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不同應力狀態下孔隙結構特征對土-水特征曲線的影響

Influence of pore structure characteristics on soil-water characteristic curves under different stress states

  • 摘要: 針對傳統土-水特征曲線測試儀無法實現荷載作用的不足,研制吸力控制式三軸試驗裝置,開展不同應力狀態作用下土-水特征曲線試驗,討論應力狀態對孔隙特征的作用.結果表明,固結壓力和基質吸力均能使土體產生不可逆的收縮變形.固結壓力越大,土顆粒就越緊密,孔隙比越小,孔隙尺寸和數量越小,滲透性越差,表現出較好的持水能力,空氣難以進入土體,土體排水困難,導致進氣值增大和減濕率減小.土-水特征曲線與孔隙結構特征的關系緊密,與應力狀態無直接關系.固結壓力對土-水特征曲線的影響是通過改變孔隙結構特征來體現的.孔隙結構特征相近時,應力狀態對其土-水特征曲線不會產生影響.

     

    Abstract: Since traditional instruments cannot apply stress in soil-water characteristic curve tests, we develop a suction controlled triaxial apparatus, by which soil-water characteristic curve tests are performed under different stress states. Further, the influence of stress state on the pore characteristics is discussed. The results show that both consolidation pressure and matrix suction can lead to the irreversible contraction deformation of soil. The soil under a larger consolidation pressure has a denser structure and a less void, leading to a smaller pore size and quantity. So it results in a worse permeability. Accordingly, it shows a better water retentivity. Air can hardly enter and water can hardly drain out, which give rise to a larger air entry value and a smaller slope of the soil-water characteristic curve. The soil-water characteristic curve of a compacted soil mainly depends upon current void ratio, not directly upon stress state. The influence of consolidation pressure on the soil-water characteristic curve is embodied in pore distribution properties. For similar pore distribution properties, the soil-water characteristic curve should be similar regardless of stress state. A larger consolidation pressure causes a less hysteresis.

     

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