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Development of an Energy Efficient Stern Flap for Improved EEDI of a Typical High-speed Displacement Vessel

机译:用于改进典型高速排量船舶EEDI的节能船尾皮瓣的开发

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摘要

The surge in maritime trade is leading to large scale deployment of high-speed displacement ships by all nations. Cargo vessels are designed for a voyage in pre-determined routes at consistent speeds. On the other hand, high-speed displacement vessel engines designed with a capability to cater for top speeds arc under-utilised during their normal course of operation. This sub-optimal utilisation impacts efficiency and increases emissions. In this study, a most favourable stem flap is designed for reducing the energy efficiency design index of a typical high-speed displacement vessel with a slender hull. CFD simulations and experimental model testing were conducted for 12 different stern flap configurations for determining most favourable flap design in the Froude no of 0.17-0.48. Performance of the most favourable stem flap was established by calculating, energy efficiency design index (EEDI) and fuel consumption based on typical operating profile. NOx, VOC and PM emissions were estimated in with and without flap condition. Studies demonstrated that the stem flap reduced effective power demand, average fuel consumption and emissions by about 8 per cent, which when considered for the ship's operating life cycle, are significant. The most favourable stem flap reduced EEDI by 3.74 units and 1.98 units as compared to the bare hull condition and the required EEDI respectively, thereby demonstrating that EEDI could be used as an index to indicate stem flap efficiency.
机译:海事贸易的激增导致所有国家大规模部署高速排量。货物船只以一致的速度为预先确定的路线的航程设计。另一方面,高速位移血管发动机设计,该发动机设计具有迎合顶部速度在其正常操作过程中使用的顶部速度的能力。该子最优利用影响效率并增加排放。在本研究中,最有利的杆翼片设计用于降低典型高速位移容器的能效设计指数与纤细的船体。 CFD模拟和实验模型测试进行了12种不同的船尾襟翼配置,以确定FRoude No中最有利的皮瓣设计0.17-0.48。通过基于典型操作简档的计算,能效设计指数(EEDI)和燃料消耗来建立最有利的杆瓣的性能。 NOx,VOC和PM排放估计有没有皮瓣状况。研究表明,茎皮瓣减少了有效的电力需求,平均燃料消耗和排放约8%,当船舶的经营生命周期考虑时,这是显着的。与光秃秃的船体状况和所需的EEDI相比,最有利的茎瓣减少了3.74个单位和1.98个单位,从而证明EEDI可以用作指示茎襟翼效率的指标。

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