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不同水位条件下的边坡稳定性三维效应与敏感性研究
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作者 李展鹏 王宪杰 +3 位作者 高雪莲 雷春雨 袁宗林 王鑫 《建筑结构》 北大核心 2023年第S02期2647-2652,共6页
三维边坡稳定性分析得到的安全系数往往与二维分析存在差异,在以往的研究中,讨论此种差异时很少考虑不同水位的影响,但现实边坡中的失稳几乎都与水相关联,因此本文采用有限元强度折减法,通过改变坡体外水位、边坡宽高比和边坡角等,计算... 三维边坡稳定性分析得到的安全系数往往与二维分析存在差异,在以往的研究中,讨论此种差异时很少考虑不同水位的影响,但现实边坡中的失稳几乎都与水相关联,因此本文采用有限元强度折减法,通过改变坡体外水位、边坡宽高比和边坡角等,计算不同参数下边坡的安全系数,探究考虑水位后的三维效应;此外,因影响边坡的因素众多,本文还采用正交设计与灰色关联法对包含水位在内的影响边坡的5个主要因素进行敏感性研究。研究结果表明:安全系数随宽高比W/H增大而减小,在W/H<5时,三维效应不容忽略;随着水位抬升,边坡安全系数减小,但因宽高比增大导致的安全系数变幅也会减小,三维效应有一定的削弱;高坡角的含水边坡稳定性会严重下降,高坡角与高水位对边坡安全系数的削弱效应会相互叠加;同坡角下,水位抬升会使安全系数显著降低;而坡角越小,三维效应越明显;各因素对安全系数的敏感性排序为:内摩擦角>坡角>黏聚力>水位条件>宽高比,但坡角、黏聚力、水位条件的关联度都在0.7左右,极为接近,不可忽视。 展开更多
关键词 稳定性 三维效应 含水边坡 灰色关联法 正交设计
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Analytical solution for slope instability assessment considering impact of confined aquifer 被引量:3
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作者 冉启华 钱群 +2 位作者 王光谦 傅旭东 苏丹阳 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第4期1502-1509,共8页
An analytical approach was presented for estimating the factor of safety(FS) for slope failure, with consideration of the impact of a confined aquifer. An upward-moving wetting front from the confined water was assume... An analytical approach was presented for estimating the factor of safety(FS) for slope failure, with consideration of the impact of a confined aquifer. An upward-moving wetting front from the confined water was assumed and the pore water pressure distribution was then estimated and used to obtain the analytical expression of FS. Then, the validation of the theoretical analysis was applied based on an actual case in Hong Kong. It is shown that the presence of a confined aquifer leads to a lower FS value, and the impact rate of hydrostatic pressure on FS increases as the confined water pressure increases, approaching to a maximum value determined by the ratio of water density to saturated soil density. It is also presented that the contribution of hydrostatic pressure and hydrodynamic pressure to the slope stability vary with the confined aquifer pressure. 展开更多
关键词 confined/artesian groundwater slope stability factor of safety analytical approach
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Infiltration regulation and stability analysis of soil slope under sustained and small intensity rainfall 被引量:16
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作者 刘子振 言志信 +1 位作者 段建 邱战洪 《Journal of Central South University》 SCIE EI CAS 2013年第9期2519-2527,共9页
Rainfall infiltration depth and mode can severely influence slope stability.With the sustained rainfall,the influenced region of slope gradually expands.By using the Green-Ampt model to the soil slope,infiltration reg... Rainfall infiltration depth and mode can severely influence slope stability.With the sustained rainfall,the influenced region of slope gradually expands.By using the Green-Ampt model to the soil slope,infiltration regulation was discussed under sustained and small intensity rainfall.And the infiltration rate of unsaturated soil was proposed according to the saturated infiltration theory.Because of the changing of initial moisture content in depth of slope,the saturated or unsaturated infiltration rate and depth could also be changeable with the sustained rainfall infiltration.Based on the principle of strength reduction,the calculation model of slope safety factor was established under different initial moisture contents and infiltration modes.Then,the slope stability was quantitatively analyzed through software FLAC3D.The calculation results of soil slope engineering show that there is a shorter period for slope stability under different initial moisture contents and unsaturated infiltration ways at the slope wetting front.The stability period of slope is 33.3%according to different initial moisture contents of wetting front less than that of the same initial moisture content of wetting front.And the slope is easier to fail under the unsaturated infiltration.The results agree well with the actual situation under sustained and small intensity rainfall. 展开更多
关键词 small intensity rainfall soil slope infiltration depth safety factor
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Performance of ground penetrating radar in root detection and its application in root diameter estimation under controlled conditions 被引量:1
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作者 YEUNG Shan Wing YAN Wai Man HAU Chi Hang Billy 《Science China Earth Sciences》 SCIE EI CAS CSCD 2016年第1期145-155,共11页
A plant is stabilized by its root system. In congested urban cities such as Hong Kong, ground trenching is frequently seen due to the installation of utility lines along the roadside. Soil nailing, which involves soil... A plant is stabilized by its root system. In congested urban cities such as Hong Kong, ground trenching is frequently seen due to the installation of utility lines along the roadside. Soil nailing, which involves soil coring in slopes, is a common solution to improve the slope stability. However, both activities inevitably pose a risk to the integrity of any root sys- tems present, and thus reduce the root anchorage. To prevent or minimize such damage, a careful design of the excava- tion/drilling location is of prime importance. Ground penetrating radar (GPR) provides a non-destructive method for locating roots by examining the contrast between the dielectric properties of the roots and the surrounding soil. To examine the perfor- mance of GPR and promote its use in Hong Kong, a test bed was prepared using local materials to create a controlled envi- ronment in which to conduct a series of systematic tests evaluating the performance of a 900 MHz GPR. The reflected radar- grams were subject to the influence of the following factors: size and depth of roots, horizontal distance between roots, and contrast between the root and soil water content. Correlations between root size and a number of waveform parameters were also explored. Limiting values for root size, root embedded depth, horizontal separation distance between roots, and water content contrast between root and soil were obtained. A significant correlation was found between the root diameter and time travel parameter T2 (p〈0.001, t=0.795). Because GPR root detection is highly site-specific, this study provides a local refer- ence for GPR performance in the Hong Kong environment. The findings demonstrate that the 900 MHz GPR is applicable in Hong Kong for the detection of main roots. 展开更多
关键词 GPR Radar profile Root detection Root water content Root size
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