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Gas turbine selection for feedwater repowering

机译:燃气轮机选择给水供电

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The paper presents the concept of using hot exhaust gases from gas turbines with different power output to heat up feedwater in a supercritical power plant unit. The gas turbine is connected to the system, bypassing a high pressure regenerative heat exchanger. The benefits of this solution are discussed and the factors to be taken into account are listed. The criteria to be met by the gas turbine to ensure safe and optimal connection to the steam system are discussed. A reference unit model with 800 MW electric power (an existing super-critical power unit in Poland—Belchatow II) was created and presented in a previous paper by the same authors. This model was later supplemented with a gas turbine (three different models with different levels of power production are taken into consideration). The system with a gas turbine enjoys greater power and efficiency over the steam cycle alone. The power increase is due to the extra power generated by the gas turbine and the higher output of the steam system caused by increasing the steam flow through the turbine (closed extraction to the "bypassed" high-pressure heat exchanger). System power is changed linearly with the steam flow and reaches the nominal point 40..50% higher than without an added gas turbine (depending on gas turbine power and efficiency). The efficiency characteristics of the whole system are flatter, with higher values.
机译:本文提出了使用燃气轮机的热废气以不同的功率输出来加热超临界发电厂单元中的给水的概念。燃气轮机绕过高压再生热交换器连接到系统。讨论了此解决方案的好处,并列出了要考虑的因素。讨论了燃气轮机要确保与蒸汽系统安全和最佳连接所要满足的标准。该作者创建了一个参考功率为800 MW的参考模型(波兰现有的超临界功率设备-Belchatow II),并在以前的论文中进行了介绍。该模型后来补充了燃气轮机(考虑了三种具有不同发电水平的模型)。仅在蒸汽循环中,带有燃气轮机的系统就具有更大的功率和效率。功率增加归因于燃气轮机产生的额外功率以及由于增加通过涡轮机的蒸汽流量(向“旁路”高压热交换器的封闭抽气)而导致的蒸汽系统更高的输出。系统功率随蒸汽流量线性变化,并达到标称点,比不增加燃气轮机时高40..50%(取决于燃气轮机功率和效率)。整个系统的效率特性更平坦,值更高。

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