1. Mindlin plate analysis by segmentation method;Kant;J. Engng. Mech. ASCE,1983
2. Kashiwagi, M., 1998. A new solution method for hydroelastic problems of a very large floating structure in waves. 17th Int. Conference on Offshore Mech. Arctic Engng. ASME, OMAE98-4332, 1–8
3. Liew, K.M., Wang, C.M., Xiang, Y., Kitipornchai, S., 1998. Vibration of Mindlin Plates: Programming the p-version Ritz Method, Elsevier, Oxford
4. Mindlin, R.D., 1951. Influence of rotatory inertia and shear on flexural motion of isotropic elastic plates. ASME, J. Appl. Mech. 13, 31–38
5. Nagata, S., Yoshida, H., Fujita, T., Isshiki, H., 1998. Reduction of the motion of an elastic floating plate in waves by breakwaters. In: M. Kashiwagi et al., (Eds.), Proceedings of the 2nd Hydroelasticity in Marine Technology, Kyushu University, Fukuoka, Japan, December 1–3, 1998, pp. 229–237