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Enhancement of Boiler Performance through Optimized Soot Blower System for Power Plants

机译:通过优化发电厂的吹灰器系统提高锅炉性能

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An optimal soot blowing system has been developed for the optimal operation of coal-fired power utility boilers by both the minimization of use of steam and the number of soot blowers worked during soot blowing. Traditionally, the soot blowing system has been operated manually or by the scheduled time-based interval. However, it has caused the reduction of power and the thermal performance degradation because many soot blowers installed in the plant should be worked even there are lots of tubes those are not contaminated by slagging and/or fouling. The degree of pollution on a boiler tube is based on heat transfer model. Heat transfer area is divided into several groups consisting of furnace, convection area including superheater, reheater and economizer, and air heater. The condition of cleanness of the tube is calculated by several parameters obtained by various sensors. Then, a part of soot blower works automatically where boiler tubes are contaminated. This system has been applied in a practical power plant. Therefore, a comparison has been done between this new system and manual operation, and then the results are discussed.
机译:通过最小化蒸汽的使用和吹灰期间工作的吹灰器的数量,已经开发了一种最佳的吹灰系统,以使燃煤电站锅炉的最佳运行。传统上,吹灰系统已手动操作或按计划的基于时间的间隔操作。但是,这导致了功率的降低和热性能的下降,因为即使有许多不受结渣和/或结垢污染的管子,也应该运行安装在工厂中的许多吹灰机。锅炉管上的污染程度基于传热模型。传热区域分为炉子,对流区域(包括过热器,再热器和节能器)和空气加热器组成的几组。管的清洁状况由各种传感器获得的几个参数计算得出。然后,吹灰机的一部分在锅炉管被污染的地方自动工作。该系统已被应用于实际的发电厂。因此,在此新系统和手动操作之间进行了比较,然后讨论了结果。

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