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Interaction and influence of a flow field and particleboard particles in an airflow forming machine with a coupled Euler-DPM model

机译:具有耦合Euler-DPM模型气流成型机中流场和刨花板颗粒的相互作用和影响

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Particleboards are widely used in the artificial board market, which can be constructed from a variety of raw materials and require small amounts of energy to be produced. In the particleboard production process, forming machines play an important role as the key equipment for achieving continuous production. In recent years, airflow forming machines have received increasing attention in particleboard production lines because of their strong separation ability and low price. However, the internal flow field is complex and difficult to control, which affects the surface quality and strength of the particleboard. The most pressing technical difficulty is controlling the flow field characteristics of the airflow paver. At present, the research on this subject is conducted primarily through repeated experiments, which entail long research periods and high processing costs. To reduce human and financial costs, in this study, Computational Fluid Dynamics (CFD) is employed to investigate the flow field and the gas-solid two-phase flow field coupled with particle movement of an airflow forming machine. The accuracy of the calculation model is verified by comparing characteristic point velocities obtained from experimental analysis and a simulation. The simulation results show that in practical production, the frequency of a negative pressure fan should be greater than 27 Hz. It is necessary to set the shoulder properly, and the slab smoothness can be improved by moving the shoulder back on the premise of meeting the strength requirements of the box. The distance between the shoulders of the box body should be less than 2570 mm, and particles with uniform diameter should be added to the paving box to reduce the turbulence effect, improve the quality of particle forming and provide actual particleboard production with a solid theoretical foundation.
机译:刨花板广泛用于人工板市场,可由各种原料构成,需要生产少量的能量。在刨花板生产过程中,成型机起到了实现连续生产的关键设备的重要作用。近年来,由于其强大的分离能力和低价格,气流成型机在刨花板生产线上受到了不断的关注。然而,内部流场复杂且难以控制,这影响了刨花板的表面质量和强度。最紧迫的技术难度是控制气流摊铺机的流场特性。目前,对该受试者的研究主要通过重复的实验进行,这需要长期的研究期和高处理费用。为了减少人类和财务成本,在本研究中,采用计算流体动力学(CFD)来研究流场和耦合与气流成型机的颗粒运动的气体固体两相流场。通过比较从实验分析获得的特征点速度和模拟来验证计算模型的准确性。仿真结果表明,在实际生产中,负压风扇的频率应大于27Hz。有必要正确地设置肩部,通过将肩部移动到满足盒子强度要求的前提下,可以提高板坯平滑度。箱体的肩部之间的距离应小于2570毫米,铺设直径均匀的颗粒应加入到铺路箱中以降低湍流效果,提高颗粒的质量,并提供实际的理论基础的实际刨花板生产。 。

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