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Evaluation of multifluid model for heat transfer behavior of binary gas-solid flow in a downer reactor

机译:唐纳反应器中二元气固流传热行为的多流体模型评估

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The heat transfer characteristics of different particles during coal pyrolysis process are of fundamental importance in a downer reactor, where hot sand particles often serve as the heat carrier for heating cold coal particles. Despite its urgent practical demands, fundamental studies on this topic were still very limited so far. To this end, this work carded out computational fluid dynamics (CFD) investigations of heat transfer behavior of binary gas-solid flow in a downer reactor using multifluid model. A modified gas-solid drag model and a modified Gunn's gas-solid heat transfer coefficient model were used to address the critical role of particle cluster structure. Furthermore, the effects of constant or temperature-dependent air properties, particle-particle drag force, and particle-particle heat transfer as well as the different choices of kinetic theories of granular flow were systematically evaluated, and then the optimized models were identified. CFD simulations with the optimized models show that CFD simulation has the ability to qualitatively capture the key heat transfer features in downers, based on the fact that a fairly good agreement with the available experimental data in the literature can be obtained and be further improved by taking the specific shape of inlet distributor into account. (C) 2015 Elsevier B.V. All rights reserved.
机译:煤热解过程中不同颗粒的传热特性在下降反应器中至关重要,在该反应器中,热砂颗粒通常充当加热冷煤颗粒的热载体。尽管有迫切的实际需求,但到目前为止,对该主题的基础研究仍然非常有限。为此,这项工作使用多流体模型对下沉式反应器中二元气固流的传热行为进行了计算流体动力学(CFD)研究。修正的气固阻力模型和修正的耿氏气固传热系数模型用于解决粒子团簇结构的关键作用。此外,系统地评估了恒定或随温度变化的空气特性,颗粒-颗粒阻力,颗粒-颗粒传热以及颗粒流动力学理论的不同选择的影响,然后确定了优化模型。基于优化模型的CFD模拟表明,CFD模拟能够定性地捕获唐纳德管中的关键传热特征,基于这样的事实,即可以与文献中的可用实验数据取得相当好的一致性,并且可以通过以下方法进一步改进考虑进水口分配器的具体形状。 (C)2015 Elsevier B.V.保留所有权利。

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