煤炭工程 ›› 2015, Vol. 47 ›› Issue (2): 126-129.doi: 10.11799/ce201502041

• 研究探讨 • 上一篇    下一篇

人工冻结黏土冻胀特性试验研究

李阳   

  1. 安徽理工大学
  • 收稿日期:2014-01-13 修回日期:2014-03-21 出版日期:2015-02-10 发布日期:2015-02-15
  • 通讯作者: 李阳 E-mail:461298394@qq.com
  • 基金资助:
    国家自然科学基金项目;教育部新世纪人才基金项目

Experimental Research on Frost Heave of Artificial Frozen Clay

  • Received:2014-01-13 Revised:2014-03-21 Online:2015-02-10 Published:2015-02-15

摘要: 为进一步研究人工冻结黏土的冻胀特性,分别在单、双向冻结和顶部预留一定空间量的单向冻结条件下,对重塑黏土进行了冻结试验。结果表明:冷端温度相同时,单、双向冻结试样冻胀力随时间变化规律一致,但双向冻结试样的冻胀开始时间略早于单向冻结,且在冻胀快速增长阶段,冻胀力增长速率明显快于单向冻结;随着冷端温度的降低,单、双向冻结试样冻胀力都呈非线性增大,但在任一温度水平下,两种模式下的差值基本相同;双向冻结模式下,土样测点的温度及冻结锋面的发展随时间变化规律基本都延纵向对称,其中冻结锋面平均发展速度约是单向冻结条件下的3倍;预留一定空间量的单向冻结试验是可行的,能直接得出土样冻胀力与冻胀量之间的关系。研究成果可为多圈管冻结法设计、施工以及进一步研究冻胀模型提供有价值的参考。

关键词: 单、双向冻结, 冻胀量, 冻胀力, 冻结锋面, 预留空间量

Abstract: Freezing experiments of remolded clay are made for further study on frost heave characteristics of artificial frozen clay under unidirectional and bidrectional freezing modes and unidirectional condition with a certain amount of headspace separately. The results show that the variations of frost heave force with time are identical under unidirectional and bidrectional freezing modes, but the start time of frost heave under bidrectional freezing mode is slightly earlier than that under unidrectional freezing mode, and the increment speed of frost heave force of bidrectional freezing mode is faster than that of unidrectional freezing mode during the rapid growth stage of frost heave. The frost heave force of the two modes, whose deviations are basically the same at the same temperature, increases nonlinearly with the decline of temperature. The variations of temperature at measuring points and freezing front with time are both symmertrical along the longitudinal of a soil sample under bidrectional freezing mode, and the development rate of freezing front is three times faster than that under unidirectional mode. It is practical for the freezing test with headspace under unidirectional mode in that the relationship between frost heave force and amount of frost heave could be got directly. These findings are useful for the design and construction of multi-coil piple freezing method and further study of frost heave model.

Key words: unidirectional and bidrectional freezing, amount of frost heave, frost heave force, freezing front, headspace

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