首页 / 资料库 / 文献详情

Whole range monitoring for temperature and displacement fields of cross passage in soft soils by AGF

YANG Ping 1, CHEN Jin 1, ZHANG Shang-gui 2, WAN Chao-dong 2

2017DOAJ (DOAJ: Directory of Open Access Journals)Earth and Planetary Sciences被引 1开放获取

出版方页面 →

摘要

Studying the temperature fields of freeze-thaw and development laws of frost heave and thaw settlement in the construction of cross passage in soft soils by artificial ground freezing method (AGF) is the premise to solve the problem of frost heave and thaw settlement. Taking the construction of cross passage in soft soils by AFG as the engineering background, the variation rules of freeze-thaw temperature, ground surface deformation, frost heave and thaw settlement of the deep soils are monitored during the whole range, then the variations of temperature and deformation of the frozen wall are analyzed. The results show that the process of freezing can be divided into five stages by temperature: rapid drop of temperature, slow drop of temperature, accelerated drop of temperature, temperature stability and freezing maintenance. But during the thawing period, the variation of soil temperature can be divided into three stages: rapid rise of temperature, temperature stability around 0℃ and sustainable rising. The frozen cylinder closed is the critical time to produce rapid frost heave, and frost heave mainly occurrs during 18 to 45 days after the start of freezing. After thawing for 15 days, the temperature of soils partly reaches that close to 0℃, then comes into the phase transformation stage. Therefore, in order to control the thaw settlement, tracing compensation grouting should be taken after 15 days from the starting of thawing. The soil phase transition process lasts longer as the soil is deeper. The thawing settlement of silt mainly occurs in the first two months since thawing, and it completely thaws for about 100 days. This is also the minimum time that should be continued for tracking compensation grouting. The temperature and displacement of frost heave and thaw settlement in deep soils increase linearly with the increasing depth. The maximum displacement of frost heave and thaw settlement at the dome of frozen wall are respectively 3.6 times and 4.9 times th

引用本文(GB/T 7714)

YANG Ping 1, CHEN Jin 1, ZHANG Shang-gui 2, WAN Chao-dong 2. Whole range monitoring for temperature and displacement fields of cross passage in soft soils by AGF[J]. DOAJ (DOAJ: Directory of Open Access Journals), 2017.

引文网络

参考文献与被引分析加载中…

DOI:https://doi.org/10.11779/cjge201712011

本站仅收录题录与摘要供学习参考,全文版权归属出版方;如有侵权请联系我们删除。