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Parameter analysis of water flow during EPBS tunnelling and an evaluation method of spewing failure based on a simplified model

机译:EPBS隧道水流参数分析及基于简化模型的喷射失败评价方法

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Spewing failure always occurs when a tunnel is constructed in water-rich sand stratum using an earth pressure balance shield, which could lead to considerable disturbance of the environment. However, few studies have investigated the mechanism of spewing. To understand the mechanism of screw conveyor spewing, a new simplified model was proposed to calculate the ground-water flow rate and water pressure gradient in the earth pressure balance shield. Ergun's equation was used to consider the influence of turbulent flow, which is inevitable during spewing. The model was verified by tests, and a parameter analysis was conducted to investigate the effects of soil behaviour, fluid kinematic viscosity and shield geometry. Additionally, an evaluation method to predict spewing was proposed based on the simplified model, and the method was verified by investigating real-world engineering problems. The results indicate that the groundwater flow rate and velocity in the screw conveyor increase significantly with increasing soil hydraulic conductivity in the turbulent flow range. The influence of soil porosity on the groundwater flow rate and velocity is greater than that of the soil's average particle diameter. In addition, increasing the screw conveyor length can be used to control spewing. Comparisons with practical engineering examples show that the proposed method is effective. The proposed method can be used to predict the risk of spewing such that appropriate measures can be taken. (C) 2015 Elsevier Ltd. All rights reserved.
机译:当隧道在使用土压力平衡屏蔽的水中构建时,隧道始终出现浇灌失败,这可能导致对环境的相当大的干扰。然而,很少有研究已经调查了喷射的机制。为了了解螺旋输送机喷射的机理,提出了一种新的简化模型来计算地球压力平衡屏蔽中的地水流速和水压梯度。 Ergun的等式用于考虑湍流流动的影响,这在喷射过程中是不可避免的。通过测试验证该模型,并进行了参数分析以研究土壤行为,流体运动粘度和屏蔽几何形状的影响。另外,基于简化模型提出了一种预测喷射的评估方法,通过调查真实世界的工程问题来验证该方法。结果表明,螺杆输送机中的地下水流量和速度随着湍流流量范围内的土壤液压传导性而显着增加。土壤孔隙率对地下水流速和速度的影响大于土的平均粒径。另外,增加螺旋输送机长度可用于控制喷射。实际工程实施例的比较表明,该方法是有效的。所提出的方法可用于预测喷射的风险,从而可以采取适当措施。 (c)2015 Elsevier Ltd.保留所有权利。

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