首页> 外文期刊>Computational thermal sciences >BIOMASS FAST PYROLYSIS IN A SHAFTLESS SCREW REACTOR: RESIDENCE TIME DISTRIBUTION AND HEATING EVALUATION BY MEANS OF A DEM APPROACH
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BIOMASS FAST PYROLYSIS IN A SHAFTLESS SCREW REACTOR: RESIDENCE TIME DISTRIBUTION AND HEATING EVALUATION BY MEANS OF A DEM APPROACH

机译:生物质在无轴螺杆反应器中快速热解:通过DEM方法停留时间分布和加热评估

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Screw reactors may be designed for small-scale fast pyrolysis processes, but few models have been available so far for design and optimization. In this work, an analysis of specific aspects such as solid residence time and heating processes is proposed for this type of reactor, studying the system via a 3D computational fluid dynamics model. The screw reactor where the pyrolysis process takes place has been modeled with a discrete element model (DEM) approach based on the multiphase code MFiX. The interactions between the gaseous phase and particles are taken into account, while the evaporation process and chemical reactions are neglected. This approach allows for investigating in more detail some characteristic effects related to the perturbation of operating parameters to compare numerical and experimental data. The numerical heat flux is in line with experimental results at an average value of about 100 W, corresponding to 1 kg/h biomass flow rate with a 7% moisture content wet basis (w.b.). The residence time of the solid particles in the pyrolysis region (less than half of the whole reactor length) is on the order of 6 seconds, which is typical for such applications. A 1D model based on the 3D data evaluation has then been set up with the aim of calibrating such effects by a simplified axial diffusion coefficient evaluated at 1 × 10 ~( -5 ) m ~( 2 ) /s.
机译:螺杆电抗器可以设计用于小型快速热解过程,但到目前为止,还有很少的型号用于设计和优化。在这项工作中,提出了对这种反应器的特定方面的特定方面的分析,通过3D计算流体动力学模型研究了系统。将发生热解过程的螺旋反应器已经以基于多相代码MFIX的离散元素模型(DEM)方法建模。考虑气相和颗粒之间的相互作用,而蒸发过程和化学反应被忽略。这种方法允许更详细地研究与操作参数的扰动相关的一些特征效果以比较数值和实验数据。数值热通量与实验结果符合平均值为约100W的实验结果,对应于1kg / h生物质流量,其水分含量为7%(W.B.)。在热解区域中固体颗粒的停留时间(少于整个反应器长度的一半)约为6秒,这对于这些应用是典型的。然后已经建立了基于3D数据评估的1D模型,其目的是通过在1×10〜(-5)m〜(2)/ s的简化轴向扩散系数校准这些效果。

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