首页> 外文会议>2002 International Joint Power Generation Conference, Jun 24-26, 2002, Scottsdale, Arizona >STEAM SYSTEM DESIGN CONSIDERATIONS FOR THREE PRESSURE REHEAT CYCLES WITH CASCADE BYPASS SYSTEM
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STEAM SYSTEM DESIGN CONSIDERATIONS FOR THREE PRESSURE REHEAT CYCLES WITH CASCADE BYPASS SYSTEM

机译:带有梯级旁路系统的三压再热循环的蒸汽系统设计注意事项

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This paper discusses various issues that should be considered when designing the steam system for a typical three pressure reheat cycle, which is used at many of today's combined cycled plants. A cascade bypass arrangement in the steam system is commonly used to ensure steam flow is available to the reheat section of the HRSG during startup. For the purposes of this paper, a cascade bypass system will be defined as high pressure steam being bypassed to the cold reheat steam and hot reheat steam being bypassed to the condenser. This arrangement can lead to conflicts between plant operation needs and the steam turbine desire to reduce the HP turbine backpressure as much as possible during startup. Plant operation needs that may dictate keeping the reheat system pressure high include export steam minimum pressure guarantees to customers, cycling operation which forces the plant to restart when equipment is still hot, and hot reheat steam bypass or condenser limitations. The HP turbine and cold reheat steam piping can have temperature limitations which may necessitate keeping the HP turbine exhaust pressure as low as possible during startup.
机译:本文讨论了为典型的三压再热循环设计蒸汽系统时应考虑的各种问题,该系统已在当今的许多联合循环工厂中使用。蒸汽系统中的级联旁路装置通常用于确保在启动期间蒸汽流可用于HRSG的再热段。出于本文的目的,级联旁路系统将定义为高压蒸汽被旁路到冷再热蒸汽,而热再热蒸汽被旁路到冷凝器。这种布置可能导致工厂运行需求与蒸汽轮机在启动期间尽可能降低HP轮机背压之间的矛盾。可能要求保持再热系统压力高的工厂运行需求包括向客户保证的最低出口蒸汽压力,循环运行(迫使设备在设备仍很热时重新启动)以及热再热蒸汽旁路或冷凝器限制。高压涡轮和冷再热蒸汽管道可能具有温度限制,这可能需要在启动过程中将高压涡轮的排气压力保持在尽可能低的水平。

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