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Performance evaluation of a new conceptual combustion air preheating system in a 1000 MW coal-fueled power plant

机译:1000 MW燃煤电厂新型概念燃烧空气预热系统的性能评估

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摘要

An innovative design of combustion air preheating for large-scale coal-fueled power plants was proposed. Differing from the conventional air preheating system using a rotary regenerative air preheater, a cascade heating concept is adopted in the new configuration, where the air obtains heat from the feedwater, circulating water and flue gas in several tubular heat exchangers, which significantly diminishes the air leakages and the exergy destruction. The results of a detailed thermodynamic analysis show that, for a typical 1000 MW coal-fueled power plant, the net thermal efficiency increment can reach 0.49% points with a net heat rate reduction of 86.77 kJ/kWh, if the novel air preheating design is adopted instead of the conventional one. This is because the exergy efficiency of the air preheating process is promoted from 77.88% to 91.77% owing to the proposal, and the total exergy efficiency of the power plant rises by 0.48% points. The economic performance of the new design was examined as well, indicating that the dynamic payback period is only 5.30 years when the proposed air preheating system is employed to replace the conventional one. This work may be beneficial for enhancing the air preheating system and advancing coal-fired power production.
机译:提出了针对大型燃煤电厂的燃烧空气预热的创新设计。与使用旋转蓄热式空气预热器的传统空气预热系统不同,在新配置中采用了级联加热的概念,其中空气从多个管状热交换器中的给水,循环水和烟气中获取热量,从而大大减少了空气泄漏和火用破坏。详细的热力学分析结果表明,如果采用新颖的空气预热设计,对于典型的1000 MW燃煤电厂,净热效率增量可以达到0.49%点,净热效率降低86.77 kJ / kWh。采用而不是传统的。这是因为由于该建议,空气预热过程的火用效率从77.88%提高到91.77%,发电厂的总火用效率提高了0.48%。还检查了新设计的经济性能,表明当采用建议的空气预热系统代替传统的空气预热系统时,动态投资回收期仅为5.30年。这项工作可能有利于增强空气预热系统和推进燃煤发电。

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