CFD Analysis on Hydrodynamic Characteristics for Optimizing Torpedo Anchors

Jing Sun, Haixiao Liu
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引用次数: 5

Abstract

Compared with other types of anchors, gravity-installed anchors (GIAs) have several main advantages such as simple structure, convenient installation way and cost reduction. The torpedo anchor is one type of GIAs. The geometric configurations have a direct influence on the hydrodynamic characteristics of the anchor, and thus affect its installation performance in water. The present work aimed to put forward some new aspects for optimizing the existing geometries of torpedo anchors by comprehensively improving the hydrodynamic characteristics of the anchor during installation in water. A computational fluid dynamics (CFD) model was established and numerical simulations were carried out using the software of ANSYS FLUENT. The hydrodynamic characteristics concerned involved the drag coefficient, the terminal velocity and the directional stability. The present study paid more attention to the fin’s design. By changing the fin parameters, including the aspect ratio and the area of the fin, the optimum design method of the fin was proposed, which would make sure of a higher terminal velocity as well as good directional stability. Besides, effects of the mass distribution on the hydrodynamic characteristics were investigated. The present work provides a design reference for torpedo anchors and is also beneficial to the research and development of new types of GIAs.
鱼雷锚杆优化水动力特性CFD分析
与其他锚杆相比,重力安装锚杆具有结构简单、安装方式方便、降低成本等主要优点。鱼雷锚是GIAs的一种。锚杆的几何构型直接影响锚杆的水动力特性,从而影响锚杆在水中的安装性能。本文旨在通过全面改善鱼雷锚在水中安装时的水动力特性,为优化现有锚的几何形状提出一些新的思路。建立了计算流体力学(CFD)模型,并利用ANSYS FLUENT软件进行了数值模拟。所涉及的水动力特性包括阻力系数、终端速度和方向稳定性。目前的研究重点是鳍的设计。通过改变翅片的展弦比和面积等参数,提出了翼片的优化设计方法,使翼片具有较高的终端速度和良好的方向稳定性。此外,还研究了质量分布对水动力特性的影响。本文的研究为鱼雷锚具的设计提供了参考,也有利于新型锚具的研究与开发。
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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