Euler-Lagrange Simulation of Fine Particle Discharge Rate under Accelerated Air Ventilation Circumstances

Author:

WANG Zhilong,ZHAO Tong,LIU Kai,TAKEI Masahiro

Publisher

The Japanese Society for Multiphase Flow

Subject

General Medicine

Reference23 articles.

1. [1] Hu, X., Wang, B., Fan, B., Xu, Z., Chang J., Research on KMC-based Evolution Simulation of Dust Particles in Virtual Campus Environment, Simulation Modelling Practice and Theory, Vol.40, 28-38 (2014).

2. [2] Wang, X. R., Oliver Gao, H., Exposure to Fine Particle Mass and Number Concentrations in Urban Transportation Environments of New York City, Transportation Research Part D: Transport and Environment, Vol. 16(5), 384-391(2011).

3. [3] Ge, Q., Li, X., Inthavong, K., Tu, J. Y., Numerical Study of the Effects of Human Body Heat on Particle Transport and Inhalation in Indoor Environment, Building and Environment, Vol. 59 , 1-9 (2013).

4. [4] Abdelghany, E., El-Qada, E., & Magdy, Y., Discharge Rates of Micro-Size Fine Powders From a Semi-Batch Circulating Fluidized Bed of Binary Particles Under Different Humidification Conditions, Powder Technology, Vol. 244, 1-8 (2013).

5. [5] Gidaspow, D., Multiphase Flow and Fluidization: Continuum and Kinetic Theory Descriptions, Academic Press, London (1994).

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