船体FINの船尾流れおよび性能改善に与える影響の数値解析

Satoru Ishikawa
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Abstract

In this study, the applicability of CFD to the design of the optimal arrangement of hull FIN, which is one of the energy-saving devices, was investigated. Considering the calculation environment at the design site of a shipyard, CFD with overset grid approach was applied because it is possible to maintain the accuracy for estimating the energy-saving effect with a small number of grids. The hull FIN is attached to the JBC hull form, and the effect of the installation position in the front/rear and vertical directions on the energy-saving effect was investigated. As a result, it was found that the main reason for the performance improvement by the hull FIN was the wake gain by moving the position of the stern vortex to the outer circumference of the propeller circle. From this, it was also shown that this method is effective for understanding the performance improvement mechanism of energy-saving devices.
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对船体FIN的船尾流动及性能改善的影响的数值分析
本文研究了CFD在船体尾翼优化布置设计中的适用性,这是一种节能装置。考虑到某船厂设计现场的计算环境,由于网格数量较少,可以保持计算节能效果的准确性,因此采用了重叠网格计算方法。将船体尾翼固定在JBC型船体上,研究了船体尾翼在前后方向和垂直方向的安装位置对节能效果的影响。结果表明,尾翼提高性能的主要原因是将尾涡位置移至螺旋桨圈外圆周所获得的尾流增益。由此也表明,该方法对于理解节能装置的性能提升机理是有效的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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船体FINの船尾流れおよび性能改善に与える影響の数値解析 A Study on Risk Assessment for Anchor Dragging Using On-board Measurement Data of a Single Anchored Vessel
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