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Hydrodynamic resistance analysis of new hull design for multipurpose amphibious vehicle applying with finite volume method

机译:有限体积法的多功能水陆两栖舰船新型船体水动力阻力分析

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摘要

This paper numerically investigated the hydrodynamic resistance of Multipurpose Amphibious Vehicles (MAV) in three bow shapes to approach the better hull bow shape design. This type of vehicle and other blunt-shaped floating vehicles encounter the problem of a large bow wave forming at high speeds. This wave formation is accompanied by higher resistance and at a critical speed results in bow submergence or swamping. Three new shapes of hull bow design for the multipurpose amphibious vehicle were conducted at several speeds to investigate the hydrodynamic phenomena using Computational Fluid Dynamics (CFD, RANS code) which is applied by Ansys-CFX14.0 and Maxsurf. The vehicle’s hydrodynamic bow shapes were able to break up induced waves and avoid swamping. Comparative results with the vehicle fitted with U-shape, V-shape and Flat-shape of hull bow, showed that the U-shape of the hull bow has reduced the total resistance to 20.3% and 13.6% compared with the V-shape and flat shape respectively. Though, the U-shape of hull bow is capable to increase the amphibious operating life and speed of vehicle in calm water. Also it has ability to reduce the vehicle’s required power, fossil fuel consumption and wetted hull surface
机译:本文数值研究了三种弓形的多用途两栖车辆(MAV)的流体动力阻力,以达到更好的船体弓形设计。这种类型的车辆和其他钝形浮动车辆在高速下遇到大的弓形波形成的问题。这种波形形成伴随着更高的阻力,并且在临界速度下会导致船首淹没或陷入沼泽。使用Ansys-CFX14.0和Maxsurf应用的计算流体动力学(CFD,RANS代码),以多种速度对多功能两栖飞行器的船体弓形设计了三种新形状,以研究流体动力学现象。车辆的流体动力弓形可以分解感应波并避免沼泽。与装有U形,V形和扁平形船体弓的车辆的比较结果表明,与V形和V型船形相比,U形船体的总阻力降低了20.3%和13.6%。分别为平面形状。虽然,U形船首弓能够在平静的水中增加水陆两栖车辆的使用寿命和速度。它还具有减少车辆所需动力,减少化石燃料消耗和润湿船体表面的能力

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