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The Hydrodynamics Studies on Loop Seal in CFBC Boiler Using CFD Analysis

机译:CFD分析中CFBC锅炉环密封的流体动力学研究

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In a circulating fluidized bed(CFB),the loop seal is an important component which recirculates the solids captured by the cyclone to the bottom of the riser and avoids the direct flow of gas from high-pressure riser to the low-pressure cyclone.Most of the CFBC systems employ a Non-Mechanical valve,and its function has been investigated by many researchers.In this work,the flow of solid particle within the loop seal has been studied elaborately,and various design and operating parameters of the loop seal were analyzed in detail using Computational Fluid Dynamics(CFD).The CFD study has handled a loop-seal of dimension 110 mm × 430 mm × 400 mm high.This analysis has been done with a 200 μm sand particle and it is checked for its flow ability through various sizes and by altering the L/H ratio for three solid mass fluxes and for three L/H ratios of loop seal.The rate of solid mass flux depends on the length of the horizontal passage connecting the recycle cycle compartment of the loop seal with the supply chamber and hence the solid flow rate and the pressure difference per unit length are directly proportional to the length of the chamber or passage.Hence, L/H ratio is taken as a driving variable for the optimum performance of loop seal.The CFD analysis results reveal that the aeration of the solid to be used within the loop-seal should be higher than the Minimum Fluidization velocity.Also,keeping the length of the horizontal passage constant and varying the height of the passage will reduce the pressure drop.The pressure drop across the horizontal passage decreases up to a certain L/H ratio after which it increases.By comparing the three L/H ratios,L/H ratio of 2.62 is having a lesser pressure drop for the three mass fluxes.L/H ratio of 2.62 is having a good fluidization phenomenon and also the flow from the recycle chamber is more in comparison to the other L/H ratios.Experimental data from the literature is in good agreement with the CFD results.
机译:在循环流化床(CFB)中,环封是将由旋风器捕获的固体重新加入提升管底部的重要组成部分,并避免从高压立管到低压旋风器的直接气体流动在CFBC系统采用非机械阀门,许多研究人员研究了其功能。在这项工作中,在整个过程中,研究了环封内的固体粒子的流动已经精心研究,以及环形密封的各种设计和操作参数使用计算流体动力学(CFD)详细分析。CFD研究已经处理了尺寸110mm×430mm×400mm的环封。此分析用200μm砂颗粒进行,并检查其流量通过各种尺寸和通过改变三个固体质量通量的L / H比率和环形密封的三个L / H比的能力。固体质量磁通量的速率取决于连接环的再循环循环室的水平通道的长度海豹随着供应室,因此固体流速和每单位长度的压力差与腔室或通道的长度成比例。即,L / H比是作为环封的最佳性能的驱动变量。该CFD分析结果表明,在环封内使用的固体的曝气应高于最小流化速度。可以保持水平通道恒定和改变通道的高度将减小压降。水平通道上的压降降低至其增加之后的某个L / h比。比较三个L / H比率,L / H比为2.62为三种质量磁通量具有较小的压降.L / H比为2.62具有良好的流化现象,并且还与其他L / H比较的流量更像与其他L / H比较。来自文献的实验数据与CFD结果很好。

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