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A preliminary method for the numerical prediction of the behavior of air bubbles in the design of Air Cavity Ships

机译:空洞船舶设计中气泡行为数值预测的初步方法

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Air-cavity ships (ACS) are advanced marine vehicles that use air injection under hull to improve the vessel's hydrodynamic characteristics. Although the concept of drag reduction by supplying gas under the ship's bottom was proposed in the 19th century by Froude and Laval, at this time there are not many systematic studies on this subject. This paper is a preliminary work with the purpose of being a basic tool for the design of the ACS with computational fluid dynamic methods. The study aims to conduct a series of computational tests to compare the numerical models of bubble with experimental data. The first step of this study was to investigate the behavior of free bubble in water, considering as parameters the critical mass of air, the rising speed and aspect ratio of the bubble. Then it is evaluated the interaction bubble-flat plate in order to obtain a reliable prediction of the behavior of air bubbles under the hull.
机译:空气腔船(ACS)是先进的船用车辆,在船体下使用空气喷射来改善血管的流体动力学特性。虽然在19世纪由Froude和Laval提出了通过供应船底下的汽油减少的概念,但此时有关这一主题的系统研究没有许多系统研究。本文是一个初步的工作,目的是成为具有计算流体动态方法的ACS的基本工具。该研究旨在进行一系列计算测试,以比较泡沫的数值模型与实验数据。本研究的第一步是探讨水中自由气泡的行为,考虑到突出的临界质量,泡沫的上升速度和纵横比的参数。然后评估相互作用气泡平板,以便获得船体下气泡行为的可靠预测。

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