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Performance Analysis of Combined Cycle with Air Breathing Derivative Gas Turbine, Heat Recovery Steam Generator, and Steam Turbine as LNG Tanker Main Engine Propulsion System

机译:空气呼吸衍生汽轮机,热回收蒸汽发生器和汽轮机组合循环性能分析,如LNG油轮主机推进系统

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摘要

This study explains the performance analysis of a propulsion system engine of an LNG tanker using a combined cycle whose components are gas turbine, steam turbine, and heat recovery steam generator. The researches are to determine the total resistance of an LNG tanker with a capacity of 125,000 m3 by using the Maxsurf Resistance 20 software, as well as to design the propulsion system to meet the required power from the resistance by using the Cycle-Tempo 5.0 software. The simulation results indicate a maximum power of the system of about 28,122.23 kW with a fuel consumption of about 1.173 kg/s and a system efficiency of about 48.49% in fully loaded conditions. The ship speed can reach up to 20.67 knots.
机译:本研究介绍了使用组件是燃气轮机,汽轮机和热回收蒸汽发生器的组合循环对LNG油轮的推进系统发动机的性能分析。研究是通过使用MaxSurf电阻20软件来确定LNG油轮的总电阻为125,000 M3,以及设计推进系统,通过使用Cycle-Tempo 5.0软件来满足来自电阻的所需功率。仿真结果表明系统的最大功率约为28,122.23千瓦,燃料消耗约为1.173千克/秒,在完全加载条件下的系统效率约为48.49%。船舶速度可达20.67节。

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