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A numerical simulation for reduction of rudder cavitation with gap flow blocking bars

机译:间隙止流杆减少舵空化的数值模拟。

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ABSTRACT In recent practices, a half circular prismatic bar protruding beyond the concave surface of the horn facing the gap has been formed along the centerplane of a rudder to lessen the gap flow between the horn and the movable portion of the rudder system. If a flow through the gap of a rudder is reduced considerably through this approach, previous numerical studies indicate that not only the gap flow but also the rudder cavitation can be noticeably diminished. In the present study, numerical simulations on two-dimensional rudder sections were performed to show that the blocking ability of the single centre bar can be improved by the proper choice of sectional shape. Moreover, a pair of blocking bars attached symmetric to the centerplane on the opposite convex surface of the movable portion is suggested in the study as well, to circumvent the difficulties arising from the practical application of the single centre bars. The bars are placed near the outer edges of the gap easily accessible at the maximum rudder angle to allow simple installation of the device during a maintenance period of a ship. It is found that the pair of blocking bars further improves the blocking effects and application to a practical three-dimensional rudder also backs up the fact.
机译:摘要在最近的实践中,已经沿着舵的中心平面形成了一个半圆形的棱柱,该棱柱突出于喇叭的面向间隙的凹面之外,以减小喇叭和舵系统可移动部分之间的间隙流动。如果通过这种方法大大减小了通过舵间隙的流量,则以前的数值研究表明,不仅间隙流量而且舵的气穴现象都可以明显减少。在本研究中,进行二维舵部分数值模拟表明该单中心杆的阻断能力可通过截面形状的适当选择得到改善。此外,在研究中还提出了一对对称地附接到可移动部分的相对凸表面上的中心平面的阻挡杆,以克服由于单个中心杆的实际应用而引起的困难。所述杆放置在间隙的外边缘附近,在最大舵角处容易接近,以允许在船舶维护期间简单地安装设备。已经发现,一对阻挡杆进一步改善了阻挡效果,并且将其应用到实际的三维舵中也支持了这一事实。

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