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首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Investigation of the dust control performance of a new transverse-flow air curtain soft-sealing system
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Investigation of the dust control performance of a new transverse-flow air curtain soft-sealing system

机译:新型横向流空气幕软件密封系统的粉尘控制性能研究

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摘要

On account of certain technological requirements, it is difficult for some industrial processes that generate dust to be sealed in a fixed pattern and ventilated for dust discharge, mainly automatic welding, pressure casting, wood processing, and crop production, which has become a significant bottleneck in dust control. The present study developed a transverse-flow soft-sealing dust control system, in which four novel air curtain generators were arranged in a square pattern within the region where dust was generated to create end-to-end planar transverse-flow air curtains and achieve soft sealing. The air suction inlet was placed centrally above the area where dust was generated; under the suction airflow, the dusty air was gradually diluted and driven away to effectively suppress dust escape. The flow field characteristics in the area where dust was generated and the performance of the developed sealing system in controlling fine smoke dust were qualitatively analyzed using a tracing experiment with smoke dust. Tracing experimental results on leaf powder qualitatively reveal directional dust control of large dust particles. Moreover, the dust control efficiency was evaluated under different conditions to quantitatively investigate the effects of air curtain outlet velocity, exhaust-to-pressure ratio, and jet angle. The results show that with a greater air supply and air suction rate, the airflow exhibited a more obvious entrainment effect and stronger dust exhaust and discharge, and simultaneously, the formed tracing smoke column had a clearer boundary. At an air curtain outlet velocity of 6.27-839 m/s and a corresponding air supply rate of 17.00-22.57 m(3)/min, a stable air curtain was formed, which achieved remarkable dust control at an exhaust-to-pressure ratio of 0.8-1.0. With an increase in the air curtain jet angle, the dust control efficiency of the system first increased but subsequently decreased. In the present study, the appropriate air curtain jet angle was 10-20 degrees for the developed soft-sealing system. In conclusion, when the air curtain outlet velocity, exhaust-to-pressure ratio, and jet angle were 6.27 m/s, 0.6, and 15 degrees, respectively, the dust control efficiency of the developed soft-sealing system reached 92.6%. (C) 2019 Elsevier B.V, All rights reserved.
机译:由于某些技术要求,一些工业过程难以在固定图案中封闭灰尘的工业过程,并通风进行灰尘放电,主要是自动焊接,压力铸造,木材加工和作物生产,这已成为一个重要的瓶颈在灰尘控制中。本研究开发了一种横向流动软密封粉尘控制系统,其中四种新型空气幕动器在产生灰尘的区域内以方形图案布置,以产生端到端的平面横向流动空气窗帘并实现软密封。空气吸气入口被居中于产生灰尘的区域上方;在抽吸气流下,尘土飞扬的空气逐渐稀释并驱逐有效地抑制灰尘逸出。产生灰尘的区域中的流场特性和在控制细烟尘中的发达密封系统的性能进行定性分析烟雾粉尘的追踪实验。追踪叶粉的实验结果定制揭示大型粉尘颗粒的定向粉尘控制。此外,在不同条件下评估粉尘控制效率,以定量地研究空气幕出口速度,排气到压力比和喷射角度的影响。结果表明,由于空气供应和空气吸入率更大,气流表现出更明显的夹带效果和更强的粉尘排气和放电,同时,形成的跟踪烟雾柱具有更清晰的边界。在空气幕出口6.27-839 m / s和相应的空气供应速率为17.00-22.57 m(3)/ min,形成了稳定的空气幕,在排气到压力比下实现了显着的粉尘控制0.8-1.0。随着空气幕射角的增加,系统的灰尘控制效率首先增加,但随后减少了。在本研究中,开发的软密封系统的适当空气幕式喷射角为10-20度。总之,当空气幕出口速度,排气比和喷射角度分别为6.27 m / s,0.6和15度,发达的软密封系统的粉尘控制效率达到92.6%。 (c)2019年Elsevier B.V,保留所有权利。

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