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Particle dynamics and gas-phase hydrodynamics in a rotating cone reactor.

机译:旋转锥形反应器中的粒子动力学和气相流体动力学。

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摘要

The rotating cone reactor is a novel reactor type which can be used for rapid thermal solids processing. This paper focuses on particle dynamics and gas-phase hydrodynamics in a rotating cone reactor as a first stage to obtain a basic understanding of the processes that govern the performance of this reactor. Therefore, the flow of nearly spherical monosized PVC powder in a cold-flow rotating cone reactor has been studied under variation of the particle diameter (140¿780 ¿m), the cone rotational speed (up to 1800 rpm) and two different cone top-angles (60 and 90°). The gas flow created by the rotating cone showed a marked influence on motion of particles smaller than 200 ¿m. A mathematical model is presented using a single-particle description, and a turbulent gas flow description near the wall according to the universal velocity profile. The experimentally observed residence time of the particles inside the present reactor is typically in the order of 0.2 s.
机译:旋转圆锥反应器是一种新颖的反应器类型,可以用于快速热固体处理。本文首先关注旋转锥反应器中的粒子动力学和气相流体动力学,作为第一步,以基本了解控制该反应器性能的过程。因此,已经研究了在粒径(140-780μm),圆锥旋转速度(最高1800 rpm)和两个不同的圆锥顶变化的情况下,在冷流旋转圆锥反应器中近球形单一尺寸PVC粉末的流动。 -角度(60和90°)。旋转锥产生的气流对小于200μm的颗粒的运动表现出显着影响。根据通用速度曲线,使用单颗粒描述和壁附近的湍流描述来建立数学模型。实验观察到的颗粒在本反应器内的停留时间通常约为0.2s。

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