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Fundamentals of Probabilistic Processes
Sea Waves and Sea States
4 other sections not shown
acceleration amplitude approximation assume axis Bessel functions boundary conditions calculated Chakrabarti Chapter circular cylinder column component consider constant corresponding cosh Kd curve damping defined density function depth diffraction diffraction theory direction of wave displacement drag coefficient drag forces dynamic energy finite element flow fluid Fourier frequency Gaussian given gravity structures Helmholtz equation Hence Hogben horizontal hydrodynamic incident wave inertia inertia forces integral lift forces linear wave linearised loads matrix maxima maximum method Morison Morison's equation motion narrow-band process number of cycles obtain offshore structures parameter probability density function problem Proc radiation damping random Rayleigh distribution represented Reynolds number S-N curves scatter diagram sea bed shown in Figure slender members solution spectral density spectrum stationary stress term unit length variables vector velocity potential vertical vibration viscosity vortex shedding water particle wave field wave forces wave theory wavelength wavenumber wind speed zero crossing period