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Study of Flow Patterns in Two-Stage Mode of Moving Granular Bed Filter

机译:颗粒床移动过滤器两阶段流型研究

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The use of moving granular bed filters (MGBFs), which hold an important role in the gasification or combustion of coal and biomass, has been growing. Furthermore, these filters have great potential to be developed for the high-temperature gas cleanup of advanced power generation systems. However, the creation of a stagnant zone due to defective designs in MGBFs can cause serious issues such as plugging. Therefore, in order to minimize these problems, flow-corrective inserts for filter vessels have been researched, most of which use mono-sized filter granules. This study proposed a new method that introduced two granule sizes in one filter vessel, called the two-stage filtration mode. Nevertheless, the design theory of a mass flow vessel by Johanson could not be satisfied by using two sizes of filter granules to diminish the stagnant zone. The flow patterns in a two-dimensional and cross-flow moving granular bed were evaluated in six test configurations based on different geometric designs in a filter. The two kinds of filter granules consisted of coarse and fine silica sands. The findings revealed that the flow patterns of filter granules were influenced by the vessel geometry. The optimal design for two-stage filtration diminished the stagnant zone in 165 minutes.
机译:在煤和生物质的气化或燃烧中起重要作用的移动颗粒床过滤器(MGBF)的使用正在增长。此外,这些过滤器具有很大的潜力,可用于先进发电系统的高温气体净化。但是,由于MGBF中的缺陷设计而导致停滞区的产生会引起严重的问题,例如堵塞。因此,为了使这些问题最小化,已经研究了用于过滤容器的流量校正插入件,其中大多数使用单一尺寸的过滤颗粒。这项研究提出了一种新方法,该方法在一个过滤容器中引入了两种颗粒大小,称为两阶段过滤模式。然而,通过使用两种尺寸的过滤器颗粒来减少停滞区域,无法满足Johanson提出的质量流量容器的设计理论。基于过滤器中不同的几何设计,在六种测试配置中评估了二维和错流移动颗粒床中的流动模式。两种过滤颗粒由粗砂和细砂组成。这些发现表明,过滤器颗粒的流动方式受容器几何形状的影响。两阶段过滤的最佳设计在165分钟内减少了停滞区。

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