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Experimental study on the wake fields of a ship attached with model ice based on stereo particle image velocimetry

机译:基于立体粒子图像测速的模型冰船尾流场实验研究

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In this study, a 76000 DWT 1B ice-class Panamax Bulker attached with model ice was used as a test system for measuring the nominal wake fields based on underwater stereo particle image velocimetry. The results show that: The attached ice block adds a "virtual thickness" to the ships stern that is equal to the thickness of the ice blocks. The interferes between ice blocks and ship's wake field results in significant expansions of the ship's axial velocity contours compared with the ice-free state, which also leads to the formation of severe velocity blockage zones (with u/U 0.1) within the wake field against the incident flows of the propeller. The attachment of model ice to hull leads to interference in the stern's wake fields, and disrupts the streamlined in the vicinity of the hull. Furthermore, the non-streamlined shape of the model ice generates complex vortices that interfered with the bilge vortices of the bare hull. The level of interference varies according to the size and distribution of the model ice attachments, and the bilge vortices tends to weaken or shift outwards. Then, the test data were corrected based on momentum theory to be more close to the real phenomena.
机译:在这项研究中,将附有模型冰的76000 DWT 1B冰级巴拿马型散货船用作基于水下立体粒子图像测速仪测量标称尾流场的测试系统。结果表明:附着的冰块使船尾增加了“虚拟厚度”,该厚度等于冰块的厚度。与无冰状态相比,冰块与船舶尾流场之间的干扰导致船舶的轴向速度轮廓线显着扩展,这还导致在尾流场内形成严重的速度阻塞区(u / U <0.1)反对螺旋桨的入射流。模型冰附着在船体上会导致对船尾尾流场的干扰,并破坏船体附近的流线型。此外,模型冰的非流线型形状会产生复杂的涡旋,这些涡旋会干扰裸露船体的舱底涡旋。干扰的程度根据模型冰附件的大小和分布而变化,并且舱底涡流趋于减弱或向外移动。然后,基于动量理论对测试数据进行校正,使其更接近真实现象。

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