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Pseudo—particle simulation of multi—scale heterogeneity in fluidization
引用本文:GEWei ZHANGJiayuan LITinghua LIJinghai. Pseudo—particle simulation of multi—scale heterogeneity in fluidization[J]. 科学通报(英文版), 2003, 48(7): 634-636. DOI: 10.1007/BF03325644
作者姓名:GEWei ZHANGJiayuan LITinghua LIJinghai
作者单位:InstituteofProcessEngineering,ChineseAcademyofSciences,Beijing100080,China
基金项目:国家自然科学基金,国家重点基础研究发展计划(973计划) 
摘    要:Fluidization is a process of wide application,but its dynamic behavior is not well understood because of its multi-scale heterogeneity and regime multiplicity which are difficult to simulate in traditional numerical methods.By discretizing the fluid phase into a large number of interactive simple particles,which can incorporate many-body moving boundaries easily,pseudo-particle modeling(PPM) has re-produced reasonable radial and axial heterogeneity on macro-scale as well as solids clustering and fluid flows on meso-and micro-scales.The simulation suggestes a consistent evolution of the complexity across different scales with itself scrving as an ideal exploring tool.

关 键 词:流化作用 杂质 拟粒子模型化 粒子法 拟粒子仿真
收稿时间:2002-08-12
修稿时间:2002-12-04

Pseudo-particle simulation of multi-scale heterogeneity in fluidization
Wei Ge,Jiayuan Zhang,Tinghua Li,Jinghai Li. Pseudo-particle simulation of multi-scale heterogeneity in fluidization[J]. Chinese science bulletin, 2003, 48(7): 634-636. DOI: 10.1007/BF03325644
Authors:Wei Ge  Jiayuan Zhang  Tinghua Li  Jinghai Li
Affiliation:GE Wei, ZHANG Jiayuan, LI Tinghua & LI Jinghai Institute of Process Engineering, Chinese Academy of Sciences, Beijing 100080, China
Abstract:Fluidization is a process of wide application, but its dynamic behavior is not well understood because of its multi-scale heterogeneity and regime multiplicity which are difficult to simulate in traditional numerical methods. By discretizing the fluid phase into a large number of interactive simple particles, which can incorporate many-body moving boundaries easily, pseudo-particle modeling (PPM) has re-produced reasonable radial and axial heterogeneity on macro-scale as well as solids clustering and fluid flows on meso- and micro-scales. The simulation suggests a consistent evolution of the complexity across different scales with itself serving as an ideal exploring tool.
Keywords:cluster   fluidization   multi-scale   particle method   pseudo-particle modeling.
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