This study presents a new statistical cubicization approach for predicting the stochastic response of offshore platforms subjected to a Morison-type nonlinear drag loading. Statistics of the original system are obtained from an equivalent nonlinear system, which is constructed by replacing the Morison drag force by a cubic polynomial function of the relative fluid-structure velocity, up to cubic order: A Volterra series expansion with a finite Fourier series representation is used to approximate the response of the equivalent system. Exact solutions are developed to express the Fourier coefficients of the second and third-order response as functions of the Fourier coefficients of the first-order relative fluid-structure velocity. Response s...
For an offshore structure, wind, wave, current, tide, ice and gravitational forces are all important...
Offshore structures are exposed to random wave loading in the ocean environment. The response is com...
For offshore structural design, the load due to wind-generated random waves is usually the most impo...
This study presents a new statistical cubicization approach for predicting the stochastic response o...
The exploration and production of oil at offshore locations is extending into ever increasing water ...
The dynamic behavior of marine vehicles in extreme sea states is a matter of great concern following...
The paper describes a numerical procedure for calculating the crossing rates of a stochastic respons...
In this article a method to estimate the mean upcrossing intensity, mu(u), of a stochastic process i...
The problem of the dynamics of a flexible offshore structure in either a regular or random sea is c...
The challenge to calculate the response statistics of nonlinear, compliant offshore structures subje...
We develop an efficient numerical method for the probabilistic quantification of the response statis...
Offshore structures are exposed to random wave loading in the ocean environment, and hence the proba...
Offshore structures are subject to a wide variety of environmental loads (such as wind, wave and cur...
Offshore structures are exposed to random wave loading in the ocean environment, and hence the proba...
Offshore structures are exposed to random wave loading in the ocean environment and hence the probab...
For an offshore structure, wind, wave, current, tide, ice and gravitational forces are all important...
Offshore structures are exposed to random wave loading in the ocean environment. The response is com...
For offshore structural design, the load due to wind-generated random waves is usually the most impo...
This study presents a new statistical cubicization approach for predicting the stochastic response o...
The exploration and production of oil at offshore locations is extending into ever increasing water ...
The dynamic behavior of marine vehicles in extreme sea states is a matter of great concern following...
The paper describes a numerical procedure for calculating the crossing rates of a stochastic respons...
In this article a method to estimate the mean upcrossing intensity, mu(u), of a stochastic process i...
The problem of the dynamics of a flexible offshore structure in either a regular or random sea is c...
The challenge to calculate the response statistics of nonlinear, compliant offshore structures subje...
We develop an efficient numerical method for the probabilistic quantification of the response statis...
Offshore structures are exposed to random wave loading in the ocean environment, and hence the proba...
Offshore structures are subject to a wide variety of environmental loads (such as wind, wave and cur...
Offshore structures are exposed to random wave loading in the ocean environment, and hence the proba...
Offshore structures are exposed to random wave loading in the ocean environment and hence the probab...
For an offshore structure, wind, wave, current, tide, ice and gravitational forces are all important...
Offshore structures are exposed to random wave loading in the ocean environment. The response is com...
For offshore structural design, the load due to wind-generated random waves is usually the most impo...