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Modeling and Simulation of Petroleum Coke Calcination in Pot Calciner Using Two-Fluid Model

机译:两流体模型对锅式煅烧炉中石油焦煅烧的建模与仿真

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摘要

The aim of this work was to establish a mathematical model for the analysis of calcining process of petroleum coke in a 24-pot calciner via computational fluid dynamics (CFD) numerical simulation method. The model can be divided into two main parts (1) heterogeneous reacting flow of petroleum coke calcination in the pot was simulated using a two-fluid model approach where the gas and solid phase are treated as a continuous phases; and (2) the standard turbulence equations combined with the finite rate/eddy-dissipation combustion model and discrete ordinates model were solved for the turbulent gas reacting flow in the flue. The model of the calcining process was implemented in ANSYS Fluent 15.0 (commercial CFD software) and validated by industrial production data. After the validation research, the model has been applied to inspect the distribution features of the temperature field in the furnace, the concentration field of residual moisture and volatiles in the petroleum coke, and the vector velocity field of gas and solid phases. This research can provide a theoretical basis for optimizing the structure and improving the automatic control level of a pot calciner.
机译:这项工作的目的是通过计算流体力学(CFD)数值模拟方法建立一个数学模型,用于分析24罐煅烧炉中石油焦的煅烧过程。该模型可分为两个主要部分:(1)采用双流体模型方法模拟了锅中石油焦煅烧的异相反应流,其中气相和固相被视为连续相。 (2)求解了标准湍流方程,结合了有限速率/涡耗燃烧模型和离散纵坐标模型,对烟道中的湍流气体进行了反应。煅烧过程的模型在ANSYS Fluent 15.0(商业CFD软件)中实现,并通过工业生产数据进行了验证。经过验证研究后,该模型已应用于检验炉内温度场,石油焦中残留水分和挥发物的浓度场以及气相和固相矢量速度场的分布特征。该研究可为优化锅式煅烧炉的结构和提高其自动控制水平提供理论依据。

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