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花岗岩残积土土水特征曲线的试验研究

Experimental Study of Soil-water Characteristic Curves of Granite Residual Soil

  • 摘要: 鉴于福建尤溪开发区道路与边坡工程建设需求,本文以尤溪花岗岩残积土为研究对象,采用压力板仪测定其增湿和脱湿土水特征曲线,结合不同土体的颗粒级配曲线、矿物成分、微观孔隙结构、液塑限和干密度,系统探讨了不同花岗岩残积土土水特征曲线的影响机制。研究表明:(1)三种花岗岩残积土,其曲率系数Cc<1或Cc>3,说明有不同程度的颗粒粒径缺失;且砂粒占优,以砂粒主体基质为主。这两种因素导致了花岗岩残积土中团聚体间的孔隙直径差异较大,脱湿吸湿孔隙瓶颈效应较大,导致滞回圈面积相对较大。(2)花岗岩残积土的风化程度、矿物成分、塑性指数及铁高价阳离子的浓度等影响土水特征曲线。风化程度影响矿物组成,进而影响黏土矿物含量和塑性指数大小;塑性指数越大,土体结合水能力越强,其体积含水率和基质吸力的变化范围大,则土水特征曲线的跨越范围越大;液限和残余体积含水率密切正相关,花岗岩残积土液限较大,则其残余体积含水率也较大。

     

    Abstract: Given the construction needs for roads and slopes in the Youxi Development Zone in Fujian, this paper takes Youxi granite residual soil as the research object. A pressure plate apparatus was employed to measure its moisture-increasing and moisture-reducing soil-water characteristic curves (SWCCs) . By combining particle size distribution curves, mineral composition, micro-pore structure, liquid-plastic limit, and dry density of different soil types, the paper systematically explores the influencing mechanisms of SWCCs in different granite residual soils. The results showed that: 1) three granite residual soils with grading curve coefficient Cc<1 or Cc>3 exhibited poor grading with some range particle size gaps. and usually the granite residual soil possessing the mass fraction below 50% with d < 0.075 mm showed sand particle matrix being dominant. Due to above the poor particle gradation and dominant sand particle matrix, the pore diameter variation between aggregates in soil was obvious, and these would lead to pronounced bottleneck effects during drying and wetting processes and eventually a relatively large hysteresis loop area for the SWCCs existed. 2) the weathering degree, mineral composition, plasticity index, and concentrations of high-valence cations (such as iron) in granite residual soils would obviously influence the SWCCs characteristics. Weathering affected mineral composition, thereby altered clay mineral content and plasticity index. A higher plasticity index indicated stronger water-combining capacity of soil particles, and leaded to a wider variation ranges in both volumetric water content and matric suction, which eventually expanded the range of the SWCCs. Additionally, the liquid limit was positively correlated to residual volumetric water content, granite residual soil with higher liquid limit would exhibit a greater residual volumetric water content.

     

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