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Numerical prediction of ventilated planing flat plates for the design of Air Cavity Ships

机译:空腔船设计通风刨平板的数值预测

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In recent years, a great world issue is the respect for the environment. Each researcher, in his competence field, proposes new technologies and new approaches in order to reduce the environmental impact of a product or of an industrial process. In the naval field, the main way in order to reduce the environmental impact of the ship during the navigation is the reduction of the drag resistance and so the reduction of requested power. There are many ways in order to obtain a reduction of drag. This paper investigates, with a preliminary numerical study by means of Computational Fluid Dynamics (CFD), the Air Cavity Ships technology (ACS). A first part of the paper concerns the study of the rising bubble phenomenon inside a water column, in order to choice the better solver settings and understand if the CFD is suitable for this kind of problem. In this phase the main parameters analyzed are: the air critical mass, the rising velocity, the shape and the air circulation inside the bubble. In the second part of the work, a flat plate model with artificial air injection is conducted in order to understand the possible advantages of this application. The principal impacts of this technology are presented in terms of drag coefficient and lift coefficient respect to trim and velocity coefficient. The CFD method could be a suitable and fast method, in the preliminary phase, for the design of the ACS.
机译:近年来,伟大的世界问题是尊重环境。每个研究人员在他的能力领域提出了新技术和新方法,以减少产品的环境影响或工业过程。在海军领域,主要途径以减少导航期间船舶的环境影响是减少阻力阻力等所要求的电力减少。有很多方法为了减少阻力。本文通过计算流体动力学(CFD),空洞船舶技术(ACS)进行了初步数值研究。本文的第一部分涉及水柱内部上升气泡现象的研究,以便选择更好的求解器设置并了解CFD适用于这种问题。在该阶段,分析的主要参数是:气临界质量,速度上升,形状和气泡内的空气循环。在该工作的第二部分中,进行了一种具有人造空气喷射的平板模型,以了解本申请的可能优势。在拖曳系数和升力系数方面提出了该技术的主要影响,提升到修剪和速度系数。 CFD方法可以是初步阶段的合适和快速的方法,用于ACS的设计。

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