NUMERICAL STUDY OF THE RESISTANCE REDUCTION IN HYBRID MINI-SUBMARINE

F. A. Rayhan, T. A. Nugraha, H. R. Akhira, Y. Pratiwi, R. Hatuwe
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Abstract

Hybrid mini-submarine is a single innovative ship combining the concepts of conventional fast ships, hydrofoils, and submarine with the specific mission of safeguarding national sovereignty. This study was conducted to analyze the reduction of resistance in this mini-submarine by examining the positioning and shape of NACA hydrofoils. The process involved adjusting the positions of NACA hydrofoils and incorporating different configurations. This was indicated by the inclusion of nine speed configuration in the hydrofoil mode, eight in the conventional mode, and five in the submarine mode. Moreover, Computational Fluid Dynamics (CFD) simulation was applied for analysis using the Ansys CFX software. The results showed that the positioning of the NACA hydrofoils at close proximity reduced the resistance. The selection of symmetrical and slender configuration was also observed to optimize the reduction of resistance. Moreover, the combination of position and NACA hydrofoil 0012 produced an average resistance reduction of up to 12.52%. The configured model successfully reduced the total ship resistance and also identified the optimal position and shape configuration for the NACA hydrofoils. These findings provided valuable insights into the components and characteristics of total ship resistance and served as a valuable reference for further research on the development of maritime security technology.
混合动力小型潜艇减阻数值研究
混合动力小型潜艇是一种结合了传统快速舰艇、水翼和潜艇概念的单一创新型舰艇,肩负着维护国家主权的特殊使命。本研究旨在通过检测 NACA 水翼的位置和形状,分析如何减少这种微型潜艇的阻力。这一过程包括调整 NACA 水翼的位置并采用不同的配置。在水翼模式中采用了九种速度配置,在传统模式中采用了八种速度配置,在潜艇模式中采用了五种速度配置。此外,还使用 Ansys CFX 软件进行了计算流体动力学(CFD)模拟分析。结果表明,NACA 水翼的位置非常接近,从而降低了阻力。同时还观察到,选择对称和细长的配置可优化阻力的减少。此外,位置和 NACA 水翼 0012 的组合平均减少了 12.52% 的阻力。配置模型成功地降低了船舶总阻力,并确定了 NACA 水翼的最佳位置和形状配置。这些发现为了解船舶总阻力的组成和特征提供了宝贵的见解,为进一步研究海上安全技术的发展提供了有价值的参考。
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