Crossref Citations
This article has been cited by the following publications. This list is generated based on data provided by
Crossref.
Ambruş, Victor Eugen
and
Sofonea, Victor
2014.
Implementation of diffuse-reflection boundary conditions using lattice Boltzmann models based on half-space Gauss-Laguerre quadratures.
Physical Review E,
Vol. 89,
Issue. 4,
Machado, Raúl
2014.
On the moment system and a flexible Prandtl number.
Modern Physics Letters B,
Vol. 28,
Issue. 06,
p.
1450048.
Meng, Jianping
and
Zhang, Yonghao
2014.
Diffuse reflection boundary condition for high-order lattice Boltzmann models with streaming–collision mechanism.
Journal of Computational Physics,
Vol. 258,
Issue. ,
p.
601.
Chaudhri, Anuj
Bell, John B.
Garcia, Alejandro L.
and
Donev, Aleksandar
2014.
Modeling multiphase flow using fluctuating hydrodynamics.
Physical Review E,
Vol. 90,
Issue. 3,
Meng, Jianping
Zhang, Yonghao
and
Reese, Jason M.
2015.
Numerical Simulation of Rarefied Gas Flows with Specified Heat Flux Boundary Conditions.
Communications in Computational Physics,
Vol. 17,
Issue. 5,
p.
1185.
Norouzi, Ali
and
Esfahani, Javad Abolfazli
2015.
Two relaxation time lattice Boltzmann equation for high Knudsen number flows using wall function approach.
Microfluidics and Nanofluidics,
Vol. 18,
Issue. 2,
p.
323.
Li, Zhi-Hui
Peng, Ao-Ping
Zhang, Han-Xin
and
Yang, Jaw-Yen
2015.
Rarefied gas flow simulations using high-order gas-kinetic unified algorithms for Boltzmann model equations.
Progress in Aerospace Sciences,
Vol. 74,
Issue. ,
p.
81.
Li, Jonathan
Liu, Haihu
Ioannou, Nikolaos
Zhang, Yonghao
and
Reese, Jason M.
2015.
Lattice Boltzmann Simulations of Thermocapillary Motion of Droplets in Microfluidic Channels.
Communications in Computational Physics,
Vol. 17,
Issue. 5,
p.
1113.
Chen, Songze
Xu, Kun
and
Cai, Qingdong
2015.
A Comparison and Unification of Ellipsoidal Statistical and Shakhov BGK Models.
Advances in Applied Mathematics and Mechanics,
Vol. 7,
Issue. 2,
p.
245.
Di Staso, G.
Clercx, H.J.H.
Succi, S.
and
Toschi, F.
2016.
DSMC–LBM mapping scheme for rarefied and non-rarefied gas flows.
Journal of Computational Science,
Vol. 17,
Issue. ,
p.
357.
Di Staso, G.
Clercx, H. J. H.
Succi, S.
and
Toschi, F.
2016.
Lattice Boltzmann accelerated direct simulation Monte Carlo for dilute gas flow simulations.
Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences,
Vol. 374,
Issue. 2080,
p.
20160226.
Zhao, Jianlin
Yao, Jun
Zhang, Lei
Sui, Hongguang
and
Zhang, Min
2016.
Pore-scale simulation of shale gas production considering the adsorption effect.
International Journal of Heat and Mass Transfer,
Vol. 103,
Issue. ,
p.
1098.
Watari, Minoru
2016.
Is the Lattice Boltzmann Method Applicable to Rarefied Gas Flows? Comprehensive Evaluation of the Higher-Order Models.
Journal of Fluids Engineering,
Vol. 138,
Issue. 1,
Succi, Sauro
2016.
Lattice Boltzmann beyond Navier-Stokes: Where do we stand?.
Vol. 1786,
Issue. ,
p.
030001.
Yasuoka, Haruka
Kaneda, Masayuki
and
Suga, Kazuhiko
2016.
Thermal lattice Boltzmann method for complex microflows.
Physical Review E,
Vol. 94,
Issue. 1,
Nassios, Jason
Yap, Ying Wan
and
Sader, John E.
2016.
Flow generated by oscillatory uniform heating of a rarefied gas in a channel.
Journal of Fluid Mechanics,
Vol. 800,
Issue. ,
p.
433.
Peng, Ao-Ping
Li, Zhi-Hui
Wu, Jun-Lin
and
Jiang, Xin-Yu
2016.
Implicit gas-kinetic unified algorithm based on multi-block docking grid for multi-body reentry flows covering all flow regimes.
Journal of Computational Physics,
Vol. 327,
Issue. ,
p.
919.
Ambruş, Victor E.
and
Sofonea, Victor
2016.
Application of mixed quadrature lattice Boltzmann models for the simulation of Poiseuille flow at non-negligible values of the Knudsen number.
Journal of Computational Science,
Vol. 17,
Issue. ,
p.
403.
Yang, L.M.
Shu, C.
Wu, J.
and
Wang, Y.
2016.
Numerical simulation of flows from free molecular regime to continuum regime by a DVM with streaming and collision processes.
Journal of Computational Physics,
Vol. 306,
Issue. ,
p.
291.
Ambruş, Victor E.
and
Sofonea, Victor
2016.
Lattice Boltzmann models based on half-range Gauss–Hermite quadratures.
Journal of Computational Physics,
Vol. 316,
Issue. ,
p.
760.