桩承式变刚度加筋垫层复合地基数值模拟
Numerical simulation of composite foundation using pile-supported and geosynthetics-reinforced cushion with variable stiffness
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摘要: 提出采用高强土工格栅和土工格室对天然砂石与建筑固体废弃物再生混凝土骨料的混合料进行加筋,通过添加适量水泥、石灰或粉煤灰等黏结材料,构造变刚度加筋垫层,替代桩筏复合地基中的混凝土板,形成采用柔性筏板的桩筏复合地基。通过建立有限元数值模型进行了对比分析,研究结果表明:土工格室加筋垫层可以通过提兜效应和柔性筏板效应,充分调动桩墙的承载能力,有效减小桩间土荷载,提高桩土应力比;增大垫层弹性模量对土工格室加筋垫层工况工作性状的改善更为显著;实际工程中加筋垫层厚度不宜过大。Abstract: The geogrid and geocell with high tensile strength are meant to reinforce the mixture of natural gravel and recycled concrete aggregate made of the soild waste of construction. The reinforced cushion with variable stiffness is constructed by adding moderate cement, lime or fly ash to the reinforced mixture, which can be adopted as the flexible raft to replace the concrete raft of pile-raft composite foundation. The finite element numerical model is established for comparison investigation. The results indicate that through the tensioned membrane effect and flexible raft effect, the geocell-reinforced cushion plays an important role in mobilizing the bearing capacity of the pile wall, decreasing the settlement of the surrounding soil and improving the pile-soil stress ratio. The working performance of the geocell-reinforced case can be better improved by increasing the modulus of the cushion. The thickness of the reinforced cushion should not be too thick.