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Coupling of a radiative heat transfer model and a three-dimensional combustion model for a circulating fluidized bed furnace

机译:循环流化床炉辐射传热模型与三维燃烧模型的耦合

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摘要

A 3D semi-empirical model for reactive two-phase flow in a circulating fluidized bed furnace (CFB3D) is modified by implementing the radiative zone method to solve the radiation heat transfer. The radiative properties of the gas and particle phase have been calculated using detailed information of gas and particle distribution obtained from the CFB3D model. A recently published WSGGM for oxygen-fired combustion has been used to calculate the absorption coefficient of gaseous combustion products. The results of implementing the radiative zonal approach have been compared with those obtained using empirical radiative correlations. The temperature field obtained by using the radiative zone method is more uniform than the one obtained by empirical correlation, and the total heat flux to the wall is slightly higher. The long distance effect of radiation has been found more important in the upper furnace where the gas is the dominant phase. Detailed discussion concerning the obtained results is presented. (C) 2014 Elsevier Ltd. All rights reserved.
机译:通过采用辐射区方法解决辐射传热问题,修改了循环流化床炉(CFB3D)中反应性两相流的3D半经验模型。已使用从CFB3D模型获得的气体和颗粒分布的详细信息来计算气相和颗粒相的辐射特性。最近发布的用于氧气燃烧的WSGGM已用于计算气态燃烧产物的吸收系数。已将辐射分区方法的实施结果与使用经验辐射相关性获得的结果进行了比较。通过辐射区方法获得的温度场比通过经验相关获得的温度场更均匀,并且进入壁的总热通量略高。已经发现,在气体为主要相的上部炉中,辐射的长距离效应更为重要。提出了有关所得结果的详细讨论。 (C)2014 Elsevier Ltd.保留所有权利。

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