DRAG FORCE IN DENSE GAS—PARTICLE TWO—PHASE FLOW
Numerical simulations of flow over a stationary particle in a dense gas-particle two-phase flow have been carried out for small Reynolds numbers (leas than 100). In order to study theinfluence of the particles interaction on the drag force, three particle arrangements have been tested: asingle parti...
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| Published in | Acta mechanica Sinica Vol. 19; no. 3; pp. 228 - 234 |
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| Main Author | |
| Format | Journal Article |
| Language | English |
| Published |
01.06.2003
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| Subjects | |
| Online Access | Get full text |
| ISSN | 0567-7718 1614-3116 |
| DOI | 10.1007/BF02484484 |
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| Abstract | Numerical simulations of flow over a stationary particle in a dense gas-particle two-phase flow have been carried out for small Reynolds numbers (leas than 100). In order to study theinfluence of the particles interaction on the drag force, three particle arrangements have been tested: asingle particle, two particles placed in the flow direction and many particles located regularly in the flowfield. The Navier-Stokes equations are discretized in the three-dimensional space using finite volumemethod. For the first and second cases, the numerical results agree reasonably well with the data inliterature. For the third case, i.e., the multiparticle case, the influence of the particle volume fractionand Reynolds numbers on the drag force has been investigated. The results show that the computationalvalues of the drag ratio agree approximately with the published results at higher Reynolds numbers(from 34.2 to 68.4), but there is a large difference between them at small Reynolds numbers. |
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| AbstractList | Numerical simulations of flow over a stationary particle in a dense gas-particle two-phase flow have been carried out for small Reynolds numbers (leas than 100). In order to study theinfluence of the particles interaction on the drag force, three particle arrangements have been tested: asingle particle, two particles placed in the flow direction and many particles located regularly in the flowfield. The Navier-Stokes equations are discretized in the three-dimensional space using finite volumemethod. For the first and second cases, the numerical results agree reasonably well with the data inliterature. For the third case, i.e., the multiparticle case, the influence of the particle volume fractionand Reynolds numbers on the drag force has been investigated. The results show that the computationalvalues of the drag ratio agree approximately with the published results at higher Reynolds numbers(from 34.2 to 68.4), but there is a large difference between them at small Reynolds numbers. |
| Author | 由长福 祁海鹰 徐旭常 |
| AuthorAffiliation | StateKeyLab.ofCleanCombustionofCoal,TsinghuaUniversity,Beijing100084,China |
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| CitedBy_id | crossref_primary_10_1016_j_cej_2016_05_139 crossref_primary_10_1021_ie049387v crossref_primary_10_1016_j_partic_2010_02_002 crossref_primary_10_1016_j_partic_2019_10_004 crossref_primary_10_1016_j_jcp_2018_09_037 crossref_primary_10_1021_acs_energyfuels_8b03545 |
| Cites_doi | 10.1016/0301-9322(82)90008-8 10.1016/0301-9322(94)90011-6 10.1002/aic.690250513 10.1017/S0022112093000229 10.1021/ie50534a033 10.1016/S0169-5983(99)00040-4 10.1016/0301-9322(94)90009-4 10.1021/i100010a008 10.1016/S0045-7825(00)00164-X 10.1016/0301-9322(95)00070-4 |
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| References | J Happel (BF02484484_CR7) 1954; 46 RD Felice (BF02484484_CR16) 1994; 20 CY Wen (BF02484484_CR8) 1966; 62 L Kim (BF02484484_CR11) 1993; 246 D Gidaspow (BF02484484_CR10) 1983; 22 SV Patankar (BF02484484_CR14) 1980 SC Liang (BF02484484_CR5) 1996; 22 M Ishii (BF02484484_CR9) 1979; 25 C Zhu (BF02484484_CR4) 1994; 20 H Schlichting (BF02484484_CR15) 1979 S Ergun (BF02484484_CR6) 1952; 48 PN Rowe (BF02484484_CR1) 1961; 39 KC Lee (BF02484484_CR2) 1979; 30 SS Lee (BF02484484_CR12) 2000; 27 Y Tsuji (BF02484484_CR3) 1982; 8 HG Choi (BF02484484_CR13) 2000; 190 |
| References_xml | – volume: 8 start-page: 71 year: 1982 ident: BF02484484_CR3 publication-title: Int J Multiphase Flow doi: 10.1016/0301-9322(82)90008-8 – volume: 30 start-page: 371 year: 1979 ident: BF02484484_CR2 publication-title: Aerosp Q – volume: 20 start-page: 153 issue: 1 year: 1994 ident: BF02484484_CR16 publication-title: Int J Multiphase Flow doi: 10.1016/0301-9322(94)90011-6 – volume: 25 start-page: 843 issue: 5 year: 1979 ident: BF02484484_CR9 publication-title: AICHE J doi: 10.1002/aic.690250513 – volume: 39 start-page: 43 year: 1961 ident: BF02484484_CR1 publication-title: Trans Instn Chem Engrs – volume: 246 start-page: 465 year: 1993 ident: BF02484484_CR11 publication-title: J Fluid Mech doi: 10.1017/S0022112093000229 – volume: 48 start-page: 89 year: 1952 ident: BF02484484_CR6 publication-title: Chem Eng Prog – volume: 46 start-page: 1187 issue: 6 year: 1954 ident: BF02484484_CR7 publication-title: Industrial and Engineering Chemistry doi: 10.1021/ie50534a033 – volume: 27 start-page: 1 year: 2000 ident: BF02484484_CR12 publication-title: Fluid Dynamics Research doi: 10.1016/S0169-5983(99)00040-4 – volume-title: Numerical Heat Transfer and Fluid Flow year: 1980 ident: BF02484484_CR14 – volume: 20 start-page: 117 year: 1994 ident: BF02484484_CR4 publication-title: Int J Multiphase Flow doi: 10.1016/0301-9322(94)90009-4 – volume: 22 start-page: 193 issue: 2 year: 1983 ident: BF02484484_CR10 publication-title: Ind Eng Chem Fundam doi: 10.1021/i100010a008 – volume: 190 start-page: 1367 year: 2000 ident: BF02484484_CR13 publication-title: Computer Methods in Applied Mechanics and Engineering doi: 10.1016/S0045-7825(00)00164-X – volume-title: Boundary Layer Theory year: 1979 ident: BF02484484_CR15 – volume: 62 start-page: 100 year: 1966 ident: BF02484484_CR8 publication-title: Chem Eng Prog Sump Serie – volume: 22 start-page: 285 year: 1996 ident: BF02484484_CR5 publication-title: Int J Multiphase Flow doi: 10.1016/0301-9322(95)00070-4 |
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| SubjectTerms | 两相流 多相流 密集气体粒子 数值模拟 流体力学 粒子相互作用 |
| Title | DRAG FORCE IN DENSE GAS—PARTICLE TWO—PHASE FLOW |
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