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题名

Effects of turbulence modulation and gravity on particle collision statistics

作者
通讯作者Rosa,Bogdan
发表日期
2020-08-01
DOI
发表期刊
ISSN
0301-9322
EISSN
1879-3533
卷号129
摘要

Dynamics of inertial particles in homogeneous isotropic turbulence is investigated by means of numerical simulations that incorporate the effect of two-way interphase momentum transfer. The continuous phase is solved in the Eulerian approach employing Direct Numerical Simulations (DNS). The dispersed phase is treated using the Lagrangian approach along with the point-particle assumption. The main focus is on computing collision statistics of inertial particles relevant to cloud droplets in typical atmospheric conditions. The vast majority of previous DNS were performed assuming one-way momentum coupling between continuous and dispersed phases. Such simplified approach is adequate only for dilute systems with relatively low mass loading. In this study we investigate the effect of two-way momentum coupling on the kinematic and dynamic collision statistics of the dispersed phase. A number of simulations have been performed at different droplet radii (inertia), mass loading, viscosity and energy dissipation rate. To assess the accuracy of numerical approach the coupling force (exerted by particles on the fluid) was computed using two different techniques, namely particle in cell and projection onto neighboring node. To address the effect of gravity, the simulations have been carried out simultaneously both with and without gravitational acceleration. It has been found that the effect of two-way coupling is significant both for droplet clustering and the radial relative velocity. It turns out that the collision kernel is more sensitive to the particle mass loading when the gravitational acceleration is considered. The collision kernel of settling droplets increases as the droplet mass loading increases. This is direct consequence of larger radial relative velocity. For non-settling droplets the effect of mass loading is opposite, namely, we observe a minor reduction of the collision kernel as the number of droplets increases.

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相关链接[Scopus记录]
收录类别
SCI ; EI
语种
英语
学校署名
其他
资助项目
National Science Centre, Poland[2017/27/B/ST8/00555] ; Interdisciplinary Centre for Mathematical and Computational Modeling (ICM) at Warsaw University[GA73-14] ; National Natural Science Foundation of China[11961131006][91852205][91741101] ; U.S. National Science Foundation[CNS1513031][CBET-1706130]
WOS研究方向
Mechanics
WOS类目
Mechanics
WOS记录号
WOS:000543375600019
出版者
EI入藏号
20202108685088
EI主题词
Acceleration ; Direct numerical simulation ; Drops ; Energy dissipation ; Momentum ; Momentum transfer ; Gravitation ; Lagrange multipliers ; Numerical models
EI分类号
Energy Losses (industrial and residential):525.4 ; Fluid Flow, General:631.1 ; Computer Applications:723.5 ; Mathematics:921 ; Mechanics:931.1 ; Gravitation, Relativity and String Theory:931.5 ; High Energy Physics; Nuclear Physics; Plasma Physics:932
ESI学科分类
ENGINEERING
Scopus记录号
2-s2.0-85084836865
来源库
Scopus
引用统计
被引频次[WOS]:13
成果类型期刊论文
条目标识符http://sustech.caswiz.com/handle/2SGJ60CL/137868
专题工学院_力学与航空航天工程系
作者单位
1.Institute of Meteorology and Water Management,National Research Institute,Warsaw,61 Podlesna Street,01–673,Poland
2.Institute of Fluid Flow Machinery,Polish Academy of Sciences,Gdansk,14 Fiszera Street,80–231,Poland
3.Department of Mechanical Engineering,University of Delaware,Newark,19716-3140,United States
4.Center for Complex Flows and Soft Matter Research and Department of Mechanics and Aerospace Engineering,Southern University of Science and Technology,Shenzhen,518055,China
推荐引用方式
GB/T 7714
Rosa,Bogdan,Pozorski,Jacek,Wang,Lian Ping. Effects of turbulence modulation and gravity on particle collision statistics[J]. INTERNATIONAL JOURNAL OF MULTIPHASE FLOW,2020,129.
APA
Rosa,Bogdan,Pozorski,Jacek,&Wang,Lian Ping.(2020).Effects of turbulence modulation and gravity on particle collision statistics.INTERNATIONAL JOURNAL OF MULTIPHASE FLOW,129.
MLA
Rosa,Bogdan,et al."Effects of turbulence modulation and gravity on particle collision statistics".INTERNATIONAL JOURNAL OF MULTIPHASE FLOW 129(2020).
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133.Rosa_etal_IJMF_2(27133KB)----限制开放--
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