischke, A., Vortmeyer, D., A simple and coherent set of coefficients for modelling of heat and mass transport with and without chemical reaction in tubes filled with spheres (2000) Chemical Engineering Science, 55, pp. 967-979 
520 3 |a The relationship between the distribution of particle centers in random beds of uniformly sized spheres and radial properties, in particular radial voidage profiles, is undertaken in this work. To this end, closed expressions for six geometrical quantities related to the intersection of spheres with cylindrical surfaces are presented. The relations to compute radial properties are then expressed in terms of those geometrical quantities and it is shown that for realistic types of particle center distribution, the calculations can be carried out without resorting to simplifying assumptions or numerical integration. The significance of radial profiles of particle surface area is also discussed. © 2001 Elsevier Science Ltd. All rights reserved.  |l eng 
593 |a Facultad De Ingeniería, Departamento De Ingeniería Química, Universidad Nacional De La Plata, Calle 47 No. 257, CC 59, 1900 La Plata, Argentina 
593 |a Pinmate, Facultad De Ciencias Exactas Y Naturales, Ciudad Universitaria, Buenos Aires, Argentina 
593 |a Centro De Investigación Y Desarrollo En Procesos Catalíticos (CINDECA), CONICET-Universidad Nacional De La Plata, Calle 47 No. 257, CC 59, CP B1900AJK, La Plata, Argentina 
593 |a Facultad De Ingeniería, Departamento De Ingeniería Química, Universidad Nacional De La Plata, Calle 47 No. 257, CC 59, 1900 La Plata, Argentina 
690 1 0 |a ASPECT RATIO 
690 1 0 |a PACKED BED STRUCTURE 
690 1 0 |a PARTICLE DISTRIBUTION 
690 1 0 |a PARTICLE SURFACE AREA 
690 1 0 |a VOIDAGE PROFILE 
690 1 0 |a CALCULATIONS 
690 1 0 |a INTEGRATION 
690 1 0 |a PACKING 
690 1 0 |a SPHERES 
690 1 0 |a SURFACE AREAS 
690 1 0 |a CHEMICAL ENGINEERING 
690 1 0 |a ASPECT RATIO 
690 1 0 |a PACKED BED 
690 1 0 |a PACKING 
690 1 0 |a VOID 
700 1 |a Martínez, O.M. 
700 1 |a Barreto, G.F. 
773 0 |d 2001  |g v. 56  |h pp. 5693-5707  |k n. 20  |p Chem. Eng. Sci.  |x 00092509  |w (AR-BaUEN)CENRE-291  |t Chemical Engineering Science 
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