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Numerical simulation of a pilot-scale reactor under different operating modes: Combustion, gasification and pyrolysis

机译:不同运行模式下中试规模反应器的数值模拟:燃烧,气化和热解

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This paper provides a numerical analysis of a downdraft fixed bed reactor to examine the effect that the different operating modes have on temperature profile, velocity profile, gas composition and particle residence time. First, pine wood sawdust is considered as the feedstock to the reactor. Simulations of the reactor operating modes are performed using the commercial CFD code Ansys-Fluent coupled with the Discrete Phase Method (DPM). So different chemical reactions are considered in the reactor depending on the operating mode: a) pyrolyzer, b) gasifier or c) combustor. A two-dimensional modelling for the geometry is used in conjunction with 0.001 mm diameter spherical particles. The interaction of particles (discrete phase) with the continuous phase is performed by modifying the transport equations. For the purpose of model validation, experimental data of temperature profiles and syngas composition are used. Besides, the influence of concentration of an oxidant agent is numerically investigated. Results show that the maximum temperatures reached in combustion, gasification, and pyrolysis processes are, respectively, 2207.91 (K), 1559.47 (K) and 1097.55 (K). Finally, simulated gasification temperature showed a standard deviation of 5.2% from experimental one.
机译:本文提供了下沉式固定床反应器的数值分析,以研究不同操作模式对温度分布,速度分布,气体成分和颗粒停留时间的影响。首先,松木锯末被认为是反应器的原料。使用商业CFD代码Ansys-Fluent结合离散相方法(DPM)进行反应堆运行模式的仿真。因此,根据操作模式,应在反应器中考虑不同的化学反应:a)热解器,b)气化炉或c)燃烧器。二维几何模型与直径为0.001 mm的球形颗粒一起使用。粒子(离散相)与连续相的相互作用是通过修改输运方程来进行的。为了进行模型验证,使用了温度曲线和合成气组成的实验数据。此外,对氧化剂浓度的影响进行了数值研究。结果表明,燃烧,气化和热解过程中达到的最高温度分别为2207.91(K),1559.47(K)和1097.55(K)。最后,模拟的气化温度显示出与实验值相比的标准偏差为5.2%。

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