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EFFECT OF INLET STEAM TEMPERATURE ON THE HP SECTION EFFICIENCY OF A STEAM TURBINE

机译:进汽温度对汽轮机高压工段效率的影响

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Steam turbines for modern fossil and combined cycle power plants typically utilize a reheat cycle with High Pressure (HP), Intermediate Pressure (IP), and Low Pressure (LP) turbine sections. For an HP turbine section operating entirely in the superheat region, section efficiency can be calculated based on pressure and temperature measurements at the inlet and exhaust. For this case HP section efficiency is normally assumed to be a constant value over a load range if inlet control valve position and section pressure ratio remain constant. It has been observed that changes in inlet steam temperature impact HP section efficiency. K.C. Cotton stated that 'the effect of throttle temperature on HP turbine efficiency is significant' in his book 'Evaluating and Improving Steam Turbine Performance' (2nd Edition, 1998). The information and conclusions provided by K.C. Cotton are based on test results for large fossil units calculated with 1967 ASME steam tables. Since the time of Mr. Cotton's observations, turbine configurations have evolved, more accurate 1997 ASME steam tables have been released, and our ability to quickly analyze large quantities of data has greatly increased. This paper studies the relationship between inlet steam temperature and HP section efficiency based on both 1967 and 1997 ASME steam tables and recent test data, which is analyzed computationally to reveal patterns and trends. With the efficiencies of various inlet pressure class HP section turbines being calculated with both 1967 and 1997 ASME steam tables, a comparison reveals different characteristics in the relationship between inlet steam temperature and HP section efficiency. Recommendations are made on how the results may be used to improve accuracy when testing and trending HP section performance.
机译:用于现代化石和联合循环发电厂的蒸汽轮机通常利用具有高压(HP),中压(IP)和低压(LP)涡轮机部分的再热循环。对于完全在过热区域中运行的高压汽轮机部分,可以基于进气口和排气口的压力和温度测量值来计算部分效率。对于这种情况,如果入口控制阀位置和截面压力比保持恒定,则通常假定HP截面效率在负载范围内为恒定值。已经观察到,入口蒸汽温度的变化会影响高压段的效率。 K.C.棉花在他的《评估和改善汽轮机性能》(第2版,1998年)中指出“节流温度对高压涡轮效率的影响非常重要”。 K.C.提供的信息和结论棉花是基于使用1967年ASME蒸汽表计算的大型化石单元的测试结果得出的。自从Cotton先生观察以来,涡轮机配置已经发生了变化,发布了更准确的1997年ASME蒸汽表,并且我们快速分析大量数据的能力得到了极大提高。本文基于1967年和1997年的ASME蒸汽表和最新的测试数据,研究了入口蒸汽温度与高压段效率之间的关系,并对其进行了计算分析以揭示模式和趋势。通过分别使用1967年和1997年的ASME蒸汽表计算出各种入口压力等级的HP截面涡轮机的效率,比较显示出入口蒸汽温度与HP截面效率之间关系的不同特征。就如何测试和趋势显示HP部分性能时如何使用结果来提高准确性提出了建议。

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