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Stochastic Modeling of Forces on Jacket-Type Offshore Structures Colonized by Marine Growth

机译:海洋生长定殖的夹克式近海结构上的力的随机模型

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The present paper deals with the stochastic modeling of bio-colonization for the computation of stochastic hydrodynamic loading on jacket-type offshore structures. It relies on a multidisciplinary study gathering biological and physical research fields that accounts for uncertainties at all the levels. Indeed, bio-colonization of offshore structures is a complex phenomenon with two major but distinct domains: (i) marine biology, whose processes are modeled with biomathematics methods, and (ii) hydrodynamic processes. This paper aims to connect these two domains. It proposes a stochastic model for the marine organism’s growth and then continues with transfers for the assessment of drag coefficient and forces probability density functions that account for marine growth evolution. A case study relies on the characteristics (growth and shape) of the blue mussel ( Mytilus edulis ) in the northeastern Atlantic.
机译:本文研究了生物定殖的随机模型,用于计算外套式海上结构的随机水动力载荷。它依赖于一个跨学科的研究,该研究收集了生物学和物理研究领域,这些领域解决了各个层面的不确定性。确实,近海结构的生物殖民化是一个复杂的现象,具有两个主要但截然不同的领域:(i)海洋生物学,其过程是用生物数学方法建模的;以及(ii)流体动力学过程。本文旨在将这两个领域联系起来。它提出了海洋生物生长的随机模型,然后继续进行转移,以评估构成海洋生长演化的阻力系数和力概率密度函数。案例研究依赖于东北大西洋的蓝贻贝(Mytilus edulis)的特征(生长和形状)。

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