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Numerical simulations of nano-particle's drag forces using DSMC method for various Knudsen numbersNumerical simulations of nano-particle’s drag forces using DSMC method for various Knudsen numbers

Other Titles
Numerical simulations of nano-particle’s drag forces using DSMC method for various Knudsen numbers
Authors
Shin, Sang WooLee, Sang Hwan
Issue Date
Sep-2022
Publisher
KOREAN SOC MECHANICAL ENGINEERS
Keywords
Compute unified device architecture (CUDA); Direct simulation Monte Carlo (DSMC) method; Drag force; High-vacuum; Knudsen number; Lagrangian method; Nano-particles
Citation
JOURNAL OF MECHANICAL SCIENCE AND TECHNOLOGY, v.36, no.9, pp.4649 - 4657
Indexed
SCIE
SCOPUS
KCI
Journal Title
JOURNAL OF MECHANICAL SCIENCE AND TECHNOLOGY
Volume
36
Number
9
Start Page
4649
End Page
4657
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/185270
DOI
10.1007/s12206-022-0826-y
ISSN
1738-494X
Abstract
In this study, high-vacuum flow was analyzed using the direct simulation Monte Carlo (DSMC) method, and various forces acting on fine particles in a high-vacuum flow field were studied. The DSMC method is a Lagrangian method that models the flow as particles and analyzes the collisions and behaviors of each particle, which costs a large computing resource. To validate DSMC method, computational results of a Poiseuille flow in microchannel are compared with analytical results. In addition, the force acting on the particles in the high-vacuum rarefied gas region was verified using the outputs of previous studies. Through this numerical analysis, it is possible to analyze about regions that are difficult to proceed with experiments. As a result, the drag forces according to the Knudsen number which indicates the ratio of vacuum and the particle size, it was confirmed that the drag force can be predicted through the empirical formula of previous studies.
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COLLEGE OF ENGINEERING (SCHOOL OF MECHANICAL ENGINEERING)
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