两艘集装箱船能效设计指标分析及EEDI对推进性能的影响

Gabriel Constantin, M. Amorăriței, Dunărea de Jos
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引用次数: 1

摘要

作为控制船舶二氧化碳排放的一项技术措施,国际海事组织(IMO)制定了能效设计指数(EEDI)。国际海事组织考虑到影响二氧化碳排放的所有组件的技术发展,以实现新船每容量英里的最低能源效率水平。本文针对800teu和1805 TEU两艘集装箱船进行了能效设计指标计算,并分析了EEDI要求对推进性能的影响。船舶推进系统已经设计好了:每艘船都选择了三个主发动机,并且重新设计了螺旋桨,以消耗交付的动力。为了在标准范围内实现EEDI,需要在以下性能之间取得平衡:船舶容量、功率、速度、最小燃料消耗和向大气中排放的最小气体量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of the energy efficiency design index for two container ships and EEDI influence on propulsion performances
As a technical measure to control CO2 emissions from ships, the International Maritime Organization (IMO) has developed the Energy Efficiency Design Index (EEDI). IMO takes into consideration the technical development of all the components that influence CO2 emissions, to achieve a minimum level of energy efficiency per capacity mile for new ships. The paper is focused on Energy Efficiency Design Index calculation for two container ships: 800 TEU and 1805 TEU and analysis of EEDI requirements influence on propulsion performances. Ships propulsion systems have been designed: three main engines have been selected for each ship and the propellers have been redesigned to consume delivered power. To achieve an EEDI within standards, a balance of performances is needed between: ship capacity, power, speed, minimum fuel consumption and the smallest amount of gas emitted into the atmosphere.
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