Trapping of water waves by moored bodies

J. N. Newman1
1Department of Mechanical Engineering, Massachusetts Institute of Technology, Cambridge, USA

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Tài liệu tham khảo

Wehausen JV, Laitone EV (1960) Surface waves. In: Flügge S (ed) Encyclopedia of physics, 9:446–778. (Available for download from http://www.coe.berkeley.edu/SurfaceWaves )

Mei CC (1989). The applied dynamics of ocean surface waves, 2nd edn. World Scientific Pub Co, Singapore

Linton CM and McIver P (2001). Handbook of mathematical techniques for wave/structure interactions. Chapman & Hall/CRC, London

Evans DV (2004) Mathematical techniques for linear wave-structure interactions. In: Landrini M, et al. (eds) Proceedings of the 19th international workshop on water waves and floating bodies, Cortona, Italy. (Available for download from http://www.iwwwfb.org )

Faltinsen OM (1991). Sea loads on ships and offshore structures. Cambridge University Press, Cambridge, UK

John F (1950). On the motion of floating bodies, II. Commun Pure Appl Math 3: 45–101

Kuznetsov N, Maz’ya V and Vainberg B (2002). Linear water waves. Cambridge University Press, Cambridge, UK

Linton CM, McIver P (2007) Embedded trapped modes in water waves and acoustics. Wave Motion (in press)

McIver M (1996). An example of non-uniqueness in the two-dimensional linear water wave problem. J Fluid Mech 315: 257–266

McIver P and McIver M (1997). Trapped modes in an axisymmetric water-wave problem. Quart J Mech Appl Math 50: 165–178

Newman JN (1999). Radiation and diffraction analysis of the McIver toroid. J Eng Math 35: 135–147

McIver P and Newman JN (2003). Trapping structures in the three-dimensional water-wave problem. J Fluid Mech 484: 283–301

McIver P and McIver M (2006). Trapped modes in the water-wave problem for a freely floating structure. J Fluid Mech 558: 53–67

McIver P and McIver M (2007). Motion trapping structures in the three-dimensional water-wave problem. J Eng Math 58: 67–75

Shipway BJ and Evans DC (2003). Wave trapping by axisymmetric concentric cylinders. J Offshore Mech Arctic Eng 125: 59–64

Evans DV, Porter R (2007) Examples of motion trapped modes in two and three dimensions. In: Malenica S, Senjanovic I (eds) Proceedings of the 22nd international workshop on water waves and floating bodies, Plitvice, Croatia. (Available for download from http://www.iwwwfb.org )

Abramowitz M, Stegun I (1964) Handbook of mathematical functions. National Bureau of Standards, Washington

Newman JN (1977). Marine hydrodynamics. MIT Press, Cambridge, USA

Lee C-H, Newman JN (2005) Computation of wave effects using the panel method. In: Chakrabarti S (ed) Numerical models in fluid structure interaction. WIT Press, Southampton pp. 211–251

Bessho M (1967). On the theory of wave-free ship forms. Mem Defense Acad Jpn 7(1): 263–277

Motora S and Koyama T (1966). Wave excitationless ship forms. In: Cooper, R and Doroff, S (eds) Proceedings of the sixth symposium on naval hydrodynamics., pp. 383–413. US Government Printing Office, Washington

Kyozuka Y and Yoshida K (1981). On wave-free floating-body forms in heaving oscillation. Appl Ocean Res 3(4): 183–194

Newman JN (1985). Algorithms for the free-surface Green function. J Eng Math 19: 57–67