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INVESTIGATION OF THE BOTTOMING CYCLE FOR HIGH EFFICIENCY COMBINED CYCLE GAS TURBINE SYSTEM WITH SUPERCRITICAL CARBON DIOXIDE POWER CYCLE

机译:超临界二氧化碳动力循环高效联合循环燃气轮机系统底循环研究

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The supercritical CO_2(S-CO_2) power cycle has been receiving attention as one of the future power cycle technology because of its compact configuration and high thermal efficiency at relatively low turbine inlet temperature ranges (450~750°C). Thus, this low turbine inlet temperature can be suitable for the bottoming cycle of a combined cycle gas turbine because its exhaust temperature range is approximately 500~600°C. The natural gas combined cycle power plant utilizes mainly steam Rankine cycle as a bottoming cycle to recover waste heat from a gas turbine. To improve the current situation with the S-CO_2 power cycle technology, the research team collected various S-CO_2 cycle layouts and compared each performance. Finally, seven cycle layouts were selected as a bottoming power system. In terms of the net work, each cycle was evaluated while the mass flow rate, the split flow rate and the minimum pressure were changed. The existing well-known S-CO_2 cycle layouts are unsuitable for the purpose of a waste heat recovery system because it is specialized for a nuclear application. Therefore, the concept to combine two S-CO_2 cycles was suggested in this paper. Also the complex single S-CO_2 cycles are included in the study to explore its potential. As a result, the net work of the concept to combine two S-CO_2 cycles was lower than that of the performance of the reference steam cycle. On the other hand, the cascade S-CO_2 Brayton cycle 3 which is one of the complex single cycles was the only cycle to be superior to the reference steam cycle. This result shows the possibility of the S-CO_2 bottoming cycle if component technologies become mature enough to realize the assumptions in this paper.
机译:超临界CO_2(S-CO_2)电源循环一直受到关注,因为其在相对低的涡轮机入口温度范围(450〜750°C)处具有紧凑的配置和高热效率。因此,这种低涡轮机入口温度可以适用于组合循环燃气轮机的底部循环,因为其排气温度范围约为500〜600℃。天然气联合循环发电厂主要利用蒸汽兰峰循环作为底部循环,以从燃气轮机中恢复废热。为了提高目前的情况与S-CO_2电力循环技术,研究团队收集了各种S-CO_2周期布局,并比较了每个性能。最后,选择了七个周期布局作为底部电力系统。就净工作而言,在质量流速,分流速率和最小压力变化时评估每个循环。现有的众所周知的S-CO_2循环布局不适合废热回收系统的目的,因为它专业为核应用。因此,本文提出了组合两个S-CO_2循环的概念。还包括复杂的单个S-CO_2循环,包括在研究中以探索其潜力。结果,将两个S-CO_2循环结合的概念的净功率低于参考蒸汽循环的性能的净工作。另一方面,作为复杂单循环之一的级联S-CO_2 BRAYTON循环3是唯一可以优于参考蒸汽循环的循环。如果组件技术变得足够成熟以实现本文的假设,则该结果显示了S-CO_2底部循环的可能性。

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