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灌溉诱发黄土滑坡的发育机制研究

朱立峰 谷天峰 胡炜 刘亚明 冯立 毕银强

工程地质学报2016,Vol.24Issue(4):485-491,7.
工程地质学报2016,Vol.24Issue(4):485-491,7.DOI:10.13544/j.cnki.jeg.2016.04.001

灌溉诱发黄土滑坡的发育机制研究

DEVELOPMENTAL MECHANISM OF IRRIGATION-INDUCED LOESS LANDSLIDES

朱立峰 1谷天峰 2胡炜 1刘亚明 2冯立 2毕银强2

作者信息

  • 1. 中国地质调查局西安地质调查中心 西安 710054
  • 2. 西北大学地质学系/大陆动力学国家重点实验室 西安 710069
  • 折叠

摘要

Abstract

The mechanism of irrigation-induced loess landslide is one of the top topics of loess geo-hazard researches.Furthermore,the key areas are the hydraulic and mechanical property changes of loess after drying and watering alternation medium under irrigation condition,as well as the slope stability changes due to groundwater flow field response.This paper discusses the developing mechanism of irrigation-induced loess landslide in Heifangtai,which is on the basis of the hydraulic and mechanical property tests of unsaturated loess in Heifangtai, the unsaturated seepage evolving process and developing trend of the slope area due to irrigation.The results demonstrate the following.With the lasting of irrigation,long-term positive water equilibrium field can trigger the rising of the groundwater table.Moistening of the unsaturated zone leads the matric suction to decline and the strength to reduce drastically.Meanwhile,the thickness of the saturated zone increases.This causes build-up of porewater pressure as well as augmentation of the hydraulic gradient in the slope.The seepage velocity fastens. Hence the seepage force on the slope escalates too.Then the slope stability drops.The factor of slope stability declines linearly with the rising of groundwater table.The slope reaches limit equilibrium state when the groundwater table is close to 55m,under which condition it may slide under certain negative triggering factors.The groundwater table change,however,has limited impact on the critical sliding surface.

关键词

灌溉/基质吸力/渗流场/黄土滑坡/稳定性

Key words

Irrigation/Matric suction/Seepage field/Loess landslides/Stability

分类

天文与地球科学

引用本文复制引用

朱立峰,谷天峰,胡炜,刘亚明,冯立,毕银强..灌溉诱发黄土滑坡的发育机制研究[J].工程地质学报,2016,24(4):485-491,7.

基金项目

国家科技支撑课题(2012BAK10B02),国家自然科学青年基金(41202187),国土资源地质矿产调查评价项目(12120114025701)资助. (2012BAK10B02)

工程地质学报

OA北大核心CSCDCSTPCD

1004-9665

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