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THERMAL DISPLACEMENT OF CRANKSHAFT AXIS OF SLOW-SPEED MARINE ENGINE

机译:慢速海洋发动机曲轴轴的热位移

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摘要

The paper presents analysis of displacement of a crankshaft axis caused by temperature of marine, slow-speed main engine. Information of thermal displacement of a power transmission system axis is significant during a shaft line alignment and a crankshaft springing analysis. Warmed-up main engine is a source of deformations of an engine body as well as a ship hull in the area of an engine room and hence axis of a crankshaft and a shaftline. Enginesu27 producers recommend the model of parallel displacement of the crankshaft axis under the influence of an engine heat. The model gives us the value (one number!) of the crankshaft axis displacement in the hot propulsion systemu27s condition. This model may be too simple in some cases. Presented numerical analyses are based on temperature measurements of the main engine body and the ship hull during a sea voyage. The paper presents computations of MAN B&W K98MC type engine (power: 40000 kW, revolutions: 94 rpm) mounted on 4500 TEU container ship (length: 290 m). Propulsion system is working in nominal, steady-state conditions; it is the basic assumption during the analyses. Numerical analyses were preformed with usage of Nastran software based on Finite Element Method. The FEM model of the engine body comprised over 800 thousand degree of freedom. Stiffness of the ship hull (mainly double bottom) with the foundation was modelled by a simple cuboid. Material properties of that cuboid were determined on the base of separately performed calculations.
机译:曲轴的位移的纸呈现分析轴通过船舶,慢速主发动机的温度而引起的。的动力传递系统轴的热位移的信息是轴线对准和曲轴弹跳分析期间显著。暖机主发动机是发动机主体的变形的源极,以及在发动机室内的区域中的船体,因此曲轴和轴系的轴。发动机 U27生产者推荐的发动机热量的影响下曲轴轴线的平行位移的模型。该模式让我们在炎热的推进系统 u27s条件曲轴轴线位移值(一个数字!)。这种模式可能是在某些情况下,太简单了。呈现数值分析是一个海上航行期间,基于所述主发动机主体和船体的温度测量。 MAN B&W K98MC型发动机的纸呈现计算(:40000千瓦,转速:功率94转)地安装在4500集装箱船(长度:290米)。推进系统是工作在标称,稳态条件;这是分析过程中的基本假设。数值分析是基于有限元方法的Nastran软件的使用预制。发动机机体的有限元模型由超过80万自由度。船体(主要是双层底)与基础的刚度是由一个简单的长方体建模。该长方体的材料性质分别执行的计算的基础上确定的。

著录项

  • 作者

    Lech Murawski;

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  • 年度 2016
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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