An Improved Body-Exact Method to Predict Large Amplitude Ship Roll Responses

R. Subramanian, N. Rakesh, R. Beck
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引用次数: 2

Abstract

Accurate prediction of the roll response is of significant practical relevance not only for ships but also ship type offshore structures such as FPSOs, FLNGs and FSRUs. This paper presents a new body-exact scheme that is introduced into a nonlinear direct time-domain based strip theory formulation to study the roll response of a vessel subjected to moderately large amplitude incident waves. The free surface boundary conditions are transferred onto a representative incident wave surface at each station. The body boundary condition is satisfied on the instantaneous wetted surface of the body below this surface. This new scheme allows capturing nonlinear higher order fluid loads arising from the radiated and wave diffraction components. The Froude-Krylov and hydrostatic loads are computed on the intersection surface of the exact body position and incident wave field. The key advantage of the methodology is that it improves prediction of nonlinear hydrodynamic loads while keeping the additional computational cost small. Physical model tests have been carried out to validate the computational model. Fairly good agreement is seen. Comparisons of the force components with fully linear and body-nonlinear models help in bringing out the improvements due to the new formulation.
一种改进的体精确法预测船舶大振幅侧倾响应
横摇响应的准确预测不仅对船舶,而且对fpso、flng和fsru等船舶型海上结构都具有重要的实际意义。本文提出了一种新的体精确格式,该格式被引入到非线性直接时域条形理论公式中,用于研究船舶在中振幅入射波作用下的横摇响应。将自由表面边界条件传递到每个站点的代表性入射波表面上。在该表面以下的瞬时受湿表面上,满足体边界条件。这种新方案允许捕获由辐射和波衍射分量引起的非线性高阶流体载荷。在精确体位和入射波场的交点面上计算了弗劳德-克雷洛夫载荷和静水载荷。该方法的主要优点是,它提高了非线性水动力载荷的预测,同时保持了较小的额外计算成本。进行了物理模型试验以验证计算模型。可以看到相当好的一致性。将力分量与完全线性模型和体非线性模型进行比较有助于揭示新公式所带来的改进。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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