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结构与风机流量对负压通道流动特征的影响
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Effect of Structure Parameters and Fan Flow Rate on Flow Characteristics of Negative Pressure Channel
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    为同步包装机的物料交接和吸附工序,提出一种含多个负压吸盘的主墙板与副墙板联合通道. 基于计算流体动力学技术,建立负压通道流场模型. 结合RNG k-ε湍流模型与增强壁面处理,探讨通道结构参数与风机流量对流场压力与速度分布的影响. 结果表明,渐扩管、导流构件与负压风机位置对空气流动影响较大. 渐扩管处的旋流效应会加剧压力损失,负压吸盘附近的导流构件能够降低气流紊乱度,风机布置在通道中心时将显著提高气流平均速度. 基于层次分析法,建立流动特征综合性能量化模型. 当风机流速为13 m/s时,改进结构中主墙板与副墙板的流动性能分别提高53%与21%. 风机流速增加到18 m/s时,风机的影响效果高于结构的影响.

    Abstract:

    To synchronize the material transfer and adsorption process of the packaging machine, a combined channel of main and secondary wall panels with multiple negative-pressure suction cups is proposed. The flow field model of the negative-pressure channel is established based on computational fluid dynamics technology. Combined with the RNG k-ε turbulence model and enhanced wall treatment, the effects of channel structural parameters and fan flow on the pressure and velocity distribution are discussed. The results show that the airflow is influenced by expanding pipe, deflector, and fan position. The secondary flow at the expanding pipe intensifies the pressure loss, the deflector near the negative- pressure suction cups reduces the turbulence, and the fan located in the channel center improves the average airflow velocity. Based on the analytic hierarchy process, a quantitative model for the comprehensive performance of flow characteristics is established. When the fan velocity is at 13 m/s, the flow performance of the main and the secondary wall panels increases by 53% and 21%, respectively. However, the effect of the fan is higher than that of the structure when the fan velocity increases to 18 m/s.

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苏杰 ,周长江 ?,陈国淳 ,钟翔 .结构与风机流量对负压通道流动特征的影响[J].湖南大学学报:自然科学版,2022,49(12):65~74

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  • 在线发布日期: 2023-01-02
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