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考虑渗流的泥水平衡盾构隧道稳定性数值模拟 被引量:7
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作者 黄昕 谷冠思 +1 位作者 张子新 李昀 《隧道与地下工程灾害防治》 2022年第2期28-38,共11页
为探究高水压环境下泥水平衡盾构隧道施工对地层响应的影响,通过建立三维流固耦合精细化有限元模型,系统分析不同上覆水深度和渗透系数下泥水盾构隧道连续开挖地层的稳定性,获得盾体就位、连续开挖、停机稳定等不同施工阶段水下盾构隧... 为探究高水压环境下泥水平衡盾构隧道施工对地层响应的影响,通过建立三维流固耦合精细化有限元模型,系统分析不同上覆水深度和渗透系数下泥水盾构隧道连续开挖地层的稳定性,获得盾体就位、连续开挖、停机稳定等不同施工阶段水下盾构隧道开挖引起的渗流场和位移场的演化模式。研究结果表明:在上海等软土地区进行水下隧道施工时,可将40 m水头视作高低水压的分界阈值,水头低于和高于该阈值时渗流场及变形场呈现不同的演化特征,且在低渗透地层差异更加明显;渗流导致地层超孔隙水压力的变化,进而对地层变形产生较大影响,考虑渗流条件的开挖面最大变形约为不考虑渗流条件的1.4倍;高水压作用下地层的变形受渗流效应的影响,低水压条件下地层的变形受盾构掘进参数如注浆压力的控制。本研究可为水下盾构隧道工程的施工安全控制提供一定的参考依据。 展开更多
关键词 泥水平衡盾构隧道 数值模拟 高水压 渗流场 沉降槽
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Mechanized Tunneling in Soft Soils: Choice of Excavation Mode and Application of Soil-Conditioning Additives in Glacial Deposits 被引量:5
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作者 Roll Zumsteg Lars Langmaack 《Engineering》 SCIE EI 2017年第6期863-870,共8页
The history of the formation of the alpine region is affected by the activities of the glaciers, which have a strong influence on underground works in this area. Mechanized tunneling must adapt to the presence of soun... The history of the formation of the alpine region is affected by the activities of the glaciers, which have a strong influence on underground works in this area. Mechanized tunneling must adapt to the presence of sound and altered rock, as well as to inhomogeneous soil layers that range from permeable gravel to soft clay sediments along the same tunnel. This article focuses on past experiences with tunnel-boring machines (TBMs) in Switzerland, and specifically on the aspects of soil conditioning during a passage through inhomogeneous soft soils. Most tunnels in the past were drilled using the slurry mode (SM), in which the application of different additives was mainly limited to difficult zones of high permeability and stoppages for tool change and modification. For drillings with the less common earth pressure balanced mode (EPBM), continuous foam conditioning and the additional use of polymer and bentonite have proven to be successful. The use of conditioning additives led to new challenges during separation of the slurries (for SM) and disposal of the excavated soil (for EPBM). If the disposal of chemically treated soft soil mate- rial from the earth pressure balanced (EPB) drive in a manner that is compliant with environmental legislation is considered early on in the design and evaluation of the excavation mode, the EPBM can be beneficial for tunnels bored in glacial deposits. 展开更多
关键词 Soil conditioning Earth pressure balanced shield Slurry shield Mechanized tunneling
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