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Modelling and experimental investigation of the full-loop gas-solid flow in a circulating fluidized bed with six cyclone separators

机译:具有六个旋风分离器的循环流化床中全回路气固流动的建模和实验研究

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摘要

In the literature, there are few reports on the full-loop gas-solid flow in a circulating fluidized bed (CFB) with large scale and complex cyclone arrangement. In this paper, a new approach based on computational particle fluid dynamic (CPFD) method combined with electrical capacitance tomography (ECT) is used to investigate the hydrodynamic behavior of gas-solid flow in a CFB with six cyclone separators in order to improve the design and performance of a large scale CFB boiler. The full-loop CFB system for the simulation includes the CFB riser, cyclone, standpipe and U-loop. Two types of cyclone arrangement, i.e. axis and point based symmetric arrangement, are used for the CPFD simulation and ECT measurements. To validate the CPFD simulation, ECT is applied to measure the solids concentration in the standpipe with eight electrodes mounted on the outside of the standpipe. Key parameters including pressure, solids recirculation flux and velocity profile along different positions based on the CPFD simulation are analyzed and compared with experimental results. The CPFD simulation shows that the gas-solid flow is non-uniform among the six parallel cyclones. The solids concentration of four cyclones at the corner of the riser is higher than that of the others. The location of cyclone as well as the inlet angle of the cyclone needs to be optimized. The study shows that the presented approach based on CPFD simulation and ECT measurements can be used to optimize the arrangement of cyclone separators in a supercritical pressure circulating fluidized bed system.
机译:在文献中,很少有关于大规模和复杂旋流器布置的循环流化床(CFB)中的全回路气固流的报道。本文采用一种基于计算粒子流体动力学(CPFD)方法与电容层析成像(ECT)相结合的新方法来研究具有六个旋风分离器的CFB中气固流的流体动力学行为,以改进设计大型CFB锅炉的性能和性能。用于模拟的全回路CFB系统包括CFB立管,旋风除尘器,立管和U形回路。 CPFD模拟和ECT测量使用两种类型的气旋布置,即基于轴和点的对称布置。为了验证CPFD模拟,使用ECT来测量立管中的固体浓度,其中八个电极安装在立管的外部。分析了基于CPFD仿真的关键参数,包括沿不同位置的压力,固体再循环通量和速度分布,并与实验结果进行了比较。 CPFD模拟表明,在六个平行的旋风分离器中,气固两相流是不均匀的。提升管角落处四个旋风分离器的固体浓度高于其他旋风分离器。旋风分离器的位置以及旋风分离器的进口角度需要优化。研究表明,所提出的基于CPFD模拟和ECT测量的方法可用于优化超临界压力循环流化床系统中旋风分离器的布置。

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