Crossref Citations
This article has been cited by the following publications. This list is generated based on data provided by CrossRef.
Mo, Ziwei
Fu, Hui-Zhen
and
Ho, Yuh-Shan
2018.
Highly cited articles in wind tunnel-related research: a bibliometric analysis.
Environmental Science and Pollution Research,
Vol. 25,
Issue. 16,
p.
15541.
O'Brien, Patrick
and
McKenna Neuman, Cheryl
2018.
An experimental study of the dynamics of saltation within a three-dimensional framework.
Aeolian Research,
Vol. 31,
Issue. ,
p.
62.
Xiao, Fengjun
Dong, Zhibao
Guo, Liejin
Wang, Yueshe
and
Li, Debiao
2017.
Sand particle lift-off velocity measurements and numerical simulation of mass flux distributions in a wind tunnel.
Journal of Arid Land,
Vol. 9,
Issue. 3,
p.
331.
Zhang, ZhengCai
Dong, ZhiBao
and
Qian, GuangQiang
2017.
Field observations of the vertical distribution of sand transport characteristics over fine, medium and coarse sand surfaces.
Earth Surface Processes and Landforms,
Vol. 42,
Issue. 6,
p.
889.
van Hout, René
2017.
Particles in Wall-Bounded Turbulent Flows: Deposition, Re-Suspension and Agglomeration.
Vol. 571,
Issue. ,
p.
37.
Sullivan, R.
and
Kok, J. F.
2017.
Aeolian saltation on Mars at low wind speeds.
Journal of Geophysical Research: Planets,
Vol. 122,
Issue. 10,
p.
2111.
Martin, Raleigh L.
and
Kok, Jasper F.
2017.
Wind-invariant saltation heights imply linear scaling of aeolian saltation flux with shear stress.
Science Advances,
Vol. 3,
Issue. 6,
p.
e1602569.
Comola, Francesco
and
Lehning, Michael
2017.
Energy- and momentum-conserving model of splash entrainment in sand and snow saltation.
Geophysical Research Letters,
Vol. 44,
Issue. 3,
p.
1601.
Gu, Zhaolin
and
Wei, Wei
2017.
Electrification of Particulates in Industrial and Natural Multiphase flows.
p.
117.
Tanabe, Takahiro
Shimada, Takashi
Ito, Nobuyasu
and
Nishimori, Hiraku
2017.
Splash detail due to a single grain incident on a granular bed.
Physical Review E,
Vol. 95,
Issue. 2,
Sun, Wenhai
and
Huang, Ning
2017.
Influence of slope gradient on the behavior of saltating sand particles in a wind tunnel.
CATENA,
Vol. 148,
Issue. ,
p.
145.
Oger, Luc
Valance, Alexandre
Radjai, F.
Nezamabadi, S.
Luding, S.
and
Delenne, J.Y.
2017.
Model of the saltation transport by Discrete Element Method coupled with wind interaction.
EPJ Web of Conferences,
Vol. 140,
Issue. ,
p.
12004.
Schmerler, Erez
Katra, Itzhak
Kok, Jasper F.
Tsoar, Haim
and
Yizhaq, Hezi
2016.
Experimental and numerical study of Sharp’s shadow zone hypothesis on sand ripple wavelength.
Aeolian Research,
Vol. 22,
Issue. ,
p.
37.
Zhang, Yang
Wang, Yuan
Yang, Bin
Jia, Pan
and
Lancaster, Nick
2016.
Measurement of sand creep on a flat sand bed using a high-speed digital camera: Mesoscopic features of creeping grains.
Sedimentology,
Vol. 63,
Issue. 3,
p.
629.
Újvári, Gábor
Kok, Jasper F.
Varga, György
and
Kovács, János
2016.
The physics of wind-blown loess: Implications for grain size proxy interpretations in Quaternary paleoclimate studies.
Earth-Science Reviews,
Vol. 154,
Issue. ,
p.
247.
Lü, Ping
Dong, Zhibao
and
Ma, Xiaoming
2016.
Aeolian sand transport above three desert surfaces in northern China with different characteristics (shifting sand, straw checkerboard, and gravel): field observations.
Environmental Earth Sciences,
Vol. 75,
Issue. 7,
Raffaele, Lorenzo
Bruno, Luca
Pellerey, Franco
and
Preziosi, Luigi
2016.
Windblown sand saltation: A statistical approach to fluid threshold shear velocity.
Aeolian Research,
Vol. 23,
Issue. ,
p.
79.
Landázuri, Andrea C.
Sáez, A. Eduardo
and
Anthony, T. Renée
2016.
Three-dimensional computational fluid dynamics modeling of particle uptake by an occupational air sampler using manually-scaled and adaptive grids.
Journal of Aerosol Science,
Vol. 95,
Issue. ,
p.
54.
O’Brien, Patrick
and
McKenna Neuman, Cheryl
2016.
PTV measurement of the spanwise component of aeolian transport in steady state.
Aeolian Research,
Vol. 20,
Issue. ,
p.
126.
Navarro-Medina, Fermín
Perez-Grande, Isabel
and
Sanz-Andres, Angel
2015.
Comparative study of the effect of several trains on the rotation motion of ballast stones.
Proceedings of the Institution of Mechanical Engineers, Part F: Journal of Rail and Rapid Transit,
Vol. 229,
Issue. 1,
p.
71.