Sensitivity Approach for Modeling Stochastic Field of Keulegan–Carpenter and Reynolds Numbers Through a Matrix Response Surface

Author:

Schoefs Franck1,Boukinda Morgan L.1

Affiliation:

1. Institute in Civil and Mechanical Engineering (GeM), Nantes Atlantic University, CNRS UMR 6183, 2 rue de la Houssinière, 44072 Nantes Cedex 03, France

Abstract

The actual challenge for requalification of existing offshore structures through a rational process of reassessment indicates the importance of employing a response surface methodology. At different steps in the quantitative analysis, quite a lot of approximations are performed as a surrogate for the original model in subsequent uncertainty and sensitivity studies. This paper proposes to employ a geometrical description of the nth order Stokes model in the form of a random linear combination of deterministic vectors. These vectors are obtained by rotation transformations of the wave directional vector. This facilitates introduction of an appropriate level of complexity in stochastic modeling of the wave velocity and of the Reynolds and Keulegan–Carpenter numbers for probabilistic mechanics analysis of offshore structures. In situ measurements are used to assess suitable ranges and distributions of basic variables.

Publisher

ASME International

Subject

Mechanical Engineering,Ocean Engineering

Reference20 articles.

1. Joint Committee on Structural Safety, 2001, “Probabilistic Model Code,” JCSS Paper No. JCSS-OSTL/DIA/VROU-10-11-2000, www.jcss.ethz.ch.

2. Cracked Finite Element for Through-Cracked Tube;Schoefs;Commun. Numer. Methods Eng.

3. A Discussion on Response Surface Approximations for Use in Structural Reliability;Labeyrie

4. Fundamentals Concerning Wave Loadings on Offshore Structures;Lightill;J. Fluid Mech.

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