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A unified EMMS-based constitutive law for heterogeneous gas-solid flow in CFB risers
He, Mingming1,2; Zhao, Bidan1,2; Wang, Junwu1,2,3
2020-11-02
Source PublicationCHEMICAL ENGINEERING SCIENCE
ISSN0009-2509
Volume225Pages:9
Abstract

Energy minimization multi-scale (EMMS) drag model has been demonstrated to be very successful in quantifying the effect of mesoscale structure on the effective interphase drag force of heterogeneous gas-solid flow in circulating fluidized bed (CFB) risers, however, a corresponding model for the effective particle phase stress is not yet available. To this end, an EMMS drag model was extended to predict the granular temperature of particles inside the dilute phase and the dense phase as well as the granular temperature of clusters. A model for the effective particle phase stress was then developed based on the concept of multiscale analysis in EMMS model. It was shown that the experimentally measured granular temperature, granular pressure and granular viscosity as a function of mean solid concentration can be predicted reasonably well. The agreement demonstrates its effectiveness in the quantification of the effect of mesoscale structure on the particle phase stress, thus establishing a unified EMMS-based model for the constitutive law of heterogeneous gas-solid flow in CFB risers. (C) 2020 Elsevier Ltd. All rights reserved.

KeywordMultiphase Flow Fluidization Gas-solid Flow Two-fluid Model Constitutive Law Particle Stress
DOI10.1016/j.ces.2020.115797
Language英语
WOS KeywordStructure-dependent Drag ; Kinetic-theory ; Fluidized-bed ; Eulerian Simulation ; Cluster Structure ; 2-fluid Model ; Fcc Particles ; Velocity ; Stresses ; Geldart
Funding ProjectNational Natural Science Foundation of China[11988102] ; National Natural Science Foundation of China[21908223] ; National Natural Science Foundation of China[21978295] ; Innovation Academy for Green Manufacture, Chinese Academy of Sciences[IAGM-2019-A13] ; Key Research Program of Frontier Science, Chinese Academy of Sciences[QYZDJ-SSW-JSC029] ; Transformational Technologies for Clean Energy and Demonstration, Strategic Priority Research Program of the Chinese Academy of Sciences[XDA21030700]
WOS Research AreaEngineering
WOS SubjectEngineering, Chemical
Funding OrganizationNational Natural Science Foundation of China ; Innovation Academy for Green Manufacture, Chinese Academy of Sciences ; Key Research Program of Frontier Science, Chinese Academy of Sciences ; Transformational Technologies for Clean Energy and Demonstration, Strategic Priority Research Program of the Chinese Academy of Sciences
WOS IDWOS:000568787700004
PublisherPERGAMON-ELSEVIER SCIENCE LTD
Citation statistics
Document Type期刊论文
Identifierhttp://ir.ipe.ac.cn/handle/122111/42092
Collection中国科学院过程工程研究所
Corresponding AuthorWang, Junwu
Affiliation1.Chinese Acad Sci, Inst Proc Engn, State Key Lab Multiphase Complex Syst, POB 353, Beijing 100190, Peoples R China
2.Univ Chinese Acad Sci, Sch Chem Engn, Beijing 100049, Peoples R China
3.Chinese Acad Sci, Innovat Acad Green Manufacture, Beijing 100190, Peoples R China
Recommended Citation
GB/T 7714
He, Mingming,Zhao, Bidan,Wang, Junwu. A unified EMMS-based constitutive law for heterogeneous gas-solid flow in CFB risers[J]. CHEMICAL ENGINEERING SCIENCE,2020,225:9.
APA He, Mingming,Zhao, Bidan,&Wang, Junwu.(2020).A unified EMMS-based constitutive law for heterogeneous gas-solid flow in CFB risers.CHEMICAL ENGINEERING SCIENCE,225,9.
MLA He, Mingming,et al."A unified EMMS-based constitutive law for heterogeneous gas-solid flow in CFB risers".CHEMICAL ENGINEERING SCIENCE 225(2020):9.
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