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3D 螺旋风幕发生器对隧道掘进过程中呼吸性粉尘污染的控制效果。

The control effect of 3D spiral wind-curtain generator on respirable dust pollution during tunnelling process.

机构信息

College of Safety and Environmental Engineering, Shandong University of Science and Technology, Qingdao, 266590, Shandong Province, China.

State Key Laboratory of Mining Disaster Prevention and Control Co-founded by Shandong Province and the Ministry of Science and Technology, Shandong University of Science and Technology, Qingdao, 266590, China.

出版信息

Environ Sci Pollut Res Int. 2021 Dec;28(48):68212-68228. doi: 10.1007/s11356-021-14899-y. Epub 2021 Jul 15.

Abstract

The respirable dust pollution produced in the cutting process of tunnelling machine during tunnelling process is a serious threat to the health of workers. The key to solve this problem is to build an effective ventilation system in the tunnel. In this paper, experiments were designed and implemented to obtain the temporal-spatial evolution of respirable dust pollution before and after the 3D spiral wind-curtain generator was used for tunnel auxiliary ventilation, and the CFD method was used to supplement and visualize the experimental results. Before the 3D spiral wind-curtain generator was used, the respirable dust gradually diffused from the cutting face to other spaces of the tunnel, and finally presented a stable state with time. After using the 3D spiral wind-curtain generator for auxiliary ventilation, the dust diffusion speed in the tunnel was slower than before, and the dust concentration was lower than before. When adjusting the position of the generator and installing it 20m away from the cutting face, an effective dust control wind-curtain formed within the range of 3.5 ~ 6.5m away from the cutting face. With the increase of time, the dust is stably controlled within the space of 4.5m away from the cutting face, and then pumped away by the exhaust fan, so as to purify the tunnel environment and ensure the tunnel's cleanliness and safety and efficient excavation.

摘要

在隧道掘进过程中,掘进机切割过程中产生的可呼吸粉尘污染对工人的健康构成严重威胁。解决这个问题的关键是在隧道内建立一个有效的通风系统。本文设计并实施了实验,以获得在使用 3D 螺旋风幕发生器进行隧道辅助通风前后可呼吸粉尘污染的时空演化,并使用 CFD 方法对实验结果进行补充和可视化。在使用 3D 螺旋风幕发生器之前,可呼吸粉尘逐渐从工作面扩散到隧道的其他空间,最终随时间呈现稳定状态。使用 3D 螺旋风幕发生器进行辅助通风后,隧道内的粉尘扩散速度较慢,粉尘浓度较低。当调整发生器的位置并将其安装在距工作面 20m 处时,在距工作面 3.5~6.5m 的范围内形成了有效的控尘风幕。随着时间的增加,粉尘在距工作面 4.5m 的空间内稳定控制,然后被排风扇抽走,从而净化隧道环境,确保隧道清洁、安全、高效掘进。

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