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An Application of the Tank Test with a Model Ship for Design of Ship Propulsion Plant System

机译:罐试验与船舶推进厂系统设计模型试验

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Engine power reduction is now regarded as the most efficient and easy realisable measure to improve the Energy Efficiency Design Index, introduced by the IMO. However, there is a concern regarding the sufficiency of propulsion power to maintain manoeuvrability of ship in the adverse sea, and so the IMO also set the interim guideline to assess Minimum Propulsion Power (MPP). As a result of these streams, it has never been more important to evaluate the performance of the ship in actual sea conditions, even including engine characteristics deeply. Here, as a method to validate or investigate designs of ship propulsion plant system in the initial design stage, the authors have developed an intelligent motor system for the ship model test, called as a Marine Diesel Engine Simulator (MDES). The MDES consists of the cycle mean value model of engine, a speed governor and motion equation of propeller shaft. The MDES simulates the response of the engine model in real time, based on the measured propeller torque and speed, and manage the rotational speed of the motor as the calculated response. In this way, the engine matching, requirement on MPP, speed governor settings, etc., can be easily validated at the design stage without the need for full-scale tests. This paper briefly introduces the tank test methodology and then discusses the test results of propulsion plant responses in regular waves at different speed governor settings in details.
机译:发动机功率降低现已认为是改善IMO引入的能效设计指数的最有效且易变化的措施。然而,有人担心推进能力在不利海洋中保持船舶的机动性,因此IMO还设定了临时指南以评估最小推进力(MPP)。由于这些流,评估了在实际海洋状况中的船舶的性能并未从未如此重要,甚至包括引擎特性深入。这里,作为验证或调查船舶推进装置系统在初始设计阶段的设计的方法,作者开发了船舶模型试验的智能电机系统,称为船用柴油发动机模拟器(MDES)。 MDE包括发动机的循环平均值模型,螺旋桨轴的速度调速器和运动方程。基于测量的螺旋桨扭矩和速度,MDE模拟发动机模型的响应,并以计算的响应管理电动机的转速。通过这种方式,发动机匹配,对MPP,速度调速器设置等的要求,可以在设计阶段轻松验证,而无需满量程测试。本文简要介绍了坦克试验方法,然后在详细信息中讨论了不同速度调速器环境中常规波的推进厂响应的测试结果。

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