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基于滤纸法的非饱和渗透性曲线测试 被引量:19
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作者 李华 李同录 +1 位作者 江睿君 范江文 《岩土力学》 EI CAS CSCD 北大核心 2020年第3期895-904,共10页
渗透性曲线是反映非饱和土中水分运移的重要参数,瞬态剖面法是测定渗透性曲线的常用方法。将滤纸法应用于传统的瞬态剖面法,设计了一种土柱装置,用于测定土体的渗透性曲线。该装置包括上部能够持续给水的供水系统及下部由带环刀的土样... 渗透性曲线是反映非饱和土中水分运移的重要参数,瞬态剖面法是测定渗透性曲线的常用方法。将滤纸法应用于传统的瞬态剖面法,设计了一种土柱装置,用于测定土体的渗透性曲线。该装置包括上部能够持续给水的供水系统及下部由带环刀的土样与滤纸叠置而成的土柱。在水分下渗过程中,定期测量土样与滤纸的质量以获得土柱的含水率剖面与水头剖面,根据所测数据计算得到土-水特征曲线和渗透性曲线。用此方法测得甘肃正宁马兰黄土与第1层古土壤的渗透性曲线和土-水特征曲线,该方法测量的吸力范围大,为1~1^05 kPa,渗透系数范围在10^-5~10^-13 m/s。用常见的统计预测模型预测了土体的渗透性曲线,并与实测曲线对比发现小吸力范围预测值与实测值相符,大吸力范围预测值偏差较大。 展开更多
关键词 非饱和土 渗透性曲线 滤纸法 瞬态剖面法 统计模型
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Failure mechanisms and risk mitigation of check dams on the Chinese Loess Plateau: A case study at the Gutun Gully 被引量:1
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作者 jiang rui-jun ZHANG Mao-sheng +1 位作者 FENG Li SUN Ping-ping 《Journal of Mountain Science》 SCIE CSCD 2022年第6期1509-1524,共16页
Loess is long-term aeolian dust deposition, characterized by loose structure, concentrated participle distribution and unstable mineral composition, and thus easy to cause extensive collapsibility and have general wat... Loess is long-term aeolian dust deposition, characterized by loose structure, concentrated participle distribution and unstable mineral composition, and thus easy to cause extensive collapsibility and have general water sensitivity. To reveal the difference in water sensitivity between naturally intact(NI) loess and mechanically compacted(MC) loess used for the check dam, the transient water release and imbibition method(TRIM) was used to acquire the suction stress–expanded hydraulic characteristic curves for the NI and MC loess and explore possible approaches for formulating the potential of loess water sensitivity. Based on the Local Field of Safety(LFS) associated with slope stability, we constructed a finite element model of a check dam to depict its failure processes under different rainfall scenarios. The results revealed the strong water sensitivity in NI loess, while the MC loess retained a certain water-sensitive potential. This capacity depends on the ‘water sensitivity coefficient’ obtained from the suction-stress characteristic curve,which better presented the deformation potential of the two loess samples at different water content levels. In the context of LFS, we identified two failure patterns in the dam body that were involved in loess water sensitivity under hydromechanical conditions: rainfall erosion-induced shallow mudflow failure, and preferential-infiltration progressive failure. These patterns may provide new insights into dam-breakage mechanisms and potential chain effects of check dams on the Chinese Loess Plateau from the perspective of soil–water interactions, which is vital for predicting the position and timing of check dam failure, and mitigating risks. 展开更多
关键词 Chinese loess Water sensitivity Suction stress Failure patterns Slope stability Check dam
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