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Development of a geometric flight unloading model for flighted rotary dryers

机译:开发用于飞行式旋转干燥机的几何飞行模型

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摘要

Flighted rotary dryers are used extensively in industrial applications for the drying of granular materials, and the understanding of the unloading characteristics of the flights within these units is critical to understanding their behaviour. This paper presents the development of a geometrical derived model for the unloading profile of a generic two-section flight. This model is then validated using experimental data from a flight unloading apparatus. The model is shown to be able to accurately reproduce the observed unloading profiles, however the results are shown to be highly sensitive to the material surface angle used in the model. High-speed photography is used to observe the surface of the granular material during unloading and measurements of key properties are made. Observation of these high-speed images shows that the unloading of the flight is discontinuous, and that there are significant fluctuations in the behaviour of the discharging solids.
机译:刮板式旋转干燥机在工业应用中广泛用于干燥粒状物料,因此了解这些单元中刮板的卸荷特性对于理解其性能至关重要。本文介绍了一种通用的两段式飞机的卸载轮廓的几何导出模型的开发。然后使用来自飞行卸载设备的实验数据验证该模型。该模型显示出能够准确地再现观察到的卸载轮廓,但是结果表明,该结果对模型中使用的材料表面角度高度敏感。高速摄影用于在卸载过程中观察粒状材料的表面,并进行关键性能的测量。对这些高速图像的观察表明,刮板的卸载是不连续的,并且放电固体的行为存在明显的波动。

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