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Application of the CFD simulation to the evaluation of natural gas replacement by syngas in burners of the ceramic sector

机译:CFD模拟在评估陶瓷燃烧器中合成气替代天然气的应用

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摘要

Industrial furnace is one of the most energy intensive processes in Europe and it has been the focus of multiple researches to address improvements in the competitiveness energy, environmental and cost performance. One of the alternatives is the reduction of fossil fuel consumption, such as natural gas, promoting its substitution by an alternative fuel (Co-firing). This paper gathers a wide evaluation of the possibilities of substitution of natural gas. A revision of the types of syngas with potential for use has been carried out, as well as the evaluation of the physical properties of the mixtures from the combustion operation point of view. Three types of syngas from biomass gasification (BSG) and three from process off-gases (POG) have been considered. The feasibility study has taken into consideration parameters such as the lower heating value, the Woobe index, adiabatic flame temperature, air preheating temperature, total flue flow and laminar flame velocity. Regardless of the type of syngas, significant increase in volumetric fuel flow occurs in all cases. This behaviour is directly related to the LHV of the syngas, so that using syngases with lower LHV than the NG will always produce an increase of the fuel flow. A weigh matrix has been obtained in order to evaluate the viability of burners use with the syngasatural gas mixture. It has been considered a burner commonly used in ceramic sector and it has been concluded that relevant modifications are necessary in order to consider the combustion of syngasatural gas. The modifications have been evaluated using CFD simulations to stablish the proper design of the mix zone to ensure the mixture between the air, syngas and natural gas. This evaluation has been carried out following the fuel to air ratio. (C) 2019 The Authors. Published by Elsevier Ltd.
机译:工业炉是欧洲最耗能的工艺之一,它一直是解决提高竞争力的能源,环境和成本性能方面的多项研究的重点。一种替代方法是减少矿物燃料的消耗,例如天然气,从而促进其被替代燃料替代(共烧)。本文对天然气替代的可能性进行了广泛的评估。已经对具有使用潜力的合成气的类型进行了修改,并从燃烧操作的角度评估了混合物的物理性质。已经考虑了来自生物质气化(BSG)的三种类型的合成气和来自工艺废气(POG)的三种类型。可行性研究考虑了诸如较低的发热量,Woobe指数,绝热火焰温度,空气预热温度,总烟道流量和层流火焰速度等参数。无论合成气的类型如何,在所有情况下,燃料体积流量都会显着增加。此行为与合成气的LHV直接相关,因此使用LHV低于NG的合成气将始终增加燃料流量。为了评估燃烧器与合成气/天然气混合物一起使用的可行性,已获得一个称重矩阵。已经考虑到通常在陶瓷领域中使用的燃烧器,并且已经得出结论,为了考虑合成气/天然气的燃烧,需要进行相关的修改。使用CFD模拟对这些修改进行了评估,以稳定混合区的设计,以确保空气,合成气和天然气之间的混合。该评估是根据燃油与空气的比例进行的。 (C)2019作者。由Elsevier Ltd.发布

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