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首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >The fluidization process of binary mixtures of solids: Development of the approach based on the fluidization velocity interval
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The fluidization process of binary mixtures of solids: Development of the approach based on the fluidization velocity interval

机译:固体二元混合物的流化过程:基于流化速度区间的方法的发展

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摘要

The main characteristic of the fluidization process of particulate mixtures is the interaction between bed suspension and segregation-remixing dynamics of their components. On addressing the fluidization properties of binary beds of solids differing either in particle density or diameter, the paper shows how interpretations based on definition of a minimum fluidization velocity of the mixture can lead to erroneous conclusions about the influence played by system variables on their behaviour. An alternative method of investigation is followed which takes into consideration the existence of a finite velocity interval, bounded by the "initial" and "final fluidization velocity" of the mixture, along which the whole process of fluidization has place. The results of a wide series of experiments demonstrate that this alternative approach allows recognizing the independent variables of binary fluidization; they also highlight the differences of behaviour between density- and size-segregating beds.
机译:颗粒混合物的流化过程的主要特征是床悬浮液与其组分的分离-再混合动力学之间的相互作用。在解决颗粒密度或直径不同的固体二元床的流化特性时,本文显示了基于混合物最小流化速度的定义的解释如何导致关于系统变量对其行为的影响的错误结论。遵循一种替代的研究方法,该方法考虑了有限速度区间的存在,该区间受混合物的“初始”和“最终流化速度”的限制,流化的整个过程都沿着该速度区间进行。一系列实验的结果表明,这种替代方法可以识别二元流化的独立变量。他们还强调了密度分离床和尺寸分离床之间行为的差异。

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