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Operating Parameter Optimization using DOE Method to Reduce Unburned Carbon of Fly Ash for Tangential Fired Subcritical Coal Fired Power Plant

机译:操作参数优化使用DOE方法减少切向射击亚临界煤发电厂的粉煤灰未燃烧的碳

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摘要

As electric demand increasing due to rapid economic growth, most developing country are sourcing for cheap fuel and low maintenance power plant which coal fired power plant become the more preferable plant. The cheap and abundant coal resources have played a major factor for coal power plant selection compare to other type of power plant. Although this plant type has low maintenance and operating cost but its emission of by product has a great effect on daily plant operation and environment. The one of the major emission was unburned carbon which by product of incomplete combustion where remaining of coal that unburned exits the furnaces with ash. Presence of higher percentage of unburned carbon indicates the low efficiency of furnace combustion and this directly affects financial status of the power plant operators. This condition causes severe damages on the boiler tube by formation of slagging and clinkering which reduces heat transfer and efficiency of the furnace. Current method proved to be more time consuming and plant operator facing difficulty to reduce unburned carbon in real time. As a solution for this problem, a best parameter was predicted to achieve low percentage of unburned carbon.
机译:由于经济迅速增长导致电动需求增加,大多数发展中国家都采购燃煤发电厂成为更优选的植物廉价燃料和低维护发电厂。廉价丰富的煤炭资源发挥了煤炭电厂选择与其他类型的电厂的主要因素。虽然这种植物类型的维护和运营成本低,但其产品的排放对日常植物运行和环境有很大影响。主要排放之一是未燃烧的碳,其不完全燃烧,其中剩余的煤炭未燃烧的煤与灰烬离开炉子。较高百分比的未燃烧碳表明炉燃烧的效率低,这直接影响了电厂运营商的财务状况。这种情况通过形成熔接和熟料来导致锅炉管对锅炉管的严重损坏,这降低了炉的热传递和效率。当前方法被证明是更多耗时和工厂运营商面临难以实时减少未燃烧的碳。作为该问题的解决方案,预计最佳参数达到未燃烧的碳的低百分比。

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