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Numerical simulations of the industrial circulating fluidized bed boiler under air- and oxy-fuel combustion

机译:工业循环流化床锅炉空气和含氧燃料燃烧的数值模拟

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摘要

Measured and numerical results of air-fuel combustion process within large scale industrial circulating fluidized bed (CFB) boiler is presented in this paper. For numerical simulations the industrial compact CFB boiler was selected. Numerical simulations were carried out using three-dimensional model where the dense particulate transport phenomenon was simultaneously modelled with combustion process. The fluidization process was modelled using the hybrid Euler-Lagrange approach. The impact of the geometrical model simplification on predicted mass distribution and temperature profiles over CFB boiler combustion chamber two kinds of geometrical models were used, namely the complete model which consist of combustion chamber, solid separators, external solid super-heaters and simplified boiler geometry which was reduced to the combustion chamber. The evaluated temperature and pressure profiles during numerical simulations were compared against measured data collected during boiler air-fuel operation. Collected data was also used for validating numerical model of the oxy-fuel combustion model. Stability of the model and its sensitivity on changes of several input parameters were studied. The comparison of the pressure and temperature profiles for all considered cases gave comparable trends in contrary to measured data. Moreover, some additional test was carried out the check the influence of radiative heat transfer on predicted temperature profile within the CFB boiler. (C) 2015 Elsevier Ltd. All rights reserved.
机译:给出了大型工业循环流化床(CFB)锅炉内空燃过程的实测和数值结果。为了进行数值模拟,选择了工业紧凑型CFB锅炉。使用三维模型进行了数值模拟,其中密集颗粒传输现象与燃烧过程同时进行了建模。使用混合的Euler-Lagrange方法对流化过程进行建模。简化的几何模型对CFB锅炉燃烧室的预测质量分布和温度分布的影响使用了两种几何模型,即由燃烧室,固体分离器,外部固体过热器组成的完整模型和简化的锅炉几何结构。被减少到燃烧室。将数值模拟中评估的温度和压力曲线与锅炉空燃操作期间收集的测量数据进行比较。收集的数据也用于验证氧燃料燃烧模型的数值模型。研究了模型的稳定性及其对几个输入参数变化的敏感性。对于所有考虑到的情况,压力和温度曲线的比较给出了与测量数据相反的可比趋势。此外,还进行了一些附加测试,以检查辐射传热对CFB锅炉内预测温度曲线的影响。 (C)2015 Elsevier Ltd.保留所有权利。

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