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盾构隧道施工对西安钟楼影响的数值模拟预测 被引量:15

Discussion on risk management in urban subway projects
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摘要 隧道施工导致古建筑及周围地表沉降的预测和控制是国内隧道工程领域遇到的研究课题之一.建立的三维有限元模型模拟了西安地铁2号线钟楼段的盾构施工过程,模拟了无隔离桩、无接触隔离桩及有接触隔离桩3种情况下盾构掘进过程中地面点沉降、钟楼周围地表和钟楼台四角点沉降的动态变化规律.结果表明,盾构施工有限元模型可以很好的模拟盾构通过的各个阶段,计算结果与盾构掘进规律一致;有接触隔离桩模型较好地反映了隔离桩的实际工程作用,有效的隔断了桩内外的地表沉降,隔离桩内外地表沉降差达到14.1 mm;接触隔离桩减小了盾构施工引起的钟楼四角点的沉降及差异沉降,对钟楼起到了很好的保护作用. Forecasting and controlling of the surface settlement close to the ancient buildings in the tunneling construction is one of the important research issues in the tunnel engineering in China. 3D finite element models are established to stimulate the process of shield tunneling of Xi'an bell tower. Under three conditions of (1) without isolating piles, (2) isolating piles without contact, and (3) isolating piles with contact, this paper studied the dynamic discipline of ground settlement, settlement and dif- ference settlement of Xi'an bell tower and the bell tower foursquare points, The results indicate that the finite element model could simulate each stages of shield tunneling, and the result is consistent with the discipline of measure data. The isolating piles model with contact reflects the practical function of project better, which can prevent the surface settlement effectively. The settlement difference between the interior and exterior part of the pile is 14.1 rnm. The isolating piles can reduce the foursquare point's settlement (caused by construction) of the bell tower and the bell tower can be well protected.
出处 《北京交通大学学报》 CAS CSCD 北大核心 2011年第4期33-37,共5页 JOURNAL OF BEIJING JIAOTONG UNIVERSITY
基金 西安地铁二号线施工与运营对钟楼影响分析项目资助(KCL08010530)
关键词 盾构施工 隧道施工 古建筑 地表沉降 有限元 shield construction tunnel construction ancient building surface settlement finite ele-ment
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  • 1徐中华,王卫东,王建华.上海软土地区上海银行大厦深基坑工程的实测与分析[J].岩石力学与工程学报,2004,23(z1):4639-4644. 被引量:37
  • 2姚燕明,曹伟飚,沈张勇.盾构穿越高架对其桩基变形和内力影响分析[J].地下空间与工程学报,2005,1(6):972-975. 被引量:16
  • 3THOMAS K,GUNTHER M.On the influence of face pressure,grouting pressure and TBM design in soft ground tunneling[J].Tunnelling and Under-ground Space Technology,2006,21(2):160-171.
  • 4THOMAS K,GUNTHER M.A numerical study of the effect of soil and grout material properties and cover depth in shield tunneling[J].Computers and Geotechnics,2006,33(4/5):234-247.
  • 5KOMIYA K,SOGA K,AKAGI H,et al.Soil consolidation associated with grouting during shield tunnelling in soft clayey ground[J].Geotechnique,2001,51(10):835-846.
  • 6CHEN L T,POULOS H G.Pile responses caused by tunneling[J].Journal of Geotechnical and Geoenvironmental Engineering,1999,125(3):207-215.
  • 7刘昌用 蒋中庸 王梦恕.试论城市地下工程浅埋暗挖技术.现代隧道技术,2002,:10-26.
  • 8Forbes J, Finch A R Application of compensation grouting to the St.Clair River Tunnel Project [A]. In: Mair R J, Taylor R N ed.Geotechnical Aspects of Underground Construction in Soft Ground[C].Rotterdam: A.A. Balkema, 1996, 343~348
  • 9Lunardi P, Cassani G. Construction: of an underpass at the Ravone railway yard in the city of Bologna: aspects of the design and construction[A]. In: Teuscher P, Colombo A ed. Progress in Tunneling after 2000(Ⅲ)[C]. Bologna: Patron Editore, 2001, 319 ~
  • 10Melis M, Trabada J, Ortiz J. Construction of a large cavern beneath existing buildings for the Madrid Subway [A]. In: Alten T ed.Challenges for the 21st Century(1)[C]. Rotterdam: A. A. Balkema,1999, 267-272

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