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首页> 外文期刊>Current Science: A Fortnightly Journal of Research >Bubble size prediction in gas-solid fluidized beds using genetic programming
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Bubble size prediction in gas-solid fluidized beds using genetic programming

机译:遗传编程气固流化床中的泡尺寸预测

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The hydrodynamics of a gas-solid fluidized bed (FB) is affected by the bubble diameter, which in turn strongly influences the performance of a fluidized bed reactor (FBR). Thus, determining the bubble diameter accurately is of crucial importance in the design and operation of an FBR. Various equations are available for calculating the bubble diameter in an FBR. It has been found in this study that these models show a large variation while predicting the experimentally measured bubble diameters. Accordingly, the present study proposes a new equation for computing the bubble diameter in a fluidized bed. This equation has been developed using an efficient, yet infrequently employed computational intelligence (CI)-based data-driven modelling method termed genetic programming (GP). The prediction and generalization performance of the GP-based equation has been compared with that of a number of currently available equations for computing the bubble diameter in a fluidized bed and the results obtained show a good performance by the newly developed equation.
机译:气体固体流化床(FB)的流体动力学受气泡直径的影响,这反过来强烈影响流化床反应器(FBR)的性能。因此,准确地确定气泡直径对FBR的设计和操作至关重要。各种等式可用于计算FBR中的气泡直径。在这项研究中已经发现,这些模型显示出大的变化,同时预测实验测量的泡泡直径。因此,本研究提出了一种用于计算流化床中的气泡直径的新方程。这种等式已经使用高效,但不经常使用的计算智能(CI)基于遗传编程(GP)的基础数据驱动建模方法开发。基于GP的方程的预测和泛化性能已经与用于计算流化床中的气泡直径的多个当前可用的方程的预测和泛化性能进行了比较,并且所获得的结果显示了新开发的等式的良好性能。

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