## Proceedings of the ... International Conference on Offshore Mechanics and Arctic Engineering, Volumes 1-2American Society of Mechanical Engineers, 1990 - Arctic regions |

### From inside the book

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Page 61

It is

quality control and a detailed material specification ) . The yield strength o , is

modelled as a lognormal variable with mean = 482+ ( 2 x 30 ) - 15 = 527 MPa

and ...

It is

**assumed**that the standard deviation is 30 MPa ( this presupposes goodquality control and a detailed material specification ) . The yield strength o , is

modelled as a lognormal variable with mean = 482+ ( 2 x 30 ) - 15 = 527 MPa

and ...

Page 68

It is

quality control and a detailed material specification ) . The yield strength o , is

modelled as a lognormal variable with mean = 482+ ( 2 x 30 ) - 15 = 527 MPa

and ...

It is

**assumed**that the standard deviation is 30 MPa ( this presupposes goodquality control and a detailed material specification ) . The yield strength o , is

modelled as a lognormal variable with mean = 482+ ( 2 x 30 ) - 15 = 527 MPa

and ...

Page 157

The total forecasted timespan of the data is

prediction of the sea state along the route is

forecasts made at only a few stations can be also considered , but is not

discussed ...

The total forecasted timespan of the data is

**assumed**72 hours and a continuousprediction of the sea state along the route is

**assumed**. The alternative case offorecasts made at only a few stations can be also considered , but is not

discussed ...

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### Contents

HYDRODYNAMIC FORCES | 47 |

The Force Coefficients on Inclined Cylinder in Random Wave and Current | 57 |

K S Varyani | 79 |

Copyright | |

45 other sections not shown

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### Common terms and phrases

acting added mass amplitude analysis angle applied array assumed body boundary calculated circular coefficient compared component considered constant corresponding crest cylinder damping defined dependent depth determined direction distribution domain drag drift dynamic effect element Engineering equation estimated experimental experiments expressed Figure flow fluid forward speed frequency function given heave horizontal hydrodynamic increase integral irregular length lift force linear load maximum mean measured method mooring motion nonlinear obtained Offshore oscillation parameters period phase pile plate potential predicted present pressure problem radiation range ratio reference regular waves relative respectively response riser ship shown shown in Figure simulation solution spectra spectrum structure surface surge Table theory velocity vertical vessel wave force wave height wind