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首页> 外文期刊>International Journal of Offshore and Polar Engineers >Comparative Numerical Study on Focusing Wave Interaction with FPSO-like Structure
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Comparative Numerical Study on Focusing Wave Interaction with FPSO-like Structure

机译:与FPSO结构聚焦波相互作用的比较数值研究

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Evaluating the interactions between offshore structures and extreme waves plays an essential role for securing the survivability of the structures. For this purpose, various numerical tools-for example, the fully nonlinear potential theory (FNPT), the Navier-Stokes (NS) models, and hybrid approaches combining different numerical models-have been developed and employed. However, there is still great uncertainty over the required level of model fidelity when being applied to a wide range of wave-structure interaction problems. This paper aims to shed some light on this issue with a specific focus on the overall error sourced from wave generation/absorbing techniques and resolving the viscous and turbulent effects, by comparing the performances of three different models, including the quasi-arbitrary Lagrangian Eulerian finite element method (QALE-FEM) based on the FNPT, an in-house two-phase NS model with large-eddy simulation and a hybrid model coupling the QALE-FEM with the OpenFOAM/InterDymFoam, in the cases with a fixed FPSO-like structure under extreme focusing waves. The relative errors of numerical models are defined against the experimental data, which are released after the numerical works have been completed (i.e., a blind test), in terms of the pressure and wave elevations. This paper provides a practical reference for not only choosing an appropriate model in practices but also on developing/optimizing numerical tools for more reliable and robust predications.
机译:评估海上结构和极端波之间的相互作用对于确保结构的生存性起着重要作用。为此目的,已经开发出并采用各种数值工具 - 例如,组合不同数值模型的全部非线性潜在理论(FNPT),NAVIER-Stokes(NS)模型和混合方法 - 已经开发出和采用。然而,当应用于广泛的波浪结构相互作用问题时,在模型保真度所需的模型保真程度上仍存在很大的不确定性。本文旨在通过比较三种不同型号的性能,包括从波代/吸收技术的整体误差,并通过比较三种不同型号的性能来解决粘性和湍流效应的整体误差,并在包括准任意拉格朗日欧拉的有限公司基于FNPT的元素方法(QALE-FEM),内部两阶段NS模型,具有大涡模拟的大型仿真和搭配Qale-Fem的混合模型,在具有固定FPSOM的情况下极端聚焦波下的结构。根据压力和波形升高,根据在数值工作完成(即盲试验)之后释放的实验数据定义了数值模型的相对误差。本文不仅提供了一种实用的参考,不仅可以在实践中选择适当的模型,还提供了开发/优化数值工具,以获得更可靠和鲁棒的预先发生。

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