A Computer-Based Analysis to Study the Effect of LCB Position on Ship Resistance in the Early Design Stage: A Case Study with a Fishing Vessel Hull

Blenard Xhaferaj
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Abstract

Minimising ship resistance is considered a crucial aspect of the design process, as it impacts fuel consumption during the operational phase, which in turn impacts financial and environmental aspects. Minimising the resistance is a complex issue, because different main geometrical characteristics of the hull, such as dimensional ratios, form coefficients, shape of sections and waterlines, longitudinal centre of buoyancy LCB, etc., may affect its value. In the early design stage, computational tools based on parametric models for the prediction of resistance can be used because they provide rapid evaluation of resistance within an acceptable accuracy level. The paper aims to present a computer-based methodology for studying the effect of LCB position on ship resistance at the early design stage. The tool used for the analyses is a software developed by the author based on regression models for the prediction of resistance. The methodology was illustrated with a case study analysis of a hull of the well-known Ridgely-Nevitt fishing vessel series. For the hull taken in consideration, the results of the analysis showed that the hull with the LCB positioned at −2% of the LPP aft amidships exhibited minimal resistance characteristics.
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设计初期LCB位置对船舶阻力影响的计算机分析——以某渔船船体为例
最小化船舶阻力被认为是设计过程中的一个关键方面,因为它会影响操作阶段的燃料消耗,进而影响财务和环境方面。最小化阻力是一个复杂的问题,因为船体的不同主要几何特性,如尺寸比、形状系数、截面和水线形状、纵向浮力中心LCB等,都可能影响其值。在早期设计阶段,可以使用基于参数模型的计算工具来预测电阻,因为它们可以在可接受的精度水平内快速评估电阻。本文旨在提出一种基于计算机的方法来研究在设计初期LCB位置对船舶阻力的影响。用于分析的工具是作者基于预测抗性的回归模型开发的软件。该方法以著名的Ridgely-Nevitt系列渔船的船体为例进行了分析。对于所考虑的船体,分析结果表明,LCB位于LPP船尾中部- 2%的船体表现出最小的阻力特性。
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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