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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 >Modelling and simulation of hydrodynamics in double loop circulating fluidizedbed reactor for chemical looping combustion process
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Modelling and simulation of hydrodynamics in double loop circulating fluidizedbed reactor for chemical looping combustion process

机译:化学环路燃烧过程双环循环流化反应器中流体动力学的建模与仿真

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摘要

A multiphase CFD model has been developed and implemented in an in-house code for a coupled double loop circulation fluidized bed (DLCFB) reactor which can be utilized for the chemical looping combustion process. The air reactor and the fuel reactor were operated in fast fluidization regime and simulated separately, the connection between the two reactors is realized through specific inlet and outlet boundary conditions. This work represents a first attempt to model and simulate the novel DLCFB system. The model predictions of the axial pressure profiles are in good agreement with the experimental data reported in the literatures. In addition, typical core-annulus structure of radial solid volume fraction distribution can be well predicted in both reactors. These indicate the capability of the model for predicting the cold flow performance of the DLCFB system. Furthermore, the effects of superficial gas velocity, total solid inventory on the flow characteristics have been examined. The results show that an increase of the gas velocity could enhance the solid exchanges between the two reactors. The additional solids were accumulated in the bottom of the reactors when the total solid inventory was increased.
机译:已经在内部代码中开发和实施了多相CFD模型,用于耦合的双回路循环流化床(DLCFB)反应器的内部代码,其可用于化学循环燃烧过程。空气反应器和燃料反应器在快速流化状态下操作并分开模拟,通过特定入口和出口边界条件实现两个反应器之间的连接。这项工作代表了模拟和模拟新型DLCFB系统的首次尝试。轴向压力谱的模型预测与文献中报告的实验数据很好。另外,在两个反应器中可以很好地预测径向固体体积分布的典型芯环结构。这些指示模型预测DLCFB系统的冷流性能的能力。此外,已经研究了浅表气体速度,总固体库存的影响已经研究过流动特性。结果表明,气体速度的增加可以增强两个反应器之间的固体交换。当总固体库存增加时,将另外的固体积聚在反应器的底部。

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