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Prediction of the dynamic responses for two containerships operating in the black sea

机译:在黑海作业的两艘集装箱船的动态响应预测

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This work presents a methodology for the evaluation of the vessels operability in the basin of the Black Sea. The approach proposed is based on the results provided by a wave prediction system that was implemented and validated in the Black Sea. This offers a meaningful framework in the assessment of the seakeeping performance for ships operating in different conditions. The aim of the work is to improve the seakeeping performances for various types of ships that sail in the Romanian coastal zones. Two containerships are considered, of 1300TEU and 800TEU respectively, which have however the same displacement. For predicting the ship motions induced by the various wave conditions encountered in the operational area, it is necessary to know the transfer functions for different ship speeds and heading angles. These are computed with a numerical code based on the strip theory. The predicted motions are then compared with the limit values of the relevant seakeeping criteria, considered as the criteria for checking the operability of the ship. By defining the acceptable operating boundaries, the ship behavior in waves can be quantified. The vessel meets the criteria for those combinations wave height-wave period that are below the limit curves. The results are presented as operational maps for the Black Sea basin, allowing the identification of the areas that should be avoided due to unfavorable weather conditions. The methodology proposed herewith can be extended and applied to various marine environments and types of ships.DOI: http://dx.doi.org/10.3329/jname.v11i1.17289
机译:这项工作提出了一种评估黑海盆地船舶可操作性的方法。提出的方法基于在黑海中实施和验证的波浪预测系统提供的结果。这为评估在不同条件下运行的船舶的海上航行性能提供了有意义的框架。这项工作的目的是提高在罗马尼亚沿海地区航行的各种类型船舶的海上航行性能。考虑了两个集装箱船,分别为1300TEU和800TEU,但排量相同。为了预测在操作区域遇到的各种波浪条件引起的船舶运动,有必要知道不同船速和航向角的传递函数。这些是基于剥离理论用数字代码计算的。然后将预测的运动与相关海上维护标准的极限值进行比较,该标准被视为检查船舶可操作性的标准。通过定义可接受的操作边界,可以量化船舶在波浪中的行为。该船符合低于极限曲线的那些波浪高度-波浪周期组合的标准。结果以黑海盆地的操作图显示,可以识别由于不利的天气条件应避免的区域。本文提出的方法可以扩展并应用于各种海洋环境和各种类型的船舶。DOI:http://dx.doi.org/10.3329/jname.v11i1.17289

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