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各類發電機組的旁路系統綜述

Review of Bypass Systems for Various Power Generation Units

  • 摘要: 旁路系統是各類發電機組中重要的輔助系統。本文從旁路系統的基本原理、組成與分類、容量與功能等方面進行了研究與總結,以火電機組汽輪機的冷態啟動為例,分析了高低壓旁路的運行過程;并通過對比三類旁路結構的優缺點和實際應用情況,發現二級串聯旁路系統是多數發電機組的優選,具有代表性和典型性。然后本文重點對旁路系統在六類發電機組中的應用情況進行了調研,通過對比分析設備配置、結構形式和功能特點,得出結論:旁路系統在火電機組、燃氣-蒸汽聯合循環機組中的技術成熟度較高,控制功能較完善,現已實現廣泛應用;在核電機組中也實現了應用,對旁路中的設備具有更高的設計和制造要求。而旁路系統在整體煤氣化聯合循環機組中的技術成熟度較低,具有較大的提升空間;在超臨界二氧化碳聯合循環機組中使用效果不佳,影響運行效率,尚未取得實際應用。對于壓縮空氣儲能系統,膨脹機的旁路系統有利于機組頻繁起停、變工況運行,但相關研究內容和實際應用均較少。最后本文基于當前研究中的欠缺之處,對旁路系統未來的研究方向進行了展望。

     

    Abstract: Bypass systems are crucial auxiliary systems in various types of power generation units. This paper investigates and summarizes the fundamental principles, components, classifications, capacities and functions of bypass systems. Taking the cold start-up of a steam turbine in a thermal power unit as an example, the operational processes of high and low-pressure bypasses were analyzed. By comparing the advantages and disadvantages of three types of bypass structures and their practical applications, it was found that the two-stage serial bypass system is the preferred choice for most power generation units, due to its representativeness and typicality. The paper then focuses on the application of bypass systems in six types of power generation units. Through comparative analysis of their equipment configurations, structural forms, and functional characteristics, it concludes that bypass systems are technologically mature and have well-developed control functions in thermal power units and gas-steam combined cycle units, where they have been widely implemented. They are also employed in nuclear power units, which require higher design and manufacturing standards for the equipment within the bypass. However, in integrated gasification combined cycle units, the technological maturity of bypass systems is relatively low, presenting significant opportunities for improvement. In supercritical carbon dioxide combined cycle units, they perform poorly, negatively impacting operational efficiency, and have not yet been practically applied. In compressed air energy storage systems, expander bypass systems facilitate frequent start-ups and variable condition operations of the units, but both the research content and practical applications in this area are relatively limited. Finally, based on the current research shortcomings, the paper provides an outlook on future research directions for bypass systems.

     

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