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Research on the Prediction Model of Shield Advancement Rate in Sandy Cobble Ground of Beijing

机译:北京沙滩地基盾构推进率预测模型研究

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The long distance and tight construction period of the earth pressure balance shield tunneling in Beijing sandy cobble ground have a very positive impact on grasping the construction progress and improving the organization efficiency. Based on the real-time monitoring data of on-site earth pressure, cutter head speed, total thrust, screw conveyor speed, and cutter head torque, this study investigated the correlation between the shield advancement rate and the above parameters based on multiple nonlinear regression analysis method, which lay down the foundation of shield advancement rate prediction. The prediction model achieved satisfactory results and was further applied to an airport project. The results show that it is of guiding significance to use multiple regression method to establish shield prediction model and put forward the best advancement parameters to ensure the construction progress. The order in which the four operational parameters affect the advancement rate is total thrust, cutter head torque, screw conveyor speed, and cutter head speed. When the advancement time is greater than 57?min, the average advancement rate and daily progress are highly positively correlated. The research provides a reliable basis for the advancement rate prediction, safety control, and parameter optimization of shield advancement in similar ground.
机译:北京砂岩地面的大远距离平衡盾构隧道隧道隧道对抓住施工进展并提高组织效率具有非常积极的影响。基于现场地球压力的实时监测数据,刀头速度,总推力,螺旋输动速度和刀具头扭矩,研究了屏蔽推进率与基于多元非线性回归的上述参数之间的相关性分析方法,施加盾构提升率预测基础。预测模型取得了令人满意的结果,进一步应用于机场项目。结果表明,使用多元回归方法建立屏蔽预测模型的指导意义并提出了最佳进步参数,以确保施工进度。四个操作参数影响提升速率的顺序是总推力,刀具头扭矩,螺旋输送机速度和刀头速度。当进步时间大于57?min时,平均进步率和日常进度是高度肯定的相关性。该研究为类似地面中的盾构进步提供了可靠的基础。

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