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利用真空预压实测孔隙水压力推算土体固结度的计算方法探讨 被引量:6
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作者 侯健飞 《中国港湾建设》 北大核心 2005年第1期13-15,共3页
根据大量真空预压实际工程中孔隙水压力观测结果,提出了一套由实测孔隙水压力时程曲线,直接确定总超静水压力,进而计算孔隙水应力固结度的方法,回避了理论计算时被测点的应力增加总值、加固过程固结系数变化以及固结理论的基本假设和实... 根据大量真空预压实际工程中孔隙水压力观测结果,提出了一套由实测孔隙水压力时程曲线,直接确定总超静水压力,进而计算孔隙水应力固结度的方法,回避了理论计算时被测点的应力增加总值、加固过程固结系数变化以及固结理论的基本假设和实际地基差异等因素造成的理论固结度与实际情况的差异。该方法经实际应用,效果较好。 展开更多
关键词 真空预压法 孔隙压力 孔隙压力固结度计算
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考虑分级堆载的真空堆载联合预压砂井地基孔压计算方法 被引量:1
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作者 雷鸣 匡希龙 +2 位作者 常锦 蒋建清 张锐 《公路交通科技》 CAS CSCD 北大核心 2023年第3期33-41,68,共10页
真空堆载联合预压法被广泛应用于加固淤泥及淤泥质土软基,但是其理论滞后于实践应用,软基土体孔压计算方法欠完善,导致有效应力和固结度计算依据不充分。将单砂井地基上、下边界假定为符合实际施工和地质条件的半透水边界,根据轴对称单... 真空堆载联合预压法被广泛应用于加固淤泥及淤泥质土软基,但是其理论滞后于实践应用,软基土体孔压计算方法欠完善,导致有效应力和固结度计算依据不充分。将单砂井地基上、下边界假定为符合实际施工和地质条件的半透水边界,根据轴对称单砂井地基固结方程和等应变假定,利用经典解析理论,考虑真空堆载联合预压工法中真空荷载与堆载的加载次序,合理界定初值条件,推导了符合工程实际的真空堆载联合预压单砂井地基孔隙水压力解析解,并确立了计算方式。在此基础上,以某高铁真空堆载联合预压加固软基工程为例,将塑料排水板地基转化为砂井地基,分析了地基土体孔隙水压力时间空间分布规律。结果表明:每一阶段荷载作用下孔隙水压力计算,应计入前一阶段荷载结束时土层底部的孔隙水压力值;在真空堆载联合预压阶段的孔隙水压力计算中,应将一次性瞬时堆载优化为分级堆载,这更符合实际情况,使得计算值更为合理;在真空堆载联合预压阶段,各分级堆载的施加将打破前一级荷载形成的土中水稳定渗流平衡,使得不同深度处孔压重新分布,孔压消散更快,土层加固效果更明显;无论如何堆载,真空堆载联合预压土体的最终孔隙水压力值为负值,并低于单纯真空预压所形成的负压场的孔压值。 展开更多
关键词 道路工程 软基加固 孔隙水压力计算 解析计算 真空堆载联合预压 砂井地基
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Consolidation analysis of composite foundation with partially penetrated cement fly-ash gravel(CFG) piles under changing permeable boundary conditions 被引量:3
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作者 邹新军 赵增明 徐洞斌 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第10期4019-4026,共8页
Based on the double-layered foundation theory, the composite ground with partially penetrated cement fly-ash gravel(CFG) piles was regarded as a double-layered foundation including the surface reinforced area and the ... Based on the double-layered foundation theory, the composite ground with partially penetrated cement fly-ash gravel(CFG) piles was regarded as a double-layered foundation including the surface reinforced area and the underlying untreated stratum. Due to the changing permeability property of CFG piles, the whole consolidation process of the composite ground with CFG piles was divided into two stages, i.e., the early stage(permeable CFG pile bodies) and the later stage(impermeable pile bodies). Then, the consolidation equation of the composite foundation with CFG piles was established by using the Terzaghi one-dimensional consolidation theory. Consequently, the unified formula to calculate the excess pore water pressure was derived with the specific solutions for the consolidation degree of composite ground, reinforced area and underlying stratum under instant load obtained respectively. Finally, combined with a numerical example, influencing rules by main factors(including the replacement rate m, the treatment depth h1, the permeability coefficient Ks1, Kv2 and compression modulus Es1, Es2 of reinforced area and underlying stratum) on the consolidation property of composite ground with CFG piles were discussed in detail. The result shows that the consolidation velocity of underlying stratum is slower than that of the reinforced area. However, the consolidation velocity of underlying stratum is slow at first then fast as a result of the transferring of effective stress to the underlying stratum during the dissipating process of excess pore water pressure. 展开更多
关键词 composite ground CFG piles permeability double-layered foundation consolidation degree
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Theoretical model for the improved PCC pile using expansive concrete
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作者 ZHOU Hang HUA JianMin +1 位作者 DING XuanMing CHU Jian 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2017年第5期772-791,共20页
Conventional PCC pile technique has been widely used as embankment piles for highway construction in China. To further improve the PCC pile capacity, the expansive concrete technique has been applied to the PCC pile t... Conventional PCC pile technique has been widely used as embankment piles for highway construction in China. To further improve the PCC pile capacity, the expansive concrete technique has been applied to the PCC pile to replace the normal concrete recently. The use of expansive concrete for the PCC pile could increase the pile diameter as well as the contact pressure at the pile-soil interface due to the expansion process of concrete, which allows the improved PCC pile to provide higher capacity than the conventional PCC pile. This paper presents a theoretical model for the new improved PCC pile using expansive concrete technique. The model is formulated by assuming the PCC pile installation process as large strain undrained cylindrical cavity expansion and the subsequent pile shaft expansion combined with soil consolidation process is simulated by the small strain cylindrical cavity expansion combined with strain-controlled consolidation. Then, similarity solution technique is used to solve the problem of cavity expansion in modified cam Clay (MCC) model, while the strain-controlled consolidation is calculated through the finite difference method (FDM). Subsequently, the suitability of the cavity expansion solution in the interpretation of the PCC pile installation is verified by comparing the calculated excess pore pressure with the measured value in an instrumented field test. The stress changes and excess pore pressure during the PCC pile installation and subsequent pile shaft expansion are investigated by means of parametric study. The proposed theoretical model first reveals and quantifies the fundamental mechanism of the PCC pile using expansive concrete technique and it provides a theoretical basis for developing design methods of the new improved PCC pile in the future. 展开更多
关键词 cavity expansion PCC pile expansive concrete CONSOLIDATION theoretical analysis
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