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Energy and exergy analysis of the turbo-generators and steam turbine for the main feed water pump drive on LNG carrier

机译:LNG船上主给水泵驱动的涡轮发电机和蒸汽轮机的能量和火用分析

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摘要

Nowadays, marine propulsion systems are mainly based on internal combustion diesel engines. Despite this fact, a number of LNG carriers have steam propulsion plants. In such plants, steam turbines are used not only for ship propulsion, but also for electrical power generation and main feed water pump drive. Marine turbo-generators and steam turbine for the main feed water pump drive were investigated on the analyzed LNG carrier with steam propulsion plant. The measurements of various operating parameters were performed and obtained data were used for energy and exergy analysis. All the measurements and calculations were performed during the ship acceleration. The analysis shows that the energy and exergy efficiencies of both analyzed low-power turbines vary between 46% and 62% what is significantly lower in comparison with the high-power steam turbines. The ambient temperature has a low impact on exergy efficiency of analyzed turbines (change in ambient temperature for 10 degrees C causes less than 1% change in exergy efficiency). The highest exergy efficiencies were achieved at the lowest observed ambient temperature. Also, the highest efficiencies were achieved at 71.5% of maximum developed turbogenerator power while the highest efficiencies of steam turbine for the main feed water pump drive were achieved at maximum turbine developed power. Replacing the existing steam turbine for the main feed water pump drive with an electric motor would increase the turbo-generator energy and exergy efficiencies for at least 1-3% in all analyzed operating points. (C) 2017 Elsevier Ltd. All rights reserved.
机译:如今,船舶推进系统主要基于内燃机柴油机。尽管如此,许多液化天然气运输船仍设有蒸汽推进装置。在这样的工厂中,蒸汽轮机不仅用于船舶推进,还用于发电和主给水泵驱动。在分析的带有蒸汽推进装置的液化天然气运输船上,研究了用于主给水泵驱动的船用涡轮发电机和蒸汽轮机。进行各种操作参数的测量,并将获得的数据用于能量和火用分析。所有的测量和计算都是在船舶加速期间进行的。分析表明,分析后的两种低功率涡轮机的能量和火用效率在46%至62%之间变化,与大功率蒸汽涡轮机相比明显更低。环境温度对分析涡轮机的火用效率影响很小(环境温度变化10摄氏度会导致火用效率变化小于1%)。在最低的观察到的环境温度下获得了最高的火用效率。同样,在最大发展的涡轮发电机功率的71.5%处实现了最高效率,而在最大涡轮发展功率的情况下,用于主给水泵驱动的蒸汽轮机的最高效率达到了。在所有分析的工作点上,用电动机代替现有的用于主给水泵驱动的蒸汽轮机将使涡轮发电机的能量和火用效率提高至少1-3%。 (C)2017 Elsevier Ltd.保留所有权利。

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