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Assessing the impact of a slow steaming approach on reducing the fuel consumption of a containership advancing in head seas

机译:评估慢速航行方法对减少在公海前进的集装箱船的燃料消耗的影响

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摘要

It is very important to be able to evaluate a ship’s response to waves, because any added resistance or loss of speed may cause delays or course alterations, leading to financial losses. The slow steaming approach is increasing in popularity for commercial vessels, as it provides a method of reducing fuel use, and therefore operating costs, in the current economic climate. Potential flow theory based linear strip theory is still a widely used method among naval architects, due to its fast solutions with sufficient engineering accuracy. The key objective of this study is to predict the ship motions and added resistance of the S-175 containership, and to estimate the increase in effective power and fuel consumption due to its operation in regular and irregular head seas. The analyses were performed at design and slow steaming speeds, for a range of wave conditions in regular seas, and for three different sea states in irregular seas. The results obtained at a ship speed corresponding to Froude number 0.25 were compared to available experimental data and were found to be in good agreement with the experiments. The numerical analyses were carried out using VERES, which is based on potential flow theory.
机译:评估船舶对波浪的响应非常重要,因为任何增加的阻力或速度损失都可能导致延误或航向改变,从而导致财务损失。慢蒸方法在商用船上越来越受欢迎,因为它提供了一种在当前经济环境下减少燃料使用从而降低运营成本的方法。基于势流理论的线性条带理论由于其快速的解决方案和足够的工程精度而仍然是海军建筑师中广泛使用的方法。这项研究的主要目的是预测S-175集装箱船的船舶运动和增加的阻力,并估计由于其在规则和不规则海浪中的运行而导致的有效功率和燃料消耗的增加。这些分析是在设计和较慢的航行速度下对规则海域的一系列波浪状况以及不规则海域的三种不同海况进行的。将在对应于弗劳德数0.25的船速下获得的结果与可用的实验数据进行比较,发现与实验非常吻合。使用基于势流理论的VERES进行了数值分析。

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