用焓降法对容量为3.5 mw的单缸汽轮机进行性能分析

Bagus Adi Saputra, Nurato Nurato
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引用次数: 0

摘要

汽轮机在工厂条件下的性能会因操作或环境因素而发生变化。因此,有必要利用高压加热器1号和除氧器的质能平衡方程和迭代法,分析汽轮机在实际工况下的性能,以便与厂家提供的汽轮机性能进行比较。利用数学模型和理论,对汽轮机按热平衡设计参数运行时的现象进行了研究。根据公式通过迭代法计算给水流量得到热水器的值为17961.58 kg/h。性能汽轮机效率下降,等熵效率为72.73%,比设计值79.27%下降6.54%,热效率为26.88%,比设计值28.64%下降1.75%。蒸汽量为5.03 kg/kWh,比设计值4.59 kg/kWh增加了0.44 kg/kWh;汽轮机热率为3198.83 kcal/kWh,比设计值3002.75 kcal/kWh增加了196.08 kcal/kWh。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance analysis of a single-cylinder type steam turbine with a capacity of 3.5 mw using enthalpy drop method
The performance capability of the steam turbine under factory conditions will experience changes that can be caused by operating or environmental factors. Therefore, it is necessary to analyze the performance of the steam turbine during the actual condition so that it can be compared with the performance of the steam turbine from the manufacturer using mass and energy balance equations on HP heater #1 and deaerators and iteration methods. The research was conducted by looking at the phenomena that occur in the steam turbine using mathematical models and theories when the unit operates according to the heat balance design parameters. Feedwater flow from the calculation of the iteration method based on the equation of the water heater obtained a value of 17,961.58 kg/h. The performance steam turbine experienced a decrease in efficiency with a value for isentropic efficiency of 72.73% down 6.54% from the design value of 79.27% and thermal efficiency of 26.88% down 1.75% from the design value of 28.64%. Meanwhile, the steam rate value of 5.03 kg/kWh increased by 0.44 kg/kWh from the design value of 4.59 kg/kWh, and the turbine heat rate of 3198.83 kcal/kWh, an increase of 196.08 kcal/kWh from the design value of 3002.75 kcal/kWh.
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