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Pretraživanje projektnoga prostora voda vratila sporohodnih brodskih dizelskih porivnih postrojenja

机译:缓慢运行的船用柴油机推进装置竖井水线项目空间的搜索

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摘要

In this paper a systematic exploration of a typical two-stroke slow speed marine diesel propulsion shafting design space is performed. First, a set of the four most influential design parameters is defined, consisting of shafting stiffness, propeller, turning wheel and tuning wheel mass moments of inertia. Then, a full set of 625 design points is defined. For each design point a complete torsional vibration analysis has been performed, and the three most significant results were collected. These are the first torsional natural frequency, crankshaft peak torque and shafting peak torque. Finally, the results are presented in three series of response surface diagrams. Furthermore, the ability of each system parameter to change the system response is analysed by using Saaty’s priority theory. The presented results provide better insight into the propulsion system torsional vibration behaviour and encourage designers to achieve a desired design solution already in the preliminary design phase. Although the key findings are related to the specific diesel engine only, it is believed that the presented behaviour is quite general and hence qualitatively applicable to a much broader range of the two-stroke slow speed diesel propulsion plants.
机译:本文对典型的二冲程低速船用柴油机推进轴系设计空间进行了系统的探索。首先,定义了一组四个最具影响力的设计参数,包括轴刚度,螺旋桨,转轮和调谐轮质量惯性矩。然后,定义了总共625个设计点。对于每个设计点,都执行了完整的扭转振动分析,并收集了三个最重要的结果。这些是第一扭转固有频率,曲轴峰值转矩和轴系峰值转矩。最终,结果以三个系列的响应面图表示。此外,使用Saaty的优先级理论分析了每个系统参数改变系统响应的能力。提出的结果可以更好地了解推进系统的扭转振动行为,并鼓励设计人员在初步设计阶段就已经实现了所需的设计解决方案。尽管关键发现仅与特定的柴油发动机有关,但据信所呈现的行为是相当普遍的,因此在质量上适用于范围更广的二冲程慢速柴油机推进装置。

著录项

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    MAGAZINOVIĆ Gojko;

  • 作者单位
  • 年度 2009
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  • 原文格式 PDF
  • 正文语种 eng
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