网的水动力系数研究

Dae-Ho Song, Chun-woo Lee
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引用次数: 4

摘要

在本研究中,水动力系数采用各种网测量,分析阻力系数和升力系数的变化,作为推导水动力系数的基础研究。利用水槽试验的水动力数据,对基于雷诺数的水动力系数进行了比较分析。然后在分析过程中假设标准化的水动力系数。采用总投影面积相同、网径不同、网目分组比不同的9种网片进行水动力系数测定。这些不同的网制:网组比。网片试验结果如下:首先,迎角越大,网阻系数越大,流速越大,网线直径越大,网阻系数越小。网面升力系数在攻角为30°时呈增大趋势,攻角大于40°时呈减小趋势;随着雷诺数的增加,网面水动力系数逐渐减小,在雷诺数最高时达到最小状态。第四,利用考虑攻角和雷诺数的泛函公式推导水动力系数,并在三维空间中表示。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study on the hydrodynamic coefficients of the nettings
In this study, the hydrodynamic coefficients were measured using various nettings to analyze the change of drag coefficients and lift coefficients as a basic study for deriving hydrodynamic coefficients. The data on hydrodynamic force obtained from the flume tank tests were used to compare and analyze the hydrodynamic coefficients based on Reynolds number. Standardized hydrodynamic coefficients were then assumed during the analysis procedures. The hydrodynamic coefficients were measured using the 9 kinds of nettings in which had the same total projected area with different diameters and mesh-grouping ratio. These different netting systems : mesh-grouping ratio. The results of the test of nettings were as follows; First, the drag coefficients of nettings increased when the higher attack angles applied, and decreased with the increased flow speed and netting twine diameter. Second, the lift coefficients of nettings showed the increased values until the attack angle 30 degree, but decreased for the attack angle over 40 degree. Third, the hydrodynamic coefficients of netting decreased as the Reynolds number increased, and reach at slightly states in the highest numbers. Fourth, the hydrodynamic coefficients were derived from a functional formula considering attack angles and Reynolds number, and presented in the three dimensional space.
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