船用蒸汽推进系统中主给水泵驱动小功率汽轮机的能量、功率损失和效率

V. Mrzljak, J. Prpić-Oršić, I. Poljak
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引用次数: 14

摘要

主给水泵驱动汽轮机是一种小功率汽轮机,本文对其能量功率损失及能效进行了分析。MFP汽轮机分析是在很宽的涡轮负荷范围内进行的。研究了实际(多向)蒸汽膨胀的蒸汽比熵增量对MFP汽轮机能量、功率损失和能效的影响。在所有观察到的负荷中,MFP汽轮机能量功率损失在346.2 kW ~ 411.4 kW之间。蒸汽比熵增量对MFP汽轮机的能量、功率损失和能效影响最为显著。蒸汽比熵增量的变化与MFP汽轮机能量功率损失的变化成正比,而蒸汽比熵增量的变化与MFP汽轮机能效的变化成反比。对于观测到的涡轮负荷,MFP汽轮机能量效率在46.83% ~ 51.01%之间。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Energy Power Losses and Efficiency of Low Power Steam Turbine for the Main Feed Water Pump Drive in the Marine Steam Propulsion System
Steam turbine for the main feed water pump (MFP) drive is a low power turbine, for which energy power losses and energy efficiency analysis are presented in this paper. The MFP steam turbine analysis has been performed within a wide range of turbine loads. The influence of steam specific entropy increment of the real (polytropic) steam expansion upon the MFP turbine energy power losses and energy efficiency has been investigated. During all the observed loads MFP steam turbine energy power losses were in the range between 346.2 kW and 411.4 kW. The MFP steam turbine energy power losses and energy efficiency were most significantly influenced by the steam specific entropy increment. Change in the steam specific entropy increment is directly proportional to the change in MFP turbine energy power losses, while the change in the steam specific entropy increment is reversely proportional to the MFP turbine energy efficiency change. For the observed turbine loads, the MFP steam turbine energy efficiency was in the range between 46.83% and 51.01%.
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