首页> 外文会议>International conference on ocean, offshore and arctic engineering;OMAE2011 >CALCULATIONS ON THE OIL FILM BETWEEN A PROPELLER SHAFT AND THE AFT STERNTUBE BEARING
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CALCULATIONS ON THE OIL FILM BETWEEN A PROPELLER SHAFT AND THE AFT STERNTUBE BEARING

机译:螺旋桨轴和尾部翼肋轴承之间的油膜计算

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The propulsion plant of a vessel generally consists of a propeller, a main engine and a shaft transferring the power. The shaft is supported by a set of bearings. One bearing in particular, the one directly forward of the propeller, is of special interest in this study. The correct functioning of this bearing is vital for the propulsion plant to remain operating. As a result of the different operating conditions of the propulsion plant particularly this bearing is subjected to varying loads. It also has to accommodate a certain slope mismatch with respect to the shaft. If a bearing functions correctly or not depends on the presence of an oil film between the bearing and the shaft. Also the thickness of the film and the generated pressures within it are deciding whether the loading is acceptable or not. As such a detailed analysis of the oil film between the shaft and the bearing presents a scientifically supported method to evaluate the acceptability of the loading of the bearing. Another advantage is that the method makes it possible to verify the correct functioning of the bearing in varying loads related to off design conditions. This study presents a general method to calculate the minimum oil thickness within a cylindrical bearing given such external parameters as load, slope mismatch, shaft speed and the oil viscosity. First a part of the bearing theory is presented as well as the relations governing the oil flow through the bearing. The method to solve the set of equations used is the finite difference method. Some adaptations of the formulae to enable the use of the method are presented. Also is explained what assumptions and boundary conditions are applied. In succession to the theoretical part the method is validated with a comparison to a set of experimental data. The practical significance of the use of the method is demonstrated by a practical case. Finally some conclusions are presented.
机译:船舶的推进装置通常由螺旋桨,主机和传递动力的轴组成。轴由一组轴承支撑。在这项研究中,特别需要关注一个轴承,即直接位于螺旋桨前方的轴承。该轴承的正确功能对于推进装置保持运转至关重要。由于推进装置的不同运行条件,特别是该轴承承受变化的载荷。它还必须适应相对于轴的一定的倾斜度不匹配。轴承是否正常工作取决于轴承和轴之间是否存在油膜。薄膜的厚度及其内部产生的压力也决定了载荷是否可以接受。因此,对轴和轴承之间的油膜的详细分析提出了一种科学的方法来评估轴承载荷的可接受性。另一个优点是,该方法可以在与非设计条件有关的变化载荷下验证轴承的正确功能。这项研究提出了一种通用方法,可在给定外部参数(例如载荷,坡度不匹配,轴速度和油粘度)的情况下计算圆柱轴承内的最小油厚度。首先介绍了轴承理论的一部分,以及控制流过轴承的油的关系。解决所用方程组的方法是有限差分法。提出了一些公式的改编,以使该方法的使用成为可能。还解释了应用什么假设和边界条件。在理论部分之后,通过与一组实验数据进行比较来验证该方法。通过实际案例证明了使用该方法的实际意义。最后提出了一些结论。

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