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  4. How safe is 'safe'? Ship dynamics in critical sea states
 
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How safe is 'safe'? Ship dynamics in critical sea states

Publikationstyp
Journal Article
Date Issued
2013-07-24
Sprache
English
Author(s)
Clauss, Günther F.  
Klein, Marco  orcid-logo
TORE-URI
http://hdl.handle.net/11420/4469
Journal
Ocean engineering  
Volume
72
Start Page
87
End Page
97
Citation
Ocean Engineering (72): 87-97 (2013-07-24)
Publisher DOI
10.1016/j.oceaneng.2013.06.021
How safe is 'safe'? During the design phase of floating structures, specifications such as range of application, warranty of economical efficiency and reliability are integral parts of the evaluation process. The key decision is the choice of environmental design conditions to be considered for operation and survival: this issue cannot be solved globally, i.e. different operating conditions (transit, operation, survival) and criteria (body motions, local and global loads) will lead to individual results. In this paper a procedure for the systematic identification of critical (design) wave sequences for offshore structures is presented - a response based identification tool for critical wave sequence detection. The basic principle of this procedure is characterized by tailoring of short wave sequences to obtain a certain maximum response. The fully automated procedure combines wave/structure interaction analysis programs with an optimization algorithm. The objective is to find a critical wave sequence with respect to the predefined maximum responses. By means of this procedure, the identification and evaluation of critical design conditions can be conducted more systematically, accurately and thus efficiently. To demonstrate the broad scope of this procedure, a typical example is presented. The results obtained are reviewed against classical design methods. The investigations comprise numerical calculations as well as model test validations.
Subjects
Critical wave sequences
Deterministic time domain analysis
Response based optimization
Stochastic frequency domain analysis
Wave-structure interaction
DDC Class
600: Technology
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