Publicou 12 edições por ano
ISSN Imprimir: 1044-5110
ISSN On-line: 1936-2684
Indexed in
MOLECULAR DYNAMICS SIMULATIONS OF ATOMIZATION AND SPRAY PHENOMENA
RESUMO
This article reviews the use of molecular dynamics to simulate a wide variety of physical phenomena relevant to droplet vaporization and atomization for both atomic and molecular species. These include both subcritical and supercritical droplet vaporization and mixture effects on the liquid-phase critical point. Droplet formation, collisions, coalescence, and breakup have also been simulated naturally, without any ad-hoc assumptions or the need to track phase boundaries. Finally, all molecular dynamics simulations of liquid flows have reproduced the results given by the solution of the Navier-Stokes equations.
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Benson Craig M., Zhong Jiaqiang, Gimelshein Sergey F., Levin Deborah A., Montaser Akbar, Simulation of droplet heating and desolvation in inductively coupled plasma—part II: coalescence in the plasma, Spectrochimica Acta Part B: Atomic Spectroscopy, 58, 8, 2003. Crossref
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Benson Craig M., Levin Deborah A., Zhong Jiaqiang, Gimelshein Sergey F., Montaser Akbar, Kinetic Model for Simulation of Aerosol Droplets in High-Temperature Environments, Journal of Thermophysics and Heat Transfer, 18, 1, 2004. Crossref
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Kumar S Santosh, He Zilong, Hogan Christopher J, Fredericks Steven A, Hong Jiarong, Evaluation of laser diffraction-based particle size measurements using digital inline holography, Measurement Science and Technology, 31, 12, 2020. Crossref
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Wei Wu, Zhou Tingyu, Zhao Lun, Deng Lei, Xie Maozhao, A molecular dynamics investigation on fuel vaporization and mixing characteristics under sub/supercritical conditions, Thermal Science, 26, 4 Part B, 2022. Crossref