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Manufacturing Tolerance Effects on Ship Rudder Force/Cavitation Performance

机译:船舵力/空化性能的制造公差效应

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Rudder manufacturing tolerances can have an effect on rudder lift, drag, torque, cavitation, and surface erosion. An unstructured, incompressible Reynolds-averaged Navier-Stokes Computational Fluid Dynamics code, U~2NCLE, is used in this study to evaluate the effects of manufacturing variations on rudder lift, drag, and torque, in the absence of cavitation. Additionally, a boundary element method code, PROPCAV, is used to analyze the effects of manufacturing tolerances on rudder cavitation inception speed. This study investigated: (1) leading edge droop, (2) trailing edge twist, (3) spanwise twist, (4) longitudinal misalignment, and (5) transverse misalignment, as well as certain combinations of these effects, on a typical navy type spade rudder. The resulting computations for the deformed rudders revealed that construction variations which result in trailing edge twist have a significant impact on the rudder's torque coefficients. The results also showed the effects were additive when multiple manufacturing deformations were applied on the same side of the rudder, but subtractive when applied on opposite sides. For the cavitation study, the resulting computations for the deformed rudders reveal that construction variations which result in leading edge droop have the greatest effect on rudder cavitation.
机译:舵制造公差可以对舵升力,拖曳,扭矩,空化和表面腐蚀产生影响。在本研究中使用了一个非结构化的不可压缩的雷诺平均水平Navier-Stokes计算流体动力学代码U〜2ncle,以评估在没有空化的情况下对舵升,拖动和扭矩的制造变化的影响。另外,边界元素方法代码,ProPCAV用于分析制造公差对舵节空截止速度的影响。本研究调查:(1)前缘下垂,(2)后缘扭曲,(3)翼展捻,(4)纵向未对准,(5)横向未对准,以及这些效果的某些组合,在典型的海军上类型Spade舵。所得到的变形舵器的计算揭示了导致后缘扭转的结构变型对舵的扭矩系数产生显着影响。结果还表明,当在舵的同一侧施加多个制造变形时,效果是添加剂,而是当施加在相对侧的同一侧时。对于空化研究,所得到的变形舵果计算揭示了导致前缘下垂导致的施工变化具有最大的舵腔。

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