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不同干湿循环路径下盐渍化黄土侧限变形特性研究
引用本文:朱振,甄钧,杨秀娟,党进谦,孟敏强.不同干湿循环路径下盐渍化黄土侧限变形特性研究[J].科学技术与工程,2023,23(16):7002-7015.
作者姓名:朱振  甄钧  杨秀娟  党进谦  孟敏强
作者单位:西北农林科技大学水利与建筑工程学院
基金项目:陕西省博士后科研资助项目(2018BSHEDZZ23);陕西省自然科学基础研究计划项目(2020JQ-278);中央高校基本科研业务费专项项目(2452019062)
摘    要:针对干湿循环作用下盐渍化黄土侧限变形问题,系统开展了侧限压缩试验及溶陷试验,研究了氯盐盐渍化黄土在不同干湿循环路径、不同干湿循环次数及不同初始干密度下的一维固结压缩特性和溶陷变形特性。结果表明:压实盐渍化黄土的压缩变形随初始干密度的降低而增大,随干湿循环次数和增湿饱和度的增加而增大;土样e-lgp(e为孔隙比,p垂直压力)曲线变化幅度及压缩系数随初始干密度的减小和干湿循环次数的增多而增大;不同干湿循环路径下土样的e-lgp曲线在干湿循环次数低于5次时差异较大,在干湿循环次数达到10次时趋于一致;盐渍化黄土溶陷特性对各类条件的敏感程度依次为增湿饱和度、干湿循环次数、初始干密度。针对不同条件下盐渍化黄土溶陷系数曲线的不同表现形式,建立简易3参数模型,并与试验数据对比,表明该模型能够表征初始干密度及干湿循环次数对溶陷系数的影响规律。研究成果可为盐渍化黄土的干湿循环效应认知提供参考。

关 键 词:干湿循环  盐渍化黄土  增湿饱和度  割线模量  溶陷系数  溶陷模型
收稿时间:2022/7/25 0:00:00
修稿时间:2023/3/14 0:00:00

Study on Confined Compression Characteristics of Saline Loess under Different Drying-wetting Cycle Paths
Zhu Zhen,Zhen Jun,Yang Xiujuan,Dang Jinqian,Meng Minqiang.Study on Confined Compression Characteristics of Saline Loess under Different Drying-wetting Cycle Paths[J].Science Technology and Engineering,2023,23(16):7002-7015.
Authors:Zhu Zhen  Zhen Jun  Yang Xiujuan  Dang Jinqian  Meng Minqiang
Institution:Northwest A&F University
Abstract:Aiming at the problem of confined deformation of salinized loess under the action of drying-wetting cycles, consolidation compression tests and melt-sinking tests were carried out systematically. Results indicate that: the compressive deformation of compacted saline loess increases with the decrease of the initial dry density, and increases significantly with the increase of the number of drying-wetting cycles and the increase of humidification saturation. The compression deformation of the compacted saline loess increases with the decrease of the initial dry density, and increases with the increase of the number of drying-wetting cycles and humidification saturation. The e-lgp curves under different drying-wetting cycle paths are quite different when the number of drying-wetting cycles is less than 5, and tend to be consistent when the number of drying-wetting cycles is 10. The sensitivity of salinized loess subsidence characteristics to various conditions is humidification saturation, number of drying and wetting cycles, and initial dry density. A simple 3-parameter model is proposed for the different manifestations of the melt-sinking coefficient curves of salinized loess under different conditions, which can better characterize the change of the melt-sinking coefficient with different initial dry densities and different drying-wetting cycles. The research results can provide a useful reference for the cognition of the dry-wet cycle effect of salinized loess.
Keywords:drying-wetting cycle  salinized loess  humidification saturation  secant modulus  melt-sinking coefficient  melt-sinking model
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