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Fluidized bed modeling applied to the analysis of processes: review and state of the art

机译:流化床建模应用于过程分析:回顾与最新技术

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The fluidized bed is a technology that involves multiple phases, allowing for efficient contact between them, therefore it is widely used in the chemical industry, metallurgy, oil and thermal power generation. In fluidized bed processes, the gas–solid interactions and chemical reactions generate a large number of variables to be handled, making the process very complex. Therefore, fluidized bed modeling and simulation is widely used to predict and analyze different processes, but it is possible to find in the literature many mathematical correlations that describe this type of flow. Based on this, the present work presents a review of the main mathematical models that describe the behavior of a fluidized bed reactor, and the state of the art regarding the use of modeling and simulation of the bed to predict and analyze different processes. As a result of this review, we can observe the importance of further development of the hydrodynamic modeling of fluidized beds, where understanding the interactions between the phases and the influence of this interaction is crucial for a better understanding and control of the processes. Generating experimental data of gas–solid and solid–solid interactions is also required for the validation of the numerical models.
机译:流化床是一项涉及多相的技术,可以使它们之间有效接触,因此被广泛用于化工,冶金,石油和热力发电。在流化床过程中,气固相互作用和化学反应会产生大量要处理的变量,从而使过程非常复杂。因此,流化床建模和模拟被广泛用于预测和分析不同的过程,但是有可能在文献中找到许多描述此类流动的数学关系式。基于此,本工作提出了对描述流化床反应器行为的主要数学模型的综述,以及有关使用模型化和模拟床层来预测和分析不同过程的最新技术。审查的结果是,我们可以观察到进一步发展流化床流体力学模型的重要性,其中了解相之间的相互作用以及这种相互作用的影响对于更好地理解和控制过程至关重要。数值模型的验证也需要生成气固和固固相互作用的实验数据。

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