首页> 外文会议>International Conference on Fluidized Bed Technology >NUMERICAL SIMULATION OF GAS-SOLID FLOW IN AN INTERNALLY CIRCULATING FLUIDIZED BED USING MULTIPHASE PARTICLE-IN-CELL MODEL
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NUMERICAL SIMULATION OF GAS-SOLID FLOW IN AN INTERNALLY CIRCULATING FLUIDIZED BED USING MULTIPHASE PARTICLE-IN-CELL MODEL

机译:使用多相粒子细胞模型在内部循环流化床中气固流动的数值模拟

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This paper presents a numerical study of gas-solid flow in an internally circulating fluidized bed (ICFB).The gas and solid dynamics have been calculated using the multiphase particle in cell (MP-PIC) model with Barracuda Virtual Reactor being the numerical platform.The simulation was conducted under a similar condition to a physical model consisting of three, inter-connected fluidized bed chambers with the central chamber representing the "reaction chamber" (RX) and a chamber on each side representing heat exchanger chambers (HEX).The detailed solid and gas flow dynamics have been investigated in terms of solid flow patterns and gas pressure drop.The simulation results have been compared with physical experiments in terms of solid recirculation rate, which shows a good agreement with the experimental measurements.
机译:本文介绍了内循环流化床(ICFB)中的气体固体流动的数值研究。使用电池中的多相颗粒(MP-PIC)模型中的气体和固体动力学是用梭子虚拟反应器的数值平台计算。在类似条件下进行模拟,以将由三个,与中心室组成的物理模型,其具有表示“反应室”(Rx)和表示热交换器室(六角)的腔室的腔室。在固体流动模式和气体压降方面已经研究了详细的固体和气体流动动力学。模拟结果与实际再循环率方面的物理实验进行了比较,这表明了与实验测量有关的良好一致性。

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