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Wave model for longitudinal dispersion: application to the laminar-flow tubular reactor

机译:纵向弥散的波动模型:在层流管式反应器中的应用

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摘要

The wave model for longitudinal dispersion, published elsewhere as an alternative to the commonly used dispersed plug-flow model, is applied to the classic case of the laminar-flow tubular reactor. The results are compared in a wide range of situations to predictions by the dispersed plug-flow model as well as to exact numerical calculations with the 2-D model of the reactor and to other available methods. In many practical cases, the solutions of the wave model agree closely with the exact data. The wave model has a much wider region of validity than the dispersed plug-flow model, has a distinct physical background, and is easier to use for reactor calculations. This provides additional support to the theory developed elsewhere. The properties and the applicability of the wave model to situations with rapidly changing concentration fields are discussed. Constraints to be satisfied are established to use the new theory with confidence for arbitrary initial and boundary conditions.
机译:纵向扩散的波动模型在其他地方发表,作为常用的分散活塞流模型的替代方案,被应用于层流管式反应器的经典案例中。在广泛的情况下,将结果与分散的塞流模型的预测,反应器的2-D模型的精确数值计算以及其他可用方法进行了比较。在许多实际情况下,波动模型的解与精确数据非常吻合。波动模型比分散的塞流模型具有更大的有效性区域,具有独特的物理背景,并且更易于用于反应堆计算。这为其他地方开发的理论提供了额外的支持。讨论了波动模型在浓度场快速变化的情况下的性质和适用性。建立了要满足的约束条件,以便对任意初始条件和边界条件有把握地使用新理论。

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