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Comparison of ship plant layouts for power and propulsion systems with energy recovery

机译:具有能量回收功能的动力和推进系统的船厂布局比较

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摘要

Currently the increase in fuel costs and the need to reduce Carbon Dioxide (CO_2) emissions have encouraged the search for even more efficient solutions to be adopted in energy conversion systems for ship installations.These systems generally include thermal prime movers consisting mainly of two-stroke or four-stroke diesel engines, a waste heat recovery (WHR) plant, a steam turbine and possibly a gas turbine, as well as electric machinery.These components may be used in various ways and through different plant configurations, whose optimization is under investigation by researchers and diesel engine manufacturers. In this paper four schemes of ship propulsion plants, using a two-stroke diesel engine equipped with waste heat recovery system are presented, analysed and compared by simulation. Some of the considered layouts can include also an electric motor to support the main engine in providing power to the propeller On the other hand the electric power can be generated from both the diesel generators and the WHR plant. The considered propulsion plant schemes are compared in order to identify the configuration that meets in the best way the request of propulsive, electrical and thermal power of a 158000 dead weight tonnes (DWT) crude oil tanker ship, belonging to the Premuda Company, taken as a reference unit in this study.The comparison is carried out taking into account the payback time of the installation, the annual saving in the fuel outlay and the CO_2 emissions. This last parameter is considered through the evaluation of the Energy Efficiency Design Index (EEDI).
机译:当前,燃料成本的增加和减少二氧化碳(CO_2)排放的需求促使人们寻求在船舶安装的能量转换系统中采用更有效的解决方案。这些系统通常包括主要由二冲程组成的热原动机或四冲程柴油发动机,废热回收(WHR)厂,蒸汽轮机以及可能的燃气轮机以及电机。这些组件可能以各种方式和通过不同的工厂配置使用,其优化正在研究中由研究人员和柴油发动机制造商提供。本文提出了两种采用配备废热回收系统的二冲程柴油机的船舶推进装置方案,并通过仿真进行了比较和分析。某些已考虑的布局还可以包括电动机,以支持主机为螺旋桨提供动力。另一方面,电力可以从柴油发电机和WHR设备中产生。比较考虑的推进装置方案,以便确定以最佳方式满足属于Premuda公司的158000载重吨(DWT)原油轮船的推进,电力和热力要求的配置,即在进行这项比较时,要考虑到设备的投资回收期,每年的燃料费用节省和CO_2排放。通过评估能源效率设计指数(EEDI)来考虑最后一个参数。

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