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NUMERICAL STUDY OF SOLID PARTICLE AXIAL MIXING IN A FIXED CYLINDRICAL DRUM WITH ROTATING PADDLES

机译:具有旋转桨叶固定圆柱滚筒固定圆柱滚筒中固体颗粒轴向混合的数值研究

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Axial mixture characterization is a widespread problem in granular particle blending processes such as in an horizontal drum mixer. The homogeneous mixture of particles is obtained by blending the particles via rotating paddles in a fixed cylindrical drum. This problem, common to many technological devices, is crucial in the manufacture of a broad variety of industrial products, such as polypropylene. The granular flow behavior in these systems is still poorly understood and the numerical study of such configurations receives increasing academic and industrial attention. In this paper, a study is conducted to investigate the effects of different aspects of the reactor design on the axial transport of monodisperse, uniform density and spherical polypropylene particles. Results show that principally the shape of the paddles is the important design consideration to enhance the axial transport of particles.
机译:轴向混合物表征是粒状颗粒混合方法的广泛问题,例如水平滚筒混合器。通过在固定圆柱滚筒中通过旋转桨叶混合颗粒来获得均匀的颗粒混合物。对于许多技术装置来说,这个问题在许多技术设备中,在制造各种工业产品(例如聚丙烯)中是至关重要的。这些系统中的粒状流动仍然明显,并且这种配置的数值研究得到了增加的学术和工业关注。本文进行了研究,以研究反应器设计不同方面对单分散,均匀密度和球形聚丙烯颗粒的轴向传输的影响。结果表明,主要是桨叶的形状是增强粒子轴向传输的重要设计考虑因素。

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