长江科学院院报

• 岩土工程 • 上一篇    下一篇

桩-软岩复合地基流变机理缩尺模型试验研究

周火明,熊诗湖,黄正加,钟作武   

  1. 长江科学院 水利部岩土力学与工程重点实验室,武汉 430010
  • 收稿日期:2013-10-30 出版日期:2015-02-01 发布日期:2015-02-06
  • 作者简介:周火明(1963-),男,湖北新洲人,教授级高级工程师,硕士,主要从事岩石力学试验研究方面的工作,(电话)027-82820425(电子信箱)1152259016@qq.com。

Scale Model Test on the Rheological Mechanism of Pile-Soft-Rock Composite Foundation

ZHOU Huo-ming,XIONG Shi-hu,HUANG Zheng-jia,ZHONG Zuo-wu   

  1. Key Laboratory of Geotechnical Mechanics and Engineering of Ministry of Water Resources, Yangtze River Scientific Research Institute, Wuhan 430010,China
  • Received:2013-10-30 Online:2015-02-01 Published:2015-02-06

摘要:

桩-软岩复合地基承受上部载荷时,时效变形预测依赖于对其流变机理的认识以及对流变模型的合理描述,为分析其流变机理,通过桩-软岩复合地基缩尺模型载荷试验,研究了桩身应力、桩底压力、承台下软岩压力以及软岩深部变形时效特征,对桩-软岩复合地基流变机理进行了系列试验研究。桩底压力以及桩间软岩变形时效特征明显,桩-软岩复合地基在工程荷载作用下的衰减蠕变可采用5参量广义开尔文模型进行描述,其流变参数为EH=1.1 GPa,E1=7.05 GPa,η1=929 GPa·h,E2=9.03 GPa,η2=28 GPa·h,与软岩地基比较,桩-软岩复合地基流变参数明显提高。

关键词: 桩-软岩复合地基, 缩尺模型, 流变试验, 流变机理, 广义开尔文模型

Abstract:

Prediction of the aging deformation of pile-soft rock composite foundation depends on the understanding of rheological mechanism and the description of the rheological model. The rheological mechanism of pile-soft rock composite foundation was researched by analyzing the aging characteristics of pile stress, tip resistance of piles, pressure in rock surface under pile cap, and deformation in the deep of soft rock through scale model loading creep test. Results indicated that the tip resistance of piles and the deformation of soft rock between piles are both with obvious aging characteristics. The decay creep of the composite foundation under engineering loads can be accurately described by generalized Kelvin model with five parameters. The values of the five model parameters are as follows: EH=1.1 GPa, E1=7.05GPa, η1=929 GPa·h, E2=9.03 GPa, η2=28 GPa·h. The rheological parameters of the composite foundation are significantly higher than those of soft rock foundation.

Key words: pile-soft rock composite foundation, scale model, creep test, rheological mechanism, generalized Kelvin model

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