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Propeller performance on a model ship in straight and steady drift motions from single blade loads and flow field measurements

机译:单刀片负载和流场测量的直线漂移运动中模型船上的螺旋桨性能

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In the field of marine hydrodynamics, propeller operations in off-design conditions represent a challenging topic that has been increasingly attracting interest among industry and research institutions. Over the ship operating life, off-design conditions and the associated modifications of the propeller inflow are connected to a wide range of events such as degradation of the overall efficiency, amplification of unwanted side effects of propeller operations (pressure pulses, vibration and noise) and, ultimately, failure of the ship propulsion system. In this work, the performance of a propeller operating in off-design conditions is investigated by a comprehensive experimental activity aimed at synthesizing the cause-and-effect relation between the propeller loads and its inflow. To this purpose, two novel set-ups are employed: the first one is dedicated to the measurement of single blade loads, whereas the second, a boroscopic-based Stereo-PIV (SPIV) system, is focused on the inflow analysis. The overall measurement apparatus is installed on a twin-screw ship model. Experiments, carried out in the CNR-INM towing tank, consist of straight ahead and steady drift motions at drift angles +/- 13 degrees and +/- 27 degrees. This test matrix is representative of weak and tight maneuvering conditions.
机译:在海洋流体动力学领域,非设计条件的螺旋桨作业代表了一个挑战性的话题,越来越多地吸引了行业和研究机构的兴趣。通过船舶运营寿命,非设计条件和螺旋桨流入的相关修改连接到广泛的事件,如劣化的整体效率,放大螺旋桨操作的不需要的副作用(压脉冲,振动和噪音)而且,最终,船舶推进系统的失败。在这项工作中,通过综合实验活动来研究在非设计条件下操作的螺旋桨的性能,旨在合成螺旋桨负荷与其流入之间的原因和效应关系。为此目的,采用了两种新建设置:第一个专用于单刀片负载的测量,而第二个是硼镜的立体声PIV(SPIV)系统集中于流入分析。整体测量装置安装在双螺杆船模型上。在CNR-INM牵引箱中进行的实验,由漂移角度+/- 13度和+/- 27度的直线前进和稳定的漂移运动组成。该测试矩阵代表弱和紧密的操纵条件。

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