三峡库区紫色土渗流—应力的耦合关系
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TU41

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山西省自然科学基金面上项目“干旱区平原水库渗流控制与坝后土壤盐渍化动态响应关系研究”(202103021224151);重庆市万州科学技术项目(cqwz2019005);21世纪初高等教育教学改革基金(2021XG009);重庆三峡学院研究生科研创新项目资助(YJSKY22064)。


Coupling Relationship Between Seepage and Stress of Purple Soil in Three Gorges Reservoir Area
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    摘要:

    [目的] 研究三峡库区紫色土在渗流与应力耦合作用下的渗透特性和抗剪强度特性,深入探究紫色土应力—渗流的耦合关系,为农业工程、边坡工程、水土保持等实际工程应用提供理论参考。[方法] 以三峡库区紫色土为研究对象,借助SLB-1A型应力应变控制式三轴剪切渗透试验仪,分析多因素耦合对紫色土抗剪强度特性和渗透性的变化。[结果] 含水率对三峡库区紫色土的黏聚力c与内摩擦角φ的影响程度不同,并在含水率为11%处取得峰值,内摩擦角随含水率增大而减小,二者变化趋势符合线性变化的特征;紫色土渗透性的变化在不同含水率梯度间存在较大的差异性,且含水率在11%~13%之间时差异性相对显著;以渗透压等于40 kPa为临界值,紫色土的渗透性降低形式不同;主应力差控制值越大,不同含水率紫色土的渗透性降低越显著。[结论] 渗透—剪切作用下,含水率和围压极大影响了紫色土的抗剪强度,其黏聚力在含水率11%处取得峰值,黏聚力和内摩擦角的变化符合线性变化;相同条件下,主应力差控制值越大,不同含水率紫色土的渗透性降低越显著,主应力差的贡献率高于含水率。各因素对影响紫色土渗透性的贡献率由高到低依次为:渗透压>主应力差>围压>含水率。

    Abstract:

    [Objective] The permeability and shear strength characteristics of purple soil in the Three Gorges reservoir area under the coupling effect of seepage and stress were studied, and the coupling relationship between stress and seepage of purple soil was deeply explored, in order to provide theoretical reference for practical engineering applications such as agricultural engineering, slope engineering and soil and water conservation. [Methods] Changes in shear strength and permeability of purple soil under multi-factor coupling were analyzed using an SLB-1A stress-strain controlled triaxial shear permeability tester. [Results] The influence of water content on cohesion (c) and internal friction angle (φ) of purple soil in the Three Gorges reservoir area was different, and the peak value was obtained at the water content of 11%. The internal friction angle decreased linearly with increasing water content. The permeability of purple soil varied greatly among different water content gradients, and the differences were relatively obvious when the water contents were between 11% and 13%. With the permeability pressure equal to the critical value of 40 kPa, the permeability reduction forms of purple soil were different. The greater the control value of the principal stress difference, the lower the permeability of purple soil with different moisture contents. [Conclusion] Water content and confining pressure greatly affected the shear strength of purple soil under the action of seepage-shear. Cohesion reached a peak value at 11% water content, and the changes of cohesion and internal friction angle were linear. Under the same conditions, the influence of water content and principal stress difference on the permeability coefficient of purple soil with axial stress followed a cubic relationship. The contribution rates of various factors to the permeability of purple soil from high to low followed the order of permeability pressure > principal stress difference > confining pressure > water content.

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谷易,毛海涛,何涛,张超.三峡库区紫色土渗流—应力的耦合关系[J].水土保持通报,2023,43(1):44-51,60

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  • 收稿日期:2022-05-23
  • 最后修改日期:2022-07-18
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  • 在线发布日期: 2023-04-08
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