ISSN 2096-4498

   CN 44-1745/U

二维码

Tunnel Construction ›› 2019, Vol. 39 ›› Issue (11): 1797-.DOI: 10.3973/j.issn.2096-4498.2019.11.007

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Support Wall Lateral Deflection Rule and Prediction of Deep Narrow Foundation in Hangzhou Soft Clay

MA Yuan 1, LIU Yajing2, 3, HOU Yongmao1, WANG Lizhong2, 3, HONG Yi2, 3, *   

  1. (1. Shanghai Tunnel Engineering Co., Ltd., Shanghai 200082, China; 2. College of Civil Engineering and Architecture, Zhejiang University, Hangzhou 310058, Zhejiang, China; 3. Key Laboratory of Offshore Geotechnics and Material of Zhejiang Province, Zhejiang University, Hangzhou 310058, Zhejiang, China)
  • Received:2019-06-24 Online:2019-11-20 Published:2020-04-04

Abstract:

In order to reduce the influence of deep narrow foundation pit construction on adjacent properties in urban area in Hangzhou, the characteristics of the support wall lateral deflection are analyzed and the corresponding analytical prediction method is proposed. The support wall lateral deflections of the deep narrow foundation pits at Wenyi West Road, Qingchun Station, Qiutao Station, Xingtang Station and Qingnian Station in Hangzhou soft clay are monitored and compared with those of deep foundation pits in Zhejiang and deep narrow foundation pits in Shanghai, Taipei and Singapore. The results show that the maximum support wall lateral deflection of the foundation pit on Wenyi West Road, 0.20%He ~0.25%He, where He is the maximum excavation depth, is close to that in Shanghai(0.15%He~0.41% He), but is smaller than those in Zhejiang, Taipei and Singapore(0.27% He~0.62% He); which is related to the high tangential modulus of Hangzhou soil and small width of the foundation pit. The support wall lateral deflection of the narrow deep foundation pits in Hangzhou can be precisely predicted based on the representative stressstrain relationship at site and the modified mobilisable strength design (MMSD) method.

Key words: Hangzhou soft clay area, deep narrow foundation pit, support wall lateral deflection, modified mobilisable strength design (MMSD) method

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