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Fluctuation in operational energy efficiency of ships and its implications for performance appraisal

机译:船舶运营能源效率的波动及其对绩效评估的影响

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This paper develops a dynamic regression model to quantify the contribution of key external factors to operational energy efficiency of ships. On this basis, kernel density estimation is applied to explore distribution patterns of fluctuations in operational performance. An empirical analysis based on these methods show that distribution of fluctuations in Energy Efficiency Operational Indicator (EEOI) is leptokurtic and fat tailed, rather than a normal one. Around 85% of fluctuations in EEOI can be jointly explained by capacity utilization and sailing speed, while the rest depend on other external factors largely beyond control. The variations in capacity utilization and sailing speed cannot be fully passed on to the energy efficiency performance of ships, due to complex interactions between various external factors. The application of the methods is demonstrated, showing a potential approach to develop a rating mechanism for use in the legally binding framework on operational energy efficiency of ships.
机译:本文开发了动态回归模型,以量化关键外部因素对船舶运营能源效率的贡献。在此基础上,应用内核密度估计来探索操作性能波动的分布模式。基于这些方法的实证分析表明,能效运算指标(EEOI)波动分布是睑板,而不是正常的尾尾。通过产能利用率和帆船速度,可以联合解释EEOI的85%波动,而其余部分主要取决于其他外部因素在很大程度上无法控制。由于各种外部因素之间的复杂相互作用,容量利用率和帆船速度的变化不能完全传递到船舶的能效性能。证明了该方法的应用,示出了开发用于对船舶操作能源效率的法律绑定框架中使用的额定机制的潜在方法。

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