Stern flaps: A cost-effective technological option for the Indian shipping industry

Y. Hemanth Kumar, R. Vijayakumar
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引用次数: 8

Abstract

ABSTRACT Surface Combatants are highly dependent on fossil fuels for their propulsion. During the course of its voyage, these vessels experience considerable amounts of drag or resistance based on the operational environment and their hull form. Reduction of this drag would result in a corresponding reduction in fuel costs, exhaust emissions, and an increase in the vessel’s speed and range. The operational flexibility of the vessel is enhanced by an increase in the time between successive refuellings, as well as the distance over which the vessel can operate without the need for replenishment. Of the many energy saving devices, fitment of a stern flap on Surface combatants is a very popular cost-effective means for drag reduction. The U.S Navy has extensively installed stern flaps on their combatants and, through this experience, found that suitably designed stern flaps had reduced the power requirement of the vessel they were fitted on by about 4–19%, an amount that translates to significant fuel savings and reduction in emissions. This paper will discuss the concept of stern flaps, examine the benefits offered by this technology on U.S Naval platforms, and will present the scope of leveraging this technology in Indian Defence Shipbuilding and Ship repair which could lead to significant reductions in power and emissions without compromising the platform’s performance.
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船尾襟翼:印度航运业的一种经济有效的技术选择
水面战舰高度依赖化石燃料作为推进动力。在航行过程中,这些船只会经历相当大的阻力或阻力,这取决于操作环境和它们的船体形状。减少这种阻力将导致相应的燃料成本、废气排放的减少,并增加船舶的速度和航程。船舶的操作灵活性通过增加连续加油之间的时间以及船舶可以在不需要补充燃料的情况下操作的距离而增强。在许多节能装置中,水面战斗舰艇安装船尾襟翼是一种非常流行的经济有效的减阻手段。美国海军已经在他们的战斗舰艇上广泛安装了尾襟翼,并通过这一经验发现,适当设计的尾襟翼可以将安装尾襟翼的舰艇的动力需求降低约4-19%,这一数量转化为显著的燃料节约和排放减少。本文将讨论尾翼襟翼的概念,研究该技术在美国海军平台上提供的好处,并将展示在印度国防造船和船舶维修中利用该技术的范围,这可能会在不影响平台性能的情况下显著减少功率和排放。
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