Numerical Simulation of Trim Optimization on Resistance Performance Based on CFD Method

W. Duan, Hongsen Zhang, Huang Limin, Jianyu Liu, Shao Wenbo, Guanzhou Cao, Zhang Shi
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引用次数: 2

Abstract

In response to the gradually stringent carbon emission requirements of the International Maritime Organization (IMO), the energy-saving methods of the shipping industry have received increasing attention. Today how to reduce fuel consumptions so as to lower carbon emissions to improve the economic and environmental benefits of ships has become a hot topic. As one of the most easily implemented energy-saving methods, trim optimization has caught more and more researchers’ eyes. In this paper, a commercial CFD software STAR-CCM+ was adopted to analyze the influence of trim on the resistance performance of VLCC ship mainly with fixed model method under various typical conditions of the design draft and the ballast draft respectively. The grid convergence was studied at the design draft and the typical numerical simulations were verified by the experimental results before carrying out various numerical simulations of trim optimization. Seven different kinds of trim conditions, which correspond to the changing process of the full scale ship from trimming by stern 4m to bow 4m, were simulated with 3 different speeds of design draft and ballast draft. The changes of total resistance, frictional resistance and residual resistance were analyzed to explore the effect of trims on the ship’s resistance. The variation of ship’s wetted surface area and waterplane area under different trim angles were studied. It was found that under the condition of low Froude number, both the simulation of free trim and sink method and the fixed model method can achieve good accuracy with the method of fixed model reducing the simulation time obviously. Both conditions of the design draft and ballast draft had a certain reduction effect of total resistance for trimming by bow properly, of which the change of frictional resistance is dominant in the decrease of total resistance at design draft while the change of residual resistance is the main cause at ballast draft. The optimum trims were found and the optimal total resistance reduction effects were evaluated. The optimal total resistance reduction effect increased with speed whether at the design or the ballast draft and the reduction effects were more obvious at ballast draft. Meanwhile, it was found that the changes of wetted surface area and the waterplane area with different trims were close to the variation tendency of the frictional resistance.
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基于CFD方法的内饰优化阻力性能数值模拟
为了应对国际海事组织(IMO)逐渐严格的碳排放要求,航运业的节能方法越来越受到关注。如何降低燃油消耗,从而降低碳排放,提高船舶的经济效益和环境效益已成为当今船舶研究的热点。装饰优化作为一种最容易实现的节能方法,受到了越来越多研究者的关注。本文采用商用CFD软件STAR-CCM+,主要采用固定模型法,分别在设计吃水和压载吃水的各种典型条件下,分析了纵倾对VLCC船舶阻力性能的影响。在设计草案下研究了网格收敛性,并通过实验结果验证了典型数值模拟,然后进行了各种配平优化数值模拟。以设计吃水和压载吃水的3种不同速度,模拟了7种不同的纵倾条件,对应了实尺船舶从船尾4米纵倾到船头4米纵倾的变化过程。分析了总阻力、摩擦阻力和剩余阻力的变化,探讨了饰边对船舶阻力的影响。研究了不同纵倾角下船舶湿面面积和水面面积的变化规律。研究发现,在较低的弗劳德数条件下,自由倾沉法和固定模型法的模拟均能获得较好的精度,固定模型法明显缩短了模拟时间。设计吃水和压载吃水条件都对船首适当调平总阻力有一定的减小作用,其中设计吃水总阻力的减小主要是摩擦阻力的变化,压载吃水总阻力的减小主要是剩余阻力的变化。找到了最优的饰边,并对最佳的总阻力降低效果进行了评价。无论是在设计位置还是在压载吃水位置,最优总阻力减小效果都随着航速的增加而增大,且在压载吃水位置减小效果更明显。同时,研究发现,不同修边下的湿面面积和水面面积的变化与摩擦阻力的变化趋势接近。
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