压入式通风台阶法悬臂掘进大断面隧道粉尘空间分布规律及分区特征

Distribution Pattern and Zonation Theory of Dust in Forced Ventilation of Bench Method Cantilever Tunnelling

  • 摘要: 为探明台阶法悬臂掘进大断面隧道开挖阶段粉尘浓度和粒度的空间分布规律,依托中国西南某双线高铁隧道开展现场实测研究,测量隧道各区域的粉尘浓度和粒度分布特征,总结在压入式通风条件下粉尘扩散规律,揭示粉尘扩散的纵向分区特征。结果表明:(1)大断面台阶法隧道不同区域粉尘浓度分布特征不同,其中紊流区(0~30 m)粉尘浓度波动显著(峰值1424 mg/m3),沉降区(30~100 m)粉尘浓度由960 mg/m3快速降至288 mg/m3,稳定区(>100 m)低于70 mg/m3;下台阶的大颗粒补充机制使得沉降区范围较小断面隧道更大,上台阶局部存在涡流、回风和扩散区,其中回风区粉尘浓度呈非单调变化。(2)不同掘进工况产尘粒径差异显著,斜向推进粒径最大(D50=15.59 μm),左右摆动铣挖粒径最小(D50=8.52 μm),呼吸性粉尘占比为22.68%~41.22%。(3)粉尘粒径随离掌子面距离增大而逐渐降低,大颗粒粉尘在掌子面后25 m内大量沉积,100 m外呼吸性粉尘占比超80%;开挖掌子面后方300 m粉尘沉积较为均匀,且粉尘平均粒径较小,在6.02~7.11 µm之间。

     

    Abstract: To investigate the spatial distribution patterns of dust concentration and particle size during the excavation phase of large cross-section tunnels using the bench tunnelling method with a cantilever roadheader, this study conducted field measurements based on the construction of a double-track high-speed railway tunnel in Southwest China. The dust concentration and particle size distribution in various tunnel zones were measured, the dust diffusion patterns under forced ventilation were summarized, and the longitudinal zonal characteristics of dust diffusion were elucidated. The field measurement results indicate: (1) The distribution characteristics of dust concentration in different areas of large section bench tunnel are different, and the concentration of dust in the turbulent zone (0 ~ 30 m) fluctuates significantly (peak 1424 mg/m3), the concentration in the settlement zone (30 ~ 100 m) decreases rapidly from 960 mg/m3 to 288 mg/m3, and the stable zone (> 100 m) is less than 70 mg/m3. The large particle replenishment mechanism of the lower step makes the settlement area larger than that of the small section tunnel. There are vortex, return air and diffusion areas in the upper step, and the dust concentration in the return air area changes non-monotonically. (2) The particle size of dust produced under different tunnelling conditions is significantly different: the oblique advance is the largest (D50 = 15.59 μm ), the left and right swing milling is the smallest (D50 = 8.52 μm), and the proportion of respirable dust is 22.68 % ~ 41.22 %. (3) The dust particle size gradually decreases with increasing distance from the tunnel face: large dust particles predominantly deposit within 25 m behind the face, while the respirable dust fraction exceeds 80% beyond 100 m. At 300 m behind the excavation face, dust settlement becomes relatively uniform, and the average dust particle size is relatively small, ranging between 6.02 µm and 7.11 µm.

     

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