利用计算流体力学分析 Flettner 旋翼对卡连杰特-卡甘航线船舶渡运的影响

Akmal Firdausyah, A. Munazid, Prastyono Eko Pambudi, Bagiyo Suwasono
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引用次数: 0

摘要

船舶渡轮是一种海上渡运方式,在世界各地持续运行。与航运活动相关的后果是船舶废气排放的增加。Flettner 转子是一种环保型船舶推进装置。该工具的工作原理遵循马格努斯效应理论,即由于 Flettner 转子两侧的压力差而产生力。本研究将 Flettner 转子应用于 Kalianget-Kangean 轮渡航线,风速分别为 10、15 和 20 节,尺寸分别为 3x1、5x1 和 7x1 米,转速为 500 转/分钟。通过计算流体动力学(CFD)模拟得出的最佳结果显示,在尺寸为 5x1 米、风速为 15 节的情况下,升力系数(CL)为 3.647,升力(Fl)为 2,980,631.2 千牛顿。而在 KMP.DBS I 中,Flettner 转子的隐含百分比为 18.11%。DBS I 的隐含 Flettner 转子比例为 18.11%,KMP.DBS III 为 11.27%,KMP.NS 92 为 5.45%。
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Flettner Rotor Implication on Ship Ferry The Kalianget-Kagean Route Using Computational Fluid Dynamics
Ship's Ferries are a sea crossing that continues to operate around the time. The consequence related to shipping activities is an increase in ship exhaust emissions. One alternative for ship propulsion that is environmentally friendly is the Flettner rotor. The working principle of the tool follows the theory of the Magnus effect, where the force arises due to the difference in pressure between the two sides of the Flettner rotor. This study implicates the Flettner rotor on the Kalianget-Kangean ferry route with variations in wind speeds of 10, 15 and 20 knots and variations in dimensions of 3x1, 5x1 and 7x1 meters with a rotational speed of 500 rpm. Optimal results through computational fluid dynamics (CFD) simulations show a coefficient of lift (CL) of 3.647 and a lift force (Fl) of 2,980,631.2 kilonewton with dimensions of 5x1 meters and a wind speed of 15 knots. While the implicit percentage of Flettner rotors in KMP. DBS I of 18.11%, KMP. DBS III of 11.27%, and KMP. NS 92 of 5.45%.
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