复杂几何形状浮式沉箱涡激运动和线力的CFD研究

B. Decrop, R. Kulkarni, A. Breugem, Damian Villaverde Vega
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引用次数: 0

摘要

两个形状复杂的沉箱需要在潜在的强水流、强风和中等波浪条件下沿直线拖到安装地点。为了设计系泊系统,需要对水流、风和波浪力进行评估。时间平均分量和振荡分量都很重要。已经设想了一种逐渐增加复杂程度的方法。在这种方法中,首先确定每个力的数量级,然后决定是否需要更高精度的深入计算。这导致了一种方法,在这种方法中,风力已被分析确定,电流和涡流感应运动(VIM)已使用CFD和波浪力通过面板方法确定。在数值系泊分析中,所产生的作用力已被合并。本文的重点是用于确定VIM的CFD模型以及与解析确定的共振频率的比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
CFD for Vortex-Induced Motions and Line Forces of a Floating Caisson With Complex Geometry
Two caissons with complex geometry need to be towed to an installation site in a straight with potentially strong currents, fairly strong wind and moderate wave conditions. In order to design the mooring system, current, wind and wave forces need to be assessed. Both time-averaged and oscillating components are important. A methodology in which the degree of complexity is gradually increased has been conceived. In this methodology, first an assessment of the order of magnitude of each force is determined, after which it is decided whether in-depth computation of higher accuracy is required. This led to a methodology in which wind forces have been determined analytically, current forces and Vortex Induced Motions (VIM) have been determined using CFD and wave forces by means of a panel method. The resulting forces have been combined in a numerical mooring analysis. The focus of the presented paper is on the CFD model applied to determine VIM and a comparison with resonance frequencies determined analytically.
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