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Interactive numerical simulation of riser interference phenomena in offshore structure.

机译:海上结构中立管干扰现象的交互式数值模拟。

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An integrated simulation environment for unsteady flow and flow-structure interaction problems has been developed for two-dimensional incompressible flows. The motivating problem, interference effects between flexible risers in offshore structures, presents a significant challenge to numerical simulation due to the heavy dependence on structural and flow parameters, the large-scale deformation possible in the risers, and the need to accurately visualize time-dependent phenomena.; To meet these challenges in the most efficient manner, an interactive simulation environment is developed which consists of a semi-implicit projection solver for the incompressible Navier-Stokes equations, automatic routines for mesh deformation and adaptation, algorithms for visualization of unsteady vector fields on arbitrary mesh topologies and interpolants, and flexible, cross-platform interactive steering processes. In each of these areas, a combination of established and novel techniques are used to provide efficiency and accuracy.; Results presented include extensive validation on standard benchmark problems and both unsteady flow and flow-structure interaction simulations for isolated cylinders and cylinder pairs. These results indicate that the developed methods provide an extremely powerful means to explore complex, unsteady simulations of relevance to offshore design.
机译:针对二维不可压缩流,开发了用于非恒定流和流-结构相互作用问题的集成仿真环境。激励问题,即海上结构中柔性立管之间的干扰效应,由于对结构和流动参数的严重依赖,立管中可能发生的大规模变形以及需要精确可视化随时间变化的趋势,对数值模拟提出了重大挑战。现象。为了以最有效的方式应对这些挑战,开发了一个交互式仿真环境,其中包括一个用于不可压缩的Navier-Stokes方程的半隐式投影求解器,用于网格变形和自适应的自动例程,用于在任意位置上显示非恒定矢量场的算法网格拓扑和内插值,以及灵活的跨平台交互式控制过程。在这些领域中的每一个领域,已使用的技术和新颖的技术相结合可以提高效率和准确性。呈现的结果包括对标准基准问题的广泛验证,以及对孤立的气缸和气缸对进行的非恒定流和流-结构相互作用仿真。这些结果表明,所开发的方法为探索与海上设计相关的复杂,不稳定的仿真提供了极其强大的手段。

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