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首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Flow characteristics of biomass particles in a horizontal stirred bed reactor: Part II. Modeling studies on particle residence time distribution and axial mixing
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Flow characteristics of biomass particles in a horizontal stirred bed reactor: Part II. Modeling studies on particle residence time distribution and axial mixing

机译:水平搅拌床反应器中生物质颗粒的流动特性:第二部分。颗粒停留时间分布和轴向混合的建模研究

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The modeling investigation of the flow and mixing behavior of particles in the horizontal stirred bed reactor was conducted using the axial dispersion model. The axial dispersion coefficients were obtained with different operational and design parameters and flow properties, based on the measured residence time distribution (RTD) in Part I. The axial mixing is considerably enhanced with the increase of the rotation rate, the number of blades and the repose angle. The flow rate made a less important contribution to the variation of the axial mixing while the blade angle rarely affected the axial mixing. This work proposed new design correlations for the model parameters in terms of flow rate, rotation rate, flow properties of materials, number of blades and blade angle, obtained by means of multiple regressions. The model developed in this paper was proved sufficiently accurate to model the RTD of particles in the HSBR by comparison between the numerical simulation and the experimental result of the RTD curve. The simulation of the RTD of particles in the HSBR was then performed with different conditions to investigate the effect of various parameters on the RTD using the model and gave similar trends with the experimental results. (C) 2014 Elsevier B.V. All rights reserved.
机译:利用轴向分散模型对卧式搅拌床反应器中颗粒的流动和混合行为进行了模型研究。根据第一部分中测得的停留时间分布(RTD),获得了具有不同运行和设计参数以及流动特性的轴向弥散系数。随着转速,叶片数量和叶片数量的增加,轴向混合得到了显着增强。休止角。流量对轴向混合的变化的影响较小,而叶片角度很少影响轴向混合。这项工作提出了关于模型参数的新设计相关性,这些模型参数是通过多重回归获得的流速,转速,材料的​​流动特性,叶片数量和叶片角度。通过将RTD曲线的数值模拟与实验结果进行比较,证明了本文开发的模型足以准确地模拟HSBR中颗粒的RTD。然后在不同条件下对HSBR中颗粒的RTD进行模拟,以使用该模型研究各种参数对RTD的影响,并给出与实验结果相似的趋势。 (C)2014 Elsevier B.V.保留所有权利。

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