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Ship Trim Optimization: Assessment of Influence of Trim on Resistance of MOERI Container Ship

机译:船舶饰件优化:评估饰件对MOERI集装箱船阻力的影响

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摘要

Environmental issues and rising fuel prices necessitate better energy efficiency in all sectors. Shipping industry is a stakeholder in environmental issues. Shipping industry is responsible for approximately 3% of global CO2 emissions, 14-15% of global NOX emissions, and 16% of global SOX emissions. Ship trim optimization has gained enormous momentum in recent years being an effective operational measure for better energy efficiency to reduce emissions. Ship trim optimization analysis has traditionally been done through tow-tank testing for a specific hullform. Computational techniques are increasingly popular in ship hydrodynamics applications. The purpose of this study is to present MOERI container ship (KCS) hull trim optimization by employing computational methods. KCS hull total resistances and trim and sinkage computed values, in even keel condition, are compared with experimental values and found in reasonable agreement. The agreement validates that mesh, boundary conditions, and solution techniques are correct. The same mesh, boundary conditions, and solution techniques are used to obtain resistance values in different trim conditions at Fn = 0.2274. Based on attained results, optimum trim is suggested. This research serves as foundation for employing computational techniques for ship trim optimization.
机译:环境问题和不断上涨的燃油价格要求所有部门提高能源效率。航运业是环境问题的利益相关者。航运业约占全球二氧化碳排放量的3%,全球NOX排放量的14-15%和全球SOX排放量的16%。近年来,船舶纵倾优化获得了巨大的动力,是提高能源效率以减少排放的有效措施。传统上,船舶纵倾优化分析是通过对特定船体的拖船测试进行的。计算技术在船舶流体动力学应用中越来越受欢迎。这项研究的目的是通过采用计算方法来介绍MOERI集装箱船(KCS)的船体纵倾优化。将KCS船体总阻力以及整齐和沉没计算值(即使在龙骨条件下)与实验值进行比较,并得出合理的一致性。该协议可验证网格,边界条件和求解技术是否正确。在Fn = 0.2274的情况下,使用相同的网格,边界条件和求解技术来获得不同修剪条件下的电阻值。根据获得的结果,建议最佳的修整。该研究为采用计算技术进行船舶纵倾优化奠定了基础。

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  • 期刊名称 other
  • 作者

    Salma Sherbaz; Wenyang Duan;

  • 作者单位
  • 年(卷),期 -1(2014),-1
  • 年度 -1
  • 页码 603695
  • 总页数 6
  • 原文格式 PDF
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  • 入库时间 2022-08-21 11:19:47

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