[1]
Y. Li, M. Lou: Journal of hydraulic engineering. Vol. 2 (2003) , pp.93-97 (In Chinese).
Google Scholar
[2]
Y. Li, M. Lou: Earthquake Engineering and Engineering Vibration. Vol. 2 (2000) , pp.51-56 (In Chinese).
Google Scholar
[3]
F. T: Dodge The new dynamic behavior of liquids in moving containers. Southwest Research, Institute, San Antonio, Texas(2000).
Google Scholar
[4]
R.A. Ibrahim Liquid sloshing dynamics (theory and applications) (Cambridge University Press, Britain 2005).
Google Scholar
[5]
R.A. Ibrahim, V.N. Pilipchuk and T: Ikeda: Applied Mechanics Reviews. Vol. 54(2) (2001), pp.133-199.
Google Scholar
[6]
O.M. Faltinsen, A.N. Timokha, Sloshing (Cambridge University Press, Britain 2009).
Google Scholar
[7]
E.W. Graham, A. M: Rodriguez: Journal of Applied Mechanics. Vol. 19 (1952), pp.381-388.
Google Scholar
[8]
G.W. Housner: Bulletin of the Seismological Society of America. Vol. 47(1) (1957), pp.15-35.
Google Scholar
[9]
Y. Li, J. Wang: Journal of Fluids and Structures. Vol. 31 (2012) pp.47-151.
Google Scholar
[10]
Y. Li, M. Lai: Earthquake Engineering and Engineering Vibration. Vol. 33 (1) (2013), pp.111-114 (In Chinese).
Google Scholar
[11]
Y. Li, Q. Di and Y. Gong: Earthquake Engineering and Structural Dynamics. Vol. 41 (2012), pp.1069-1087.
Google Scholar
[12]
Y. Li, M. Lou: Earthquake Engineering and Structural Dynamics. Vol. 32(1) (2003), pp.1-14.
Google Scholar
[13]
Y. Li, M. Lou: Earthquake Engineering and Engineering Vibration, Vol. 28(2) (2008), pp.102-107 (In Chinese).
Google Scholar
[14]
Upcoming Chinese Code specifications for seismic design of hydraulic structures, (2013) (In Chinese).
Google Scholar