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A computational study on the performance and emission parameters mapping of a ship propulsion system

机译:船舶推进系统性能与排放参数映射的计算研究

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摘要

In the present article, the mapping of the performance and emission parameters of a merchant vessel propulsion system over the ship operating envelope was carried out by using a model capable of representing the ship propulsion system behaviour. The model was developed based on a modular approach and was implemented in the MATLAB/Simulink environment. The various parts of the propulsion engine as well as the shafting system, the propeller and ship hull were represented by separate submodels having the appropriate interface for exchanging the required variables to each other. The output of the model includes the performance and emission parameters of the engine as well as the operating parameters of the propeller and ship. Initially, the propulsion engine operation under steady state conditions was simulated and the predicted engine performance parameters results were validated. Then, simulations of the ship propulsion system operating points at various resistance curves were performed. Based on the derived results, the mapping of the ship propulsion system performance and emissions parameters was presented and their variation throughout the ship operating envelope was discussed. Finally, an example of using the derived results in order to minimise the fuel consumption and CO2 emissions for a typical ship route is presented and discussed.
机译:在本文中,使用能够表示船舶推进系统行为的模型对商船推进系统的性能和排放参数在船舶营运范围上进行了映射。该模型基于模块化方法开发,并在MATLAB / Simulink环境中实现。推进发动机的各个部分以及轴系,螺旋桨和船体均由单独的子模型表示,这些子模型具有用于相互交换所需变量的适当接口。模型的输出包括发动机的性能和排放参数以及螺旋桨和轮船的运行参数。最初,模拟了发动机在稳态条件下的运行,并对预测的发动机性能参数结果进行了验证。然后,对各种阻力曲线下的船舶推进系统工作点进行了仿真。根据得出的结果,提出了船舶推进系统性能和排放参数的映射,并讨论了它们在整个船舶营运范围内的变化。最后,给出并讨论了使用推导结果以最小化典型船舶航线的燃料消耗和CO2排放的示例。

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