海洋构筑物周围液化的数值模拟——进展与最新进展

C. Windt, N. Goseberg, S. Schimmels, M. Kudella, R. Shanmugasundaram, H. Rusche, B. Sumer, V. Kirca, V. Vanjakula, F. Adam, D. Majewski, K. Kazimierowicz-Frankowska, Grzegorz Hrycyna
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引用次数: 0

摘要

海洋结构周围的液化会导致严重的结构破坏,在特定的安装地点,例如海上浮式风力发电机,海底土壤对液化的易感性应纳入设计过程和场地评估。为此,基于数值模拟的先进预测工具可以为水文-岩土工程过程提供有价值的见解。然而,由于底层物理的复杂相互作用,开发海底液化的整体建模框架是一项具有挑战性的任务。NuLIMAS研究项目(海洋结构周围海底液化数值模拟)旨在开发在OpenFOAM®框架中实现的海底液化数值模型。本文概述了NuLIMAS项目,概述了海底液化实验和数值模拟方法的现状,并介绍了一些初步结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Numerical Modelling of Liquefaction Around Marine Structures - Progress and Recent Developments
The liquefaction around marine structures can lead to severe structural failure and the susceptibility of seabed soil to liquefaction at a specific installation site of, e.g., floating offshore wind turbines should be included within the design process and site evaluation. To that end, advanced prediction tools based on numerical modelling can provide valuable insight into the hydro-geotechnical processes. However, due to the complex interaction of the underlying physics, developing a holistic modelling framework for seabed liquefaction is a challenging task. The NuLIMAS research project (Numerical modelling of seabed liquefaction around marine structures) aims at the development of such a numerical model of seabed liquefaction implemented in the OpenFOAM® framework. This paper provides an overview of the NuLIMAS project, laying out the current state of the art of experimental and numerical modelling approaches for seabed liquefaction and presenting some initial results.
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