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Simulation and experimental study on the stone powder separator of a vertical shaft impact crusher

机译:垂直轴冲击式破碎机石粉分离器的仿真与实验研究

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During the sand-making process, the stone powder produced by means of a vertical shaft impact (VSI) crusher affects the sand quality and pollutes the environment. This paper focuses on experiments and simulations with a stone powder separator (SPS) that is installed in a VSI crusher. Using FLUENT software, a coupling model of computational fluid dynamics (CFD) and the discrete phase model (DPM) is used to simulate the airflow distribution and particle traces in a VSI crusher. The stone powder separation and large particle retention performance are evaluated considering two important factors: the structure of the SPS and the air volume of the induced draft fan. The simulation results show that the air volume of the induced draft fan intuitively influences the particle traces and the distributions of particles of different sizes in the crushing chamber and the SPS chamber. There are many vortexes in the crushing chamber that cause the aggregate particles to be fully dispersed under the action of turbulence, and the SPS structure with radius decreasing from bottom to top can form an airflow velocity gradient in the SPS chamber and selectively remove particles according to size, thus improving the stone powder separation performance (SPSP). For this structure, when the air volume of the induced draft fan is set to approximately 40% of the maximum value, it can not only avoid large particles being massively removed but also ensure better SPSP of the device. Finally, the simulation results are verified by experiments. The results of this paper provide a reliable numerical model for the calculation of the flow field in a VSI crusher and provide a reference for the structural optimization of the stone powder separation device and for the selection of the best air volume of the induced draft fan. (C) 2020 The Society of Powder Technology Japan. Published by Elsevier B.V. and The Society of Powder Technology Japan. All rights reserved.
机译:在砂制过程中,通过垂直轴冲击(VSI)破碎机生产的石粉会影响砂质量并污染环境。本文重点介绍了使用安装在VSI破碎机中的石粉分离器(SPS)的实验和模拟。使用流畅的软件,使用计算流体动力学(CFD)和离散相位模型(DPM)的耦合模型来模拟VSI破碎机中的气流分布和粒子迹线。考虑到两个重要因素评估石粉分离和大的颗粒保持性能:SPS的结构和诱导的风扇的空气量。仿真结果表明,诱导的风扇的风量直观地影响破碎室和SPS室中不同尺寸的颗粒迹线和颗粒的分布。破碎室中有许多涡流,导致骨料颗粒在湍流的作用下完全分散,并且从底部到顶部的半径减小的SPS结构可以在SPS室中形成气流速度梯度,并选择性地取下根据颗粒尺寸,从而改善石粉分离性能(SPSP)。对于这种结构,当诱导的风扇的空气量设定为最大值的大约40%时,它不仅可以避免大量颗粒,而且还可以保证更好的装置SPSP。最后,通过实验验证了模拟结果。本文的结果提供了一种可靠的数值模型,用于计算VSI破碎机中的流场,并为石粉分离装置的结构优化提供参考,以及选择诱导风扇的最佳风量。 (c)2020日本粉末科技会。由elsevier b.v发表。和日本粉末科技会。版权所有。

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