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首页> 外文期刊>IJIDeM: International Journal on Interactive Design and Manufacturing >Numerical and experimental analysis of a high innovative hydrofoil
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Numerical and experimental analysis of a high innovative hydrofoil

机译:高创新水翼的数值和实验分析

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The hydrofoil is a craft where the weight is entirely supported by the lift generated by the submerged part of wings. The particular structure of the craft requires a thorough study of the architecture of the hull, whose structure differs from others high speed vessels since the lift on wing surfaces are transmitted to the hull in limited areas (wing attacks). The authors have developed a research to optimize geometry of hull and wing system on a hydrofoil capable to carry 250 passengers at a speed of 35 knots, operating among Sicilian island. The principal goals of the new hydrofoil concern both the fuel reduction that the improvement of the comfort in terms of seakeeping and levels of acoustic vibrations. In order to reduce the power engines and the acoustic vibrations and to increase the seakeeping during the cruising route and the takeoff, a thorough study of the bow sections (whose profile contributes during this step to exert a thrust which, added to that provided by the wing surfaces, drastically reduces takeoff times) is conducted. Several experimental tests, performed at the towing tank, have allowed to better define the shapes of the hydrofoil and the profile of the wings. An economic assessment was carried out in order to demonstrate that the innovation effort contributes to reducing both construction that operating costs.
机译:水翼是一种工艺,其中重量完全由由底翅翅片的潜水部分产生的升力。工艺的特定结构需要彻底研究船体的架构,其结构与其他高速容器不同,因为翼表面上的升降机被传递到有限区域(机翼攻击)。作者开发了一种研究,优化船体和机翼系统的几何形状,该水翼工艺能够以35个结的速度携带250乘客,在西西里岛上运行。新水翼工的主要目标涉及燃油减少,即在海人和声学振动水平方面提高了舒适性。为了减少电力发动机和声学振动,并在巡航路线和起飞期间增加海守,对弓形部分的彻底研究(其简档在此步骤中贡献,以施加推力,这增加到其所提供的推力进行翼面,大幅减少起飞时间)。在牵引槽上进行的几种实验测试允许更好地限定水翼罐的形状和翼的轮廓。进行了经济评估,以证明创新努力有助于降低运营成本的两种建设。

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