[1] Koehler, B. R., Jr. and C. F. Kettleborough, Hydrodynamic impact of a falling body upon a viscous incompressible fluid, J. Ship Research, 21, 3(1977), 165.
[2] Korobkin, A. A. and V. V. Pukhnachov, Hydrodynamic impact into water, Ann. Rev. Fluid Mech., 20(1988), 159.
[3] Jin, F. S., A practical unified theory of some basic problems of a certain class in continuum mechanics, Sci. Bulletin Sinica, 34, 13(1989), 1035; the other work in ibid, 35, 5(1990), 397, 35,15(1990), 1197; 35, 19(1990), 1459.(in Chinese).
[4] Arthurs, A. M., Complementary Variational Principles, Clarendon Press, Oxford(1970).
[5] Jin, F. S., The model of three-dimensional flow through float body considering the viscous boundary layer and its variational principles, Sci. Bulletin Sinica, 29,17(1984), 1044; for the three numerical examples, see: J. Wuhan Institute of Water Transportation Engineering, 9/4(1985), 75 & 11, 1(1987), 107; Proc. of Symposium on Ship Resistance of Chinese Shipbulding Society(1988), 158.(in Chinese).
[6] Jin, F. S., The solution of variational principle and boundary integral equation for ship's wave resistance, J. Hydrodynamics, 6, 3(1991), 23.(in Chinese).
[7] Liu, G. L., General variational principle family for fully 3-D unsteady transonic flow with shocks around oscillating wings, Sci. Sinica, 32(1989), 707.
[8] Jin, F. S., Suggestion of a generalized variational principle for limit analysis, Acta Mechanics Solida Sinica, 1(1981), 107; the other work in ibid, 1(1984), 111.(in Chinese).
[9] Simpson, H. C. and S. J. Spector, On the positivity of the second variation in finite elasticity, ARMA, 98(1987), 1. |