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On the Comparative Seakeeping Analysis of the Full Scale KCS by Several Hydrodynamic Approaches

机译:用几种流体动力学方法对全尺度KCS的比较海务分析

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摘要

The main transport channel of the global economy is represented by shipping. Engineers and hull designers are more preoccupied in ensuring fleet safety, the proper operation of the ships, and, more recently, compliance with International Maritime Organization (IMO) regulatory incentives. Considerable efforts have been devoted to in-depth understanding of the hydrodynamics mechanism and prediction of ship behavior in waves. Prediction of seakeeping performances with a certain degree of accuracy is a demanding task for naval architects and researchers. In this paper, a fully numerical approach of the seakeeping performance of a KRISO (Korea Research Institute of Ships and Ocean Engineering, Daejeon, South Korea) container ship (KCS) container vessel is presented. Several hydrodynamic methods have been employed in order to obtain accurate results of ship hydrodynamic response in regular waves. First, an in-house code DYN (Dynamic Ship Analysis, “Dunarea de Jos” University of Galati, Romania), based on linear strip theory (ST) was used. Then, a 3D fully nonlinear time-domain Boundary Element Method (BEM) was implemented, using the commercial code SHIPFLOW (FLOWTECH International AB, Gothenburg, Sweden). Finally, the commercial software NUMECA (NUMECA International, Brussels, Belgium) was used in order to solve the incompressible unsteady Reynolds-averaged Navier–Stokes equation (RANSE) flow at ship motions in head waves. The results obtained using these methods are represented and discussed, in order to establish a methodology for estimating the ship response in regular waves with accurate results and the sensitivity of hydrodynamical models.
机译:全球经济的主要运输渠道由航运代表。工程师和船体设计师更全神贯注于确保舰队安全,船舶的适当运营,以及最近,遵守国际海事组织(IMO)监管奖励。广泛地努力深入地了解海浪中船舶行为的流体动力学机制和预测。以一定程度的准确度预测海守表现是海军建筑师和研究人员的苛刻任务。在本文中,提出了一种克里索(韩国研究所和海洋工程,韩国,韩国)集装箱船(KCS)集装箱船舶(韩国研究所)集装箱船(KCS)集装箱船舶的绩效的全价效果。已经采用了几种流体动力学方法,以便在常规波中获得船舶流体动力学反应的准确结果。首先,使用内部代码(动态船舶分析,“Galati大学)基于线性条带理论(ST)。然后,使用商业代码船流(Flowtech International Ab,瑞典)实施3D完全非线性时域边界元素方法(BEM)。最后,使用了商业软件Numeca(Numeca International,Brussels,Belgium),以解决在头部波浪中的船舶运动中的不可压缩的不稳定雷诺平均南部的Navier-Stokes方程(Ranse)流量。使用这些方法获得的结果是表示和讨论的,以便建立用于估计常规波的船舶响应的方法,以准确的结果和流体动力学模型的敏感性。

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