文章摘要
刘 创, 张可能, 刘 源.红黏土地层微型CFG桩复合地基试验研究Journal of Water Resources and Water Engineering[J].,2015,26(1):194-196
红黏土地层微型CFG桩复合地基试验研究
Experiment on composite foundation of miniature CFG pile in red clay layer
  
DOI:10.11705/j.issn.1672-643X.2015.01.038
中文关键词: 微型CFG桩  复合地基  桩间土提高系数  单桩承载力发挥系数  桩土应力比
英文关键词: miniature CFG pile  composite foundation  efficiency factor between piles  increase coefficient of bearing capacity of single pile  stress ratio of pile to soil
基金项目:国家自然科学基金项目(51108176)
Author NameAffiliation
LIU Chuang1, ZHANG Keneng1, LIU Yuan1,2 (1.中南大学 地球科学与信息物理学院 湖南长沙 410083 2.中国有色桂林矿产地质研究院 广西桂林 541004) 
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中文摘要:
      微型CFG桩在广西桂林地区得到了广泛运用,为拓展研究CFG桩在红黏土土层中的运用,通过室外足尺微型CFG桩复合地基现场试验,对复合地基承载力经验公式中桩间土承载力强度提高系数、单桩承载力发挥系数以及桩-土应力比进行试验研究。试验结果表明:微型CFG桩桩长在1~4 m范围内,桩间土提高系数随桩长的增加而增加,但增加趋势逐渐减小;单桩承载力发挥系数随桩长增加而减小,桩长1~3 m时,单桩承载力发挥系数大于1,桩长大于等于3 m时,单桩承载力发挥系数小于1;桩土应力比在1~8之间,随着桩长增加而增加。
英文摘要:
      The miniature CFG pile has been widely used in guilin area of Guangxi.In order to provide theoretical basis for the development and study of CFG pile used in red clay layer,through in-situ test study on outdoor full scale miniature CFG pile,the article studied the increase coefficient of bearing capacity,exertion coefficient of bearing capacity of single pile ,and stress ratio of pile to soil in empirical formula of bearing capacity of composite foundation among piles.The experimental results demonstrate that when the length of miniature CFG pile is in the range of one to four meters, the coefficient of bearing capacity between piles increases with the increase of pile's length,but the trend of increase gradually decreases. The coefficient of bearing capacity of single pile decreases with the increase of pile's length.when pile length is one to three meters, the exertion coefficient of bearing capacity of single pile is greater than one.When the pile length is greater than or equal to three meter,the coefficient of bearing capacity of single pile is less than one.When the stress ratio of pile to soil is between one and eight,The coefficient increases with the increase of pile length.
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