Mean-Flow Measurements in the Boundary Layer and Wake of a Series 60 CB = .6 Model Ship With and Without Propeller

Y. Toda, F. Stern, I. Tanaka, V. C. Patel
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引用次数: 20

Abstract

Results are presented from a towing-tank experiment of propeller-hull interaction conducted in order to provide detailed documentation of the complete flow field appropriate both for explicating the flow physics and validating computational methods. Mean-velocity and pressure field measurements were made for the with and without propeller conditions for the Series 60 CB = .6 hull form, Surface-pressure distributions and wave profiles were measured for both conditions. Resistance and self-propulsion teats were also conducted, An overview of the experiments is given, and some example results are discussed to point out the essential differences between the flows with and without propeller. The results are analyzed to assess the nature of the interaction between the propeller and the hull boundary layer and wake. To this end, use is made of a propeller performance program with both nominal and effective inflows. It is shown that most features of the interaction can be explained as a direct consequence of the propeller loading resulting from its operation with a three-dimensional nonuniform inflow.
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60系列CB = .6模型船带和不带螺旋桨的边界层和尾迹平均流量测量
为了提供完整流场的详细文件,既适合于解释流动物理,也适合于验证计算方法,本文给出了螺旋桨-船体相互作用的拖曳-水箱实验的结果。对60系列CB = .6型船体进行了有螺旋桨和无螺旋桨两种情况下的平均速度场和压力场测量,并测量了两种情况下的水面压力分布和波浪剖面。同时进行了阻力和自推进实验,对实验进行了概述,并对一些算例结果进行了讨论,以指出有螺旋桨和无螺旋桨流动的本质区别。分析了这些结果,以评估螺旋桨与船体边界层和尾流之间相互作用的性质。为此目的,使用螺旋桨性能程序与名义和有效的流入。结果表明,大多数相互作用的特征可以解释为螺旋桨在三维非均匀入流中运行时所产生的载荷的直接结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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