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NUMERICAL MODELING OF CO-FIRING CHUNK COAL AND OAT HULLS IN A STOKER BOILER

机译:煤锅中共用块煤和燕麦船体的数值模型

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The current study presents a numerical study of co-firing chunk coal and one kind of light weight biomass, oat hulls, in a stoker boiler. First, a standard combustion model was applied to simulate coal combustion in a real size three dimensional boiler; the results were compared with the temperatures measured at different locations of the stoker boiler to assess the accuracy of heat sink and heat transfer model. Once a good accuracy was achieved, a devolatilization model for oat hulls was derived from experimental data and was matched with this combustion model to simulate combustion in a co-firing stoker boiler. The results showed that light biomass burns in suspension, similar to pulverized coal by following the air flow. Also, the peak temperature inside the furnace inversely varies with the increase of co-firing percentage of oat hulls. This numerical study reveals thermal and economic potential of using unprocessed light weight biomass on the existing combustion facility.
机译:目前的研究呈现了同燃煤炭煤和一种轻量级生物量,燕麦船体,在中间的锅炉中的数值研究。首先,应用标准燃烧模型在真实尺寸的三维锅炉中模拟煤燃烧;将结果与在锅炉的不同位置测量的温度进行了比较,以评估散热器和传热模型的准确性。一旦实现了良好的准确性,燕麦船体的脱挥石化模型源自实验数据,与该燃烧模型匹配以模拟共用硬锅锅炉中的燃烧。结果表明,光生物质在悬浮液中燃烧,通过沿着空气流动类似于粉煤。此外,炉内的峰值温度随着燕麦船体的共烧百分比的增加而变化。该数值研究揭示了在现有的燃烧设施上使用未加工的轻度生物量的热和经济潜力。

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