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CFD PRELIMINARY STUDY OF GAS-SOLID FLOW IN FCC CATALYST COOLERS

机译:CFC催化器冷却器中气固流动的CFD初步研究

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Heavy fractions of oil are converted into lighter ones in Fluid Catalytic Cracking (FCC) process. This process is important because lighter components are more valuable and useful. In FCC units, the catalyst is cooled in an external device called catalyst cooler, before returning to the riser reactor, to avoid carbon formation and consequent deactivation. Despite much has been done to improve the FCC reactor operation and to understand the gas-solid flow behavior inside it, there is a lack of information related to the catalyst cooler. Computational Fluid Dynamics Euler-Euler simulations were developed using Ansys FLUENT 14.5 to get information about gas-solid flow behavior in two different catalyst cooler geometries. For now, in a preliminary approach to evaluate the system, simulations have been developed without solids reentering the computational domain. As a consequence, a start-up particle bed was fluidized by air, which drags these particles upward the cooler. Our goal was to get information about the effect of geometric changes in gas-solid flow and fluidization inside the system. Despite the simple approach, results gave insights about the gas-solid flow behavior. The results obtained with these simulations indicated differences in the flow patterns for both geometries, showing the effect that the annular distributor has in gas-solid mixture and in the structure of the multiphase flow.
机译:重油馏分在流化催化裂化(FCC)过程中转化为轻馏分。这个过程很重要,因为较轻的组件更有价值和有用。在FCC装置中,在返回提升管反应器之前,应在称为“催化剂冷却器”的外部设备中冷却催化剂,以避免形成碳并因此而失活。尽管已经做了很多工作来改善FCC反应器的运行并了解其内部的气固流动行为,但仍缺乏与催化剂冷却器有关的信息。使用Ansys FLUENT 14.5开发了计算流体动力学Euler-Euler模拟,以获取有关两种不同的催化剂冷却器几何形状中气固流动行为的信息。目前,在评估系统的初步方法中,已经进行了仿真,而固体没有重新进入计算域。结果,启动颗粒床被空气流化,这将这些颗粒向上拖动到冷却器中。我们的目标是获得有关系统内部气固流和流化的几何变化影响的信息。尽管采用了简单的方法,但结果仍然提供了有关气固流动行为的见解。通过这些模拟获得的结果表明,两种几何形状的流型都有差异,表明了环形分配器在气固混合物和多相流结构中的作用。

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