首页> 外文会议>ASME power conference >ROLE OF BOILING MODE AND RATE IN FORMATION OF WATERSIDE DEPOSITS IN HEAT RECOVERY STEAM GENERATOR EVAPORATOR TUBES
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ROLE OF BOILING MODE AND RATE IN FORMATION OF WATERSIDE DEPOSITS IN HEAT RECOVERY STEAM GENERATOR EVAPORATOR TUBES

机译:沸腾模式和速率在热回收蒸汽发生器-蒸发器管中水沉积物形成中的作用

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Waterside Deposits in evaporator tubes have been an issue in steam generators as long as boilers have been used. Substantial experience in deposit formation and management has been gained in conventional goal and oil/gas boilers over time. The role of boiling modes in the steam generator tubes is very critical to areas of deposit formation. Incipient boiling, nucleate boiling and convective boiling modes all have different deposition behavior. When Gas Turbine Combined Cycle (GTCC) power plants of larger size (> 100 MW) began operation in the 1990's, deposits in evaporator tubes were not considered a significant issue. Operating boiler pressures were low (500-900 psig) as were flue gas temperatures, use of supplemental firing was limited. Other than known problems with feedwater contamination such as operation with leaking seawater-cooled condensers, deposits were not found to be forming. The rapid increase in size and operating pressures in HRSG's raised the likelihood of waterside deposits developing. Both Vertical and Horizontal Gas Path HRSG designs are considered. Drawing on field observations, the morphology and location of HRSG deposits are reviewed, as are changes in deposit formation with the mode and rate of boiling.
机译:只要使用锅炉,蒸发器管中的水侧沉积物就一直是蒸汽发生器中的问题。随着时间的流逝,在常规目标和石油/天然气锅炉中已经获得了沉积物形成和管理方面的大量经验。蒸汽发生器管中沸腾模式的作用对于沉积物形成区域至关重要。初期沸腾,核沸腾和对流沸腾模式均具有不同的沉积行为。当大型燃气涡轮联合循环(GTCC)发电厂于1990年代开始运行时,蒸发管中的沉积物就不被认为是重要的问题。锅炉的工作压力低(500-900 psig),烟气温度也低,补充燃烧的使用受到限制。除了已知的给水污染问题(例如使用泄漏的海水冷却冷凝器运行)外,未发现形成沉积物。 HRSG的尺寸和操作压力的迅速增加增加了水边沉积物发展的可能性。垂直和水平气路HRSG设计均被考虑。借助现场观察,回顾了HRSG沉积物的形态和位置,以及随沸腾方式和沸腾速率变化的沉积物形成情况。

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