用复合材料制造的船舶对其性能和减少二氧化碳排放的影响。

Mirela Koci
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摘要

复合材料已开始用于生产旅游帆船,特别是游艇型的帆船,在实践中证明了设计师对复合材料与钢相比所带来的巨大优势的期望。本世纪新一代船舶的性能将要求不断增加使用创新材料,以满足潜在买家对这些车辆日益增长的需求。另一方面,基于欧共体已经批准的尊重航运二氧化碳排放规范的原则——根据《京都议定书》气候变化,有必要生产显著减轻船舶重量的船舶,因此发动机功率和燃料消耗将显著减少二氧化碳排放。除了伴随船用发动机生产而来的创新之外,这也表明了复合材料相对于传统材料的发展趋势。2014年全球复合材料市场估计为244亿美元,预计将达到5.8%的增长,预计未来五年将以5.8%的速度增长,到2020年将达到344亿美元。通过这篇科学论文,我将为海事部门做出贡献,分析在海上运输业中使用复合材料生产海洋船舶的积极影响,不仅因为它们具有出色的技术性能,而且还因为它们对海上直线二氧化碳排放的积极影响。这项研究是基于对奥特朗托海峡海上船只的数据分析而开展的。
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Impact of Marine Vessels Produced with Composite Materials in Their Perfomance and Reduction of CO2 Emmisions.
Composite materials that have started to be used in the production of tourist sailing vehicles especially those of the yacht type, have proven in practice the designers' expectations for the great advantages they have brought in comparison with steel. The performance of new generation ships of this millennium will require the ever-increasing use of innovative materials to meet the growing demand of potential buyers of these vehicles.On the other hand, based on the principles already sanctioned by the European Community for respecting the norms set for CO2 emissions from shipping - in accordance with the Kyoto Protocol on Climate Change, it is necessary to produce marine vehicles that reduce significantly the weight of marine vehicles and for consequence the engine power and fuel consumption will significantly reduce CO2 emissions. This, in addition to the innovation that accompanies the production of marine engines, demonstrates the trend of the development of composite materials in relation to traditional materials.The global composite materials market is estimated at USD 24.4 billion in 2014 and is projected to reach 5.8% growth and is expected to grow at 5.8% in the next five years, reaching 34.4 billion in 2020.Through this scientific paper I will bring a contribution to the maritime sector, analysing the positive impact that has the production of marine vessels with composite materials in maritime transport industry, not only for their excellent technical performance, but also for their positive impact in CO2 emissions in maritime straight. The study has been developed based on data analysing of maritime vessels in the Straight of Otranto.
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