Molecular Dynamics Study of Gas–Surface Interactions in a Force-Driven Flow of Argon through a Rectangular Nanochannel. Kammara, K. K., Malaikannan, G., & Kumar, R. Nanoscale and Microscale Thermophysical Engineering, 20(2):121–136, Taylor & Francis, April, 2016.
Paper doi abstract bibtex 1 download In recent times, flows through micro- and nanochannels have gained prominence due to their applicability to the fast growing fields of micro- and nanotechnology among others. Understanding gas–surf...
@article{kammara2016,
title = {Molecular {Dynamics} {Study} of {Gas}–{Surface} {Interactions} in a {Force}-{Driven} {Flow} of {Argon} through a {Rectangular} {Nanochannel}},
volume = {20},
url = {https://www.tandfonline.com/doi/abs/10.1080/15567265.2016.1215364},
doi = {10.1080/15567265.2016.1215364},
abstract = {In recent times, flows through micro- and nanochannels have gained prominence due to their applicability to the fast growing fields of micro- and nanotechnology among others. Understanding gas–surf...},
number = {2},
journal = {Nanoscale and Microscale Thermophysical Engineering},
publisher = {Taylor \& Francis},
author = {Kammara, Kishore K. and Malaikannan, G. and Kumar, Rakesh},
month = apr,
year = {2016},
keywords = {Gas-surface interactions, Nano-Poiseuille flow, molecular dynamics method},
pages = {121--136},
}
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