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CFD investigation of gas-solids flow in a new fluidized catalyst cooler

机译:CFD调查新型流化催化剂冷却器中的气固流量

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摘要

In our previous work, a new concept of annular catalyst cooler (ACC) was proposed and validated experimentally, which showed that an internal circulation of solids could be formed by using two gas distributors and both hydrodynamics and heat transfer could be largely improved. The current work simulated detailed hydrodynamics of gas-solids flow to advance our understanding of the ACC by using the two-fluid model. The influences of effective particle diameter dp⁎ and specularity coefficient φ were examined and compared with experimental data. Optimum values of dp⁎ = 170 μm and φ = 0.3 were determined and used in the simulations. Detailed hydrodynamics of gas-solids flow were then obtained, and the influential parameters were examined. The results showed that the proper selection of the ratio of gas velocities and the position of the heat transfer tube were needed to form a stable internal solids circulation in the ACC. The ACC had a combined hydrodynamic feature of up-flow and down-flow catalyst coolers with bigger solids volume fraction and smaller particle resident time, which are beneficial for improving the heat transfer between solids and wall.
机译:在我们以前的工作中,提出了一种新型的环形催化剂冷却器(ACC)概念并进行了实验验证,结果表明,使用两个气体分配器可以形成固体的内部循环,并且可以大大改善流体动力学和传热性能。当前的工作模拟了气固两相流的详细流体动力学,以通过使用双流体模型提高对ACC的理解。研究了有效粒径dp⁎和镜面反射系数φ的影响,并与实验数据进行了比较。确定了dp⁎= 170μm和φ= 0.3的最佳值,并将其用于仿真中。然后获得了气固两相流的详细流体动力学,并研究了影响参数。结果表明,需要适当选择气体流速比和传热管的位置,以在ACC中形成稳定的内部固体循环。 ACC具有上流式和下流式催化剂冷却器的组合流体力学特性,具有更大的固体体积分数和更短的颗粒停留时间,这有利于改善固体与壁之间的传热。

著录项

  • 作者

    Yao X; Zhang Y; Lu C; Wen D;

  • 作者单位
  • 年度 2016
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  • 原文格式 PDF
  • 正文语种 en
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