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Control of Water and Sand Gush in Tunnelling with Earth Pressure Balanced Compound Type Shield

机译:用地球压力平衡化合物型屏蔽控制水和砂涌出

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The sixth line of Guangzhou Metro Subway is partially located in silty fine sand layer, which is incompact, rich in water, and has high permeability and low bearing capability. When tunnelling in this section, it is easy to bring about gush of water and sand, which will cause the ground surface to settle. Therefore, a two-staged helical conveyer was used to control this phenomenon during tunnelling. First, both the dregs outlets of helical conveyer are turned off to prevent water and sand from rushing forth, then foam material is injected into the earth cabin and the front-end of helical conveyer to keep the cabin pressure from decreasing. Secondly, drain outlet of the second helical conveyer is turned on and the water is drained, then dregs outlet of the second helical conveyer is turned on to discharge the dregs. Finally, dregs outlet of the first helical conveyer is turned on to discharge the dregs in the earth cabin. Such technique was used successfully in tunnelling the section from Datansha to Ruyifang of the sixth line of Guangzhou Metro Subway. It ensured that sinking of the ground surface was avoided while the tunnel shield went through the silty fine sand layer that is rich in water.
机译:广州地铁地铁的第六行部分地位于粉细砂层,这是松散,富含水,且具有高磁导率和低的承受能力。当隧道在本节中,很容易带来的水和沙子涌出,这将导致地面沉降。因此,两级螺旋输送器被用来掘进期间控制此现象。首先,这两个螺旋输送器的渣滓出口被关闭,以防止水和砂从所述冲,然后泡沫材料注入地球机舱和螺旋输送器的前端,以保持机舱压力的降低。其次,第二螺旋输送器的排出口导通,并且将水排出,则渣第二螺旋输送器的出口被打开以排出渣。最后,药渣第一螺旋输送器的出口导通在地球舱排出渣。在隧道从大坦沙部分到Ruyifang广州地铁地铁的第六行的成功使用这样的技术。它确保了地面下沉被避免,而隧道盾构通过粉细砂层富含水去了。

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