首页> 外文会议>ASME international mechanical engineering congress and exposition >CAVITATION NUMBER AS A FUNCTION OF DISK CAVITATOR RADIUS: A NUMERICAL ANALYSIS OF NATURAL SUPERCAVITATION
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CAVITATION NUMBER AS A FUNCTION OF DISK CAVITATOR RADIUS: A NUMERICAL ANALYSIS OF NATURAL SUPERCAVITATION

机译:空化数作为磁盘空化半径的函数:自然超空化的数值分析

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Due to the greater viscosity and density of water compared to air, the maximum speed of underwater travel is severely limited compared to other methods of transportation. However, a technology called supercavitation - which uses a disk-shaped cavitator to envelop a vehicle in a bubble of steam - promises to greatly decrease skin friction drag. While a large cavitator enables the occurrence of supercavitation at low velocities, it adds substantial drag at higher speeds. Based on CFD results, we propose a new relationship between drag coefficient and disk cavitator radius, and we predict the optimum cavitator radius for a particular torpedo design.
机译:由于与空气相比,水的粘度和密度更高,因此与其他运输方式相比,水下行驶的最大速度受到了严重限制。但是,一种称为超空化的技术-使用圆盘形的空化器将车辆包裹在蒸汽泡中-有望大大减少皮肤摩擦阻力。大的空化器可以在低速下发生超空化,但在较高速度下会增加相当大的阻力。基于CFD结果,我们提出了阻力系数与圆盘空化子半径之间的新关系,并预测了特定鱼雷设计的最佳空化子半径。

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