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Development of a hydrodynamic model and the corresponding virtual software for dual-loop circulating fluidized beds

机译:用于双环循环流化床的流体动力学模型和相应虚拟软件的开发

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Dual-loop circulating fluidized bed (CFB) reactors have been widely applied in industry because of their good heat and mass transfer characteristics and continuous handling ability. However, the design of such reactors is notoriously difficult owing to the poor understanding of the underlying mechanisms, meaning it has been heavily based on empiricism and stepwise experiments. Modeling the gas-solid CFB system requires a quantitative description of the multiscale heterogeneity in the sub-reactors and the strong coupling between them. This article proposed a general method for modeling multiloop CFB systems by utilizing the energy minimization multiscale (EMMS) principle. A full-loop modeling scheme was implemented by using the EMMS model and/or its extension models to compute the hydrodynamic parameters of the sub-reactors, to achieve the mass conservation and pressure balance in each circulation loop. Based on the modularization strategy, corresponding interactive simulation software was further developed to facilitate the flexible creation and fast modeling of a customized multi-loop CFB reactor. This research can be expected to provide quantitative references for the design and scale-up of gas-solid CFB reactors and lay a solid foundation for the realization of virtual process engineering.
机译:双环循环流化床(CFB)反应器由于其良好的热量和传质特性和连续处理能力而广泛应用于工业中。然而,由于对潜在机制的理解差,这种反应器的设计令人难以困难,这意味着它已经基于经验主义和逐步实验。建模气体固体CFB系统需要定量描述副反应器中的多尺度异质性和它们之间的强耦合。本文提出了一种通过利用能量最小化多尺度(EMM)原理来建立多环CFB系统的一般方法。通过使用EMMS模型和/或其扩展模型来实现全环建模方案来计算子反应器的流体动力学参数,以实现每个循环回路中的质量保守和压力平衡。基于模块化策略,进一步开发了相应的交互式仿真软件,以促进定制的多环CFB反应堆的灵活创建和快速建模。可以预期该研究可以为气固CFB反应器的设计和扩展提供定量参考,并为实现虚拟工艺工程提供坚实的基础。

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