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Entrainment of Air at the Transoms of Full-Scale Surface Ships

机译:满载水面舰船尾气夹带空气

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We report on the results from a series of full-scale trials designed to quantify the air entrainment at the stern of an underway vessel. While an extremely complex region to model air entrainment due to the confluence of the breaking transom wave, bubbles from the bow, turbulence from the hull boundary layer, and bubbles and turbulence from propellers, the region is a desirable area to characterize and understand because it serves as the initial conditions of a ship's far-field bubbly wake. Experiments were conducted in 2003 from RN Revel le and 2004 from RN Athena II using a custom-built conductivity probe vertical array that could be deployed at the blunt transom of a full-scale surface ship to measure the void fraction field. The system was designed to be rugged enough to withstand the full speed range of the vessels. From the raw time-series data, the entrainment of air at speeds ranging from 2.1 to 7.2 m/s is computed at various depths and beam locations. The data represent the first such in-situ measurements from a full-scale vessel and can be used to validate two-phase ship hydrodynamic CFD codes and initialize far-field, bubbly wake CFD models.
机译:我们报告了一系列旨在量化航行中船舶尾气夹带的全面试验的结果。尽管由于尾气波的汇合,船首的气泡,船体边界层的湍流以及螺旋桨的气泡和湍流的汇合而对空气夹带进行建模的极其复杂的区域,但该区域却是表征和理解的理想区域用作船舶远场起泡的初始条件。实验于2003年从RN Revel le进行,2004年从RN Athena II进行,使用了定制的电导率探针垂直阵列,该阵列可以部署在大型水面舰船的钝尾,以测量空隙率场。该系统的设计坚固到足以承受船只的全速范围。根据原始时间序列数据,可以在各种深度和波束位置计算出空气夹带速度为2.1到7.2 m / s。数据代表了从大型船舶进行的首次此类现场测量,可用于验证两阶段船舶流体动力CFD代码并初始化远场气泡起泡CFD模型。

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