Wave Kinematics and Environmental Forces

Wave Kinematics and Environmental Forces Papers Presented at a Conference Organized by the Society of Underwater Technology and Held in London, UK, March 24-25Th 1993 - Advances in Underwater Technology, Ocean Science and Offshore Engineering

1993

Hardback (28 Feb 1993)

  • $187.88
Add to basket

Includes delivery to the United States

10+ copies available online - Usually dispatched within 7 days

Publisher's Synopsis

In determining the response of offshore structures, it is of utmost importance to determine, in the most correct manner, all factors which contribute to the total force acting on these structures. Applying the Morison formula (Morison et. al. , 1950) to calculate forces on offshore slender structures, uncertainties related to the understanding of the wave climate, the hydrodynamic force coefficients and the kinematics of ocean waves represent the most important contributions to the uncertainties in the prediction of the total forces on these structures (Haver and Gudmestad, 1992). Traditional calculation of forces on offshore structures involves the use of regular waves with the following non-linearities inco1porated use of regular wave theories inco1porating higher order terms use of Morison equation having a nonlinear drag term inclusion of the effect of the free surface by integrating all contributions to total forces and moments from the sea floor to the free surface of the waves In order to describe the sea more realistically, the ocean surface is to be described as an irregular sea surface represented by its energy spectrum. The associated decomposition of the sea surface is given as a linear sum of linear waves. The total force is found by integrating the contribution from all components in the wave spectrum to the free surface. The kinematics of each component must therefore be determined.

Book information

ISBN: 9780792321842
Publisher: Springer Netherlands
Imprint: Springer
Pub date:
Edition: 1993
DEWEY: 627
DEWEY edition: 20
Language: English
Number of pages: 345
Weight: 1500g
Height: 234mm
Width: 156mm
Spine width: 20mm