Numerical Issues for Solving Eu-type Generalized Hydrodynamic Equations to Investigate Continuum-rarefied Gas Flows
Author:
Publisher
Springer Science and Business Media LLC
Subject
Multidisciplinary
Link
http://www.nature.com/articles/s41598-018-36431-y.pdf
Reference21 articles.
1. Shahabi, V., Baier, T., Roohi, E. & Hardt, S. Thermally induced gas flows in ratchet channels with diffuse and specular boundaries. Sci. Reports 7 (2017).
2. Roohi, E., Stefanov, S., Shoja-Sani, A. & Ejraei, H. A generalized form of the bernoulli trial collision scheme in dsmc: Derivation and evaluation. J. Comput. Phys. 354, 476–492 (2018).
3. Goshayeshi, B., Roohi, E. & Stefanov, S. Dsmc simulation of hypersonic flows using an improved sbt-tas technique. J. Comput. Phys. 303, 28–44 (2015).
4. Zhang, P., Hu, L., Meegoda, J. N. & Gao, S. Micro/nano-pore network analysis of gas flow in shale matrix. Sci. reports 5, 13501 (2015).
5. Zhao, J. et al. Study of gas flow characteristics in tight porous media with a microscale lattice boltzmann model. Sci. Reports 6 (2016).
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