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An advanced gas-solid flow engineering model for a fluidized bed reactor system

机译:流化床反应器系统的先进气固流动工程模型

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A literature survey shows that there are two approaches to mathematically describe gas-solid two-phase flow and reaction in the fluidized bed reactors. One approach is a very simplistic engineering reactor model, and the other approach is based on a rigorous Computational Fluid Dynamic (CFD) model. Despite significant progress on numerical methods, CPU capacity and performance, and theories describing gas-solid flow, CFD based reacting flow modeling is far from being a routine tool for designing new reactors. Thus, simpler reactor models are still the main method for providing guidance for fluidized bed reactor design and optimization. However, traditional reactor models have considered too many simplifying assumptions that create inconsistencies in the governing equations of the boundary conditions such that it can result in erroneous prediction. In the current paper, an advanced gas-solid two-phase engineering reactor model has been developed for flow, heat transfer and reaction in the riser reactor of a circulating fluidized bed system. In contrast to CFD, this model can use as input parameters the hydrodynamic information obtained from published literature or experimental measurement such as axial and radial profiles for solid volume fraction, gas velocity and gas dispersion coefficient. While the hydrodynamics can be as accurate as measured, this advanced engineering reactor model is also coupled with either simple power law or the most rigorous kinetic models that involve elementary reactions. In this way, we can extract heterogeneous reaction kinetics from pilot plant or production reactor data directly. Model validation with pilot plant data and tracer data for a riser reactor will be presented and the short falls of traditional treatment of engineering fluidized bed reactor models will also be discussed.
机译:文献调查表明,在流化床反应器中有两种方法来数学描述气体固体两相流和反应。一种方法是一个非常简单的工程反应堆模型,另一种方法是基于严格的计算流体动态(CFD)模型。尽管对数值方法的显着进展,CPU容量和性能以及描述了气体固体流量的理论,CFD基于反应流动建模远远不代表设计新反应堆的常规工具。因此,更简单的反应堆模型仍然是为流化床反应器设计和优化提供指导的主要方法。然而,传统的反应堆模型已经考虑了太多简化的假设,这些假设在边界条件的控制方程中产生了不一致的假设,使得它可能导致错误的预测。在本发明的纸张中,已经开发了一种先进的气固两相工反应器模型,用于循环流化床系统的提升管反应器中的流动,传热和反应。与CFD相比,该模型可以用作输入参数从发布的文献或实验测量获得的流体动力学信息,例如用于固体体积分数,气体速度和气体分散系数的轴向和径向分布。虽然流体动力学可以像测量一样准确,但这种先进的工程反应堆模型也与简单的电力法或涉及基本反应的最严格的动力学模型相结合。通过这种方式,我们可以直接从先导植物或生产反应堆数据中提取异质反应动力学。将展示使用试验厂数据和用于提升器反应器的示踪数据的模型验证,并且还将讨论工程流化床反应器模型的传统治疗的短缺。

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