Crossref Citations
This article has been cited by the following publications. This list is generated based on data provided by
Crossref.
Marchenko, A.V.
1997.
Resonance interactions of waves in an ice channel.
Journal of Applied Mathematics and Mechanics,
Vol. 61,
Issue. 6,
p.
931.
YEUNG, R.W.
and
KIM, J.W.
2000.
EFFECTS OF A TRANSLATING LOAD ON A FLOATING PLATE—STRUCTURAL DRAG AND PLATE DEFORMATION.
Journal of Fluids and Structures,
Vol. 14,
Issue. 7,
p.
993.
Hosking, Roger J.
2000.
Approximate evaluation of integrals.
The ANZIAM Journal,
Vol. 42,
Issue. 1,
p.
110.
Bukatov, A. E.
and
Zharkov, V. V.
2005.
Hydrodynamic Pressure of Liquid in the Process of Motion of a Region of Constant Disturbances over the Floating Ice Cover.
Physical Oceanography,
Vol. 15,
Issue. 1,
p.
1.
Karmakar, D.
Bhattacharjee, J.
and
Sahoo, T.
2007.
Expansion formulae for wave structure interaction problems with applications in hydroelasticity.
International Journal of Engineering Science,
Vol. 45,
Issue. 10,
p.
807.
BONNEFOY, FÉLICIEN
MEYLAN, MICHAEL H.
and
FERRANT, PIERRE
2009.
Nonlinear higher-order spectral solution for a two-dimensional moving load on ice.
Journal of Fluid Mechanics,
Vol. 621,
Issue. ,
p.
215.
Kozin, V. M.
and
Pogorelova, A. V.
2009.
Effect of the viscosity properties of ICE on the deflection of an ICE sheet subjected to a moving load.
Journal of Applied Mechanics and Technical Physics,
Vol. 50,
Issue. 3,
p.
484.
Korobkin, Alexander
Părău, Emilian I.
and
Vanden-Broeck, Jean-Marc
2011.
The mathematical challenges and modelling of hydroelasticity.
Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences,
Vol. 369,
Issue. 1947,
p.
2803.
Părău, Emilian I.
and
Vanden-Broeck, Jean-Marc
2011.
Three-dimensional waves beneath an ice sheet due to a steadily moving pressure.
Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences,
Vol. 369,
Issue. 1947,
p.
2973.
Wang, Chong
Zhang, Zhi Hong
Miao, Tao
Yao, Jun
Zhang, Liao Yuan
and
Chen, Ke
2011.
Determination of Critical Speed in Ice Breaking by Air Cushion Vehicle.
Applied Mechanics and Materials,
Vol. 138-139,
Issue. ,
p.
529.
Vanden-Broeck, Jean-Marc
and
Părău, Emilian I.
2011.
Two-dimensional generalized solitary waves and periodic waves under an ice sheet.
Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences,
Vol. 369,
Issue. 1947,
p.
2957.
Sun, Bang Bi
Zhang, Zhi Hong
Wang, Chong
Gu, Jian Nong
Miao, Tao
and
Wang, Lu Feng
2012.
Model Experiment of Ice Breaking by Moving Air Cushion Load.
Applied Mechanics and Materials,
Vol. 170-173,
Issue. ,
p.
3112.
Wang, Chong
Zhang, Zhi Hong
Liu, Ju Bin
Yao, Jun
Zhang, Liao Yuan
and
Chen, Ke
2012.
Selection and Analysis of Parameters in Model Test of Ice Breaking by Air Cushion Vehicle.
Applied Mechanics and Materials,
Vol. 152-154,
Issue. ,
p.
1082.
Zhang, Zhi Hong
Wang, Chong
Gu, Jian Nong
Miao, Tao
Wang, Lu Feng
and
Sun, Bang Bi
2012.
Measurement Method in Model Test of Ice Breaking by Air Cushion Vehicle.
Applied Mechanics and Materials,
Vol. 204-208,
Issue. ,
p.
4694.
Wang, Ping
and
Lu, DongQiang
2013.
Analytic approximation to nonlinear hydroelastic waves traveling in a thin elastic plate floating on a fluid.
Science China Physics, Mechanics and Astronomy,
Vol. 56,
Issue. 11,
p.
2170.
Lu, D.Q.
and
Zhang, H.
2013.
Flexural-gravity wave resistances due to a surface-moving line source on a fluid covered by a thin elastic plate.
Theoretical and Applied Mechanics Letters,
Vol. 3,
Issue. 2,
p.
022002.
Pogorelova, A. V.
Kozin, V. M.
and
Matyushina, A. A.
2015.
Stress-strain state of ice cover during aircraft takeoff and landing.
Journal of Applied Mechanics and Technical Physics,
Vol. 56,
Issue. 5,
p.
920.
Trichtchenko, Olga
Părău, Emilian I.
Vanden-Broeck, Jean-Marc
and
Milewski, Paul
2018.
Solitary flexural–gravity waves in three dimensions.
Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences,
Vol. 376,
Issue. 2129,
p.
20170345.
Sturova, I. V.
2018.
Motion of an External Load over a Semi-Infinite Ice Sheet in the Subcritical Regime.
Fluid Dynamics,
Vol. 53,
Issue. 1,
p.
49.
Tkacheva, L. A.
2018.
Behavior of a Semi-Infinite Ice Cover Under a Uniformly Moving Load.
Journal of Applied Mechanics and Technical Physics,
Vol. 59,
Issue. 2,
p.
258.